US20040179973A1 - Analytic plate with containment border and method - Google Patents
Analytic plate with containment border and method Download PDFInfo
- Publication number
- US20040179973A1 US20040179973A1 US10/805,777 US80577704A US2004179973A1 US 20040179973 A1 US20040179973 A1 US 20040179973A1 US 80577704 A US80577704 A US 80577704A US 2004179973 A1 US2004179973 A1 US 2004179973A1
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- United States
- Prior art keywords
- applicator
- liquid composition
- containment border
- reservoir
- applicator device
- Prior art date
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- Abandoned
Links
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Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01L—CHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
- B01L3/00—Containers or dishes for laboratory use, e.g. laboratory glassware; Droppers
- B01L3/50—Containers for the purpose of retaining a material to be analysed, e.g. test tubes
- B01L3/508—Containers for the purpose of retaining a material to be analysed, e.g. test tubes rigid containers not provided for above
-
- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B21/00—Microscopes
- G02B21/34—Microscope slides, e.g. mounting specimens on microscope slides
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01L—CHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
- B01L2300/00—Additional constructional details
- B01L2300/08—Geometry, shape and general structure
- B01L2300/0809—Geometry, shape and general structure rectangular shaped
- B01L2300/0822—Slides
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T436/00—Chemistry: analytical and immunological testing
- Y10T436/25—Chemistry: analytical and immunological testing including sample preparation
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T436/00—Chemistry: analytical and immunological testing
- Y10T436/25—Chemistry: analytical and immunological testing including sample preparation
- Y10T436/2575—Volumetric liquid transfer
Definitions
- the present invention relates generally to the field of analytic plates such as microscope slides or diagnostic plates and more particularly to such analytic plates having borders thereon.
- Standard microscope slides and diagnostic plates are thin, typically rectangular, sheets of glass, ceramic, or plastic.
- a sample comprising an aqueous or non-aqueous liquid, liquid reagent, biological fluid and/or placed in a fixative, or remain fresh prior to treatment for enhanced visualization by light, electron, or fluorescent microscopy, and/or including gross analysis with the human eye.
- the sample may be analyzed in its natural state or may need treatment with one or more liquid dyes to enhance visualization.
- Further treatment with molecular biological techniques may include, for example, treatment by monoclonal, polyclonal antibodies, in-situ hybridization by molecular probes, and/or their liquid detection reagents.
- the sample or liquid reagent may spill from the slide, run or migrate onto other portions of the slide, and/or “wick off” if the slide touches another object, thus resulting in a loss of all or part of the liquid sample or reagent. It is desirous to avoid such inadvertent or undesired mixing or contamination of different samples or liquid reagents.
- the slide or diagnostic plate it is therefore beneficial for the slide or diagnostic plate to have means to confine the sample or liquid used in treating the sample to a specific area on the slide or plate. This has been accomplished previously by creating a slide or plate having one or more depressions, or “wells” therein.
- a physical barrier or hydrophobic material may be applied to the slide surface in a bordered pattern to confine the liquid applied to the plate within the area surrounded by the border.
- borders may comprise a coating of teflon, paint, wax, paraffin, epoxy resin, or other resinous material, or a paint.
- a border having a thickness resulting in a raised border extending a distance above the surface of the glass for example, a teflon layer is generally from about 0.001 to about 0.0025 inches high.
- These raised areas are generally opaque and the end result is a loss of the transparent nature of the slide where the border is applied.
- these raised borders may be somewhat effective in confining the liquid, there continues to be a need for a slide or plate which achieves confinement of the liquid upon a slide while maintaining transparency of the glass or plate. It is the object of the present invention to provide such a slide.
- the present invention contemplates an analytic plate such as a microscope slide or a diagnostic plate having a containment border for inhibiting migration of liquids or liquid samples thereon, wherein the border is substantially transparent and is substantially flush with the surface of the slide or plate and which covers only a portion of the surface of the slide or plate, and a method of making such a plate or slide.
- FIG. 1A is a plan view of a microscope slide constructed in accordance with the present invention.
- FIG. 1B is a side view of the slide of FIG. 1A.
- FIG. 2A is a plan view of another version of a microscope slide constructed in accordance with the present invention.
- FIG. 2B is a side view of the slide of FIG. 2A.
- FIG. 3 is a plan view of another version of a microscope slide constructed in accordance with the present invention.
- FIG. 4 is a plan view of another version of a microscope slide constructed in accordance with the present invention.
- FIG. 5 is a plan view of another version of a microscope slide constructed in accordance with the present invention.
- FIG. 6 is a plan view of another version of a microscope slide constructed in accordance with the present invention.
- FIG. 7 is a perspective view of a pen used in accordance with the present invention.
- the present invention contemplates an analytic plate such as a microscope slide or a diagnostic plate having a containment border for inhibiting migration of liquids or liquid samples thereon, wherein the border is substantially transparent and is substantially flush with the surface of the slide or plate and which covers only a portion of the surface of the slide or plate.
- analytic plate refers to those types of plates such as microscope slides and diagnostic plates which are used, for example, in microscopic analysis or diagnostic analysis or comparison of samples.
- Analytic plates are generally comprised of glass or plastic (translucent, transparent, or opaque) but may also comprise ceramic materials.
- the analytic plates contemplated herein can have any shape suitable for use in analytic devices wherein the analytic plate can hold or contain a liquid or sample for analysis.
- the terms, “plate” and “slide” are intended to be interchangeable.
- FIGS. 1A and 1B a glass microscope slide having the general reference numeral 10 is shown.
- the slide 10 has a conventional length, width and thickness as is well known to one of ordinary skill in the art.
- the slide 10 has an upper surface 12 and a lower surface 14 .
- Disposed upon a portion of the upper surface 12 is a liquid containment border 16 which in the version of FIG. 1A has a rectangular shape.
- the term “liquid containment border” or “containment border” refers to a transparent border which prevents passage of an aqueous or non-aqueous liquid thereacross.
- the containment border 16 surrounds a containment area 18 of the upper surface 12 of the slide 10 .
- the containment border 16 forms a liquid barrier about the containment area 18 .
- a liquid or liquid sample (not shown) is placed upon the containment area 18 of the slide 10 for analysis, the containment border 16 prevents the spreading, leakage or migration of the liquid or liquid sample from the containment area 18 , thus causing the sample to be retained in a discrete and confined location upon the slide 10 .
- the term liquid or liquid sample is intended to refer to a liquid material, or a liquid biological sample (e.g., blood, urine, plasma, or cerebrospinal fluid) which is desired to be localized on the slide.
- the coating material which is used to form the containment border 16 comprises a material which when applied to the slide 10 is preferably transparent or clear although it may have a color to indicate its position on the slide or have printed, by one of ordinary skill in the art, on the lower surface 14 and/or upper surface 12 of the slide 10 information (lines or numbers or symbols) indicating the position of the containment border 16 on the upper surface 12 .
- the containment border 16 forms a molecular layer when dry and therefore is substantially flush (level) with the upper surface 12 of the slide 10 .
- the containment border 16 is therefore not raised above the upper surface 12 to a degree that is visible to the naked eye.
- the containment border 16 preferably has a thickness of less than 0.0001 inch and more preferably less than 0.00001 inch.
- the containment border 16 may be transparent or translucent after application, wherein it may be desired to buff or treat the slide 10 chemically (e.g., by xylene, alcohol, or acetone, or other commonly used laboratory solvents) such that the containment border 16 is preferably rendered clear (transparent) and invisible whereby the containment border 16 leaves the refractive index of the slide 10 unaltered when viewed through a microscope.
- the coating material which forms the containment border 16 is a composition comprising a liquid repellant compound dissolved in a volatile solvent.
- the composition comprises an alkyl polysiloxane and a mineral acid mixed with a solvent in a manner well known in the art. Such a mixture is described in U.S. Pat. No. 3,579,540, the specification of which is hereby incorporated herein by reference in its entirety.
- Other polysiloxanes, siloxanes, silanes, silicones, silicon fluids, and combinations thereof which can permanently or at least substantially permanently bond to a glass surface and function in accordance with the present invention are also contemplated and are well known in the art, and are available commercially for use herein.
- a polysiloxane acid mixture is particularly preferred, it will be understood by one of ordinary skill in the art that any material which can adhere to the surface of at least one of a glass, plastic or ceramic slide or plate and which forms a substantially non-raised molecular layer as described and claimed herein and is suitable for use in the present invention.
- composition of the coating material comprises at least 2.5%, 5%, 10%, 15%, 20% or 25% of the polysiloxane, the siloxane, the silane, the silicone, the silicon fluid, or combinations thereof.
- the coating material can be applied to the slide 10 in any manner known in the art for applying a liquid to a surface, for example, by brushing, wiping, by using a stamping device, by spraying or by application from a device (such as a pen or pen-like device) filled with the coating material to be applied to the slides or plates (described in more detail below).
- the slide 10 may be provided with a removable raised layer of a material such as a silicone rubber which is applied as a raised strip on a portion of the upper surface 12 of the slide 10 (not shown).
- a removable raised layer of a material such as a silicone rubber which is applied as a raised strip on a portion of the upper surface 12 of the slide 10 (not shown).
- the raised silicone strip Prior to the application of the liquid or liquid sample for treatment, the raised silicone strip is peeled away from the upper surface 12 of the slide 10 , leaving a residual coating comprising the containment border 16 in accordance with the present invention.
- the slide 10 can be used in accordance with the present invention.
- the containment border 16 is highly resistant to abrasion and to chemical removal and physical removal by washing, scrubbing, wiping, placement in organic solvents, inorganic solvents, and aqueous solvents.
- the slide 10 can therefore be used repeatedly without the containment border 16 losing its repellant properties.
- the containment border 16 of the present slide 10 is further distinguished from prior art slides which have teflon borders or other physical barriers because the surface of such prior art slides must be treated before the teflon coating can adhere to the slide (e.g., using an adhesive) thus causing solvents to dissolve the adhesive and the subsequent loss of the border's efficiency due to peeling and/or loss of the liquid confinement integrity of the border.
- the borders of slides using coatings of teflon, epoxy, or paint are generally opaque and are raised above the surface of the slide, unlike the borders on the slides of the present invention. In the present invention, there is no intervening layer (e.g., an adhesive) between the glass and the coating comprising the containment border 16 . Further, borders of such prior art slides also suffer from non-specific binding of reagents along their raised edges thereby causing interference with the specimen.
- interference may occur when the reagents used in processing biological samples adhere, are drawn to, or react with these raised borders causing undesirable background staining around the specimen. Additionally, these raised borders cause “pooling” of reagents in the “well” formed by the raised border, making rinsing of reagents more difficult than the non-raised borders of the present invention.
- the present invention also enables the user to coverslip the slides with known manual and automated coversliping methods without the need to add excess mountant into the space within the raised wells to fill the gaps of “dead air” space resulting from the raised borders. These “dead air” spaces, if not filled with mountant, would have bubbles present under the coverslip, which is undesirable.
- the substantially non-raised borders of the present invention do not interfere with the placement of the coverslip on the slide nor do they necessitate the addition of mountant beyond the normal amount of mountant necessary for a normal untreated slide to be coversliped.
- Another advantage of the slide of the present invention relates to the transparent nature of the border.
- Recent developments in image analysis has advanced specimen scanning to offer a reproducible analysis of specimens on a slide. These instruments automatically or semi-automatically scan the slide to find the specimen and measure variables.
- the need to maintain the transparent nature of the slide is critical.
- the camera scans the slides and picks up anything that alters the light path, therefore, it is important that the only object on the slide which alters the light passing through the camera is the specimen itself, not an opaque border that would typically block the entire light path.
- the microscope slide of the present invention may consist solely of a slide 10 with the containment border 16 thereon, in some embodiments the slide may further have a distinct marking surface thereon for writing upon or for attaching a label thereto.
- FIGS. 2A and 2B show such a slide, designated therein by the general reference numeral 10 a .
- the slide 10 a has a marking surface 20 which is a “frosted” portion of the slide 10 a (i.e., a portion of the slide 10 a which has been etched off or abraded).
- the marking surface 20 may be an opaque epoxy or painted coating. Other means of forming a marking surface will be apparent to one of ordinary skill in the art.
- FIG. 2A further shows an alternative version of the invention wherein the containment border, designated by the general reference numeral 22 comprises a pair of strips extending from one edge of the slide to another, rather than forming a box pattern as shown in slide 10 a.
- FIG. 3 shows a slide 10 b which is essentially the same as slide 10 a except the containment border is a border 24 which forms an entire “box” on the surface 12 of the slide 10 b .
- FIG. 4 shows an alternative embodiment of the invention, a slide 10 c having a containment border 26 which comprises a pair of separate containment areas 28 .
- the separate containment areas 28 can therefore contain separate samples which are prevented from mixing by the portion 30 of the containment border 26 which separates the two containment areas 28 .
- the slide 10 c may be constructed to comprise a plurality of separate containment areas 28 greater than two for holding a plurality of samples, as will be understood by a person of ordinary skill in the art.
- FIG. 5 shows a slide 10 d having a pair of circular containment borders 32 which surround containment areas 34 .
- Alternative versions of slide 10 d may have only a single circular containment border 32 , or may have a plurality of circular containment borders 32 .
- FIG. 6 shows a slide 10 e comprising a containment border 36 having a diagonal border 38 extending thereacross forming a pair of triangle shaped containment areas 40 .
- Alternative versions of the slide 10 e may have only a single triangle shaped containment area 40 , or may have a plurality of areas 40 . Further, it will be understood by a person of ordinary skill in the art that the shapes of the containment areas are not limited only to those shown in the figures herein.
- the containment areas may have other shapes, such as ovals, stars, ellipses, pentagons, hexagons, trapezoids, or even non-geometric or fanciful shapes.
- a single slide may have more than one particular shape of containment border disposed thereon, for example, a circle and a box or a pair of circles and a pair of boxes.
- each slide contemplated herein has only a portion of the surface thereof coated with the coating material, with the specific purpose for retaining a liquid or liquid sample upon a discrete and predetermined portion of the slide.
- one or more of the microscope slides or plates contemplated herein may be supplied as a kit along with other components used in microscopic analysis of samples.
- Said other components may comprise stains and reagents commonly used by those of ordinary skill, including but not limited to, stains, dyes, molecular biological reagents including monoclonal and polyclonal antibodies, and molecular probes and their detection reagents, and other aqueous and non-aqueous processing reagents.
- aqueous and non-aqueous processing reagents examples include xylene, toluene, acetone, and other organic and inorganic solvents, and alcohols, biological buffers, and aqueous reagents for use with antibodies, and molecular probes and their detection reagents.
- the containment border may be applied via a pen, or pen-like device, an example of which is shown in FIG. 7.
- the pen is designated by reference number 50 and comprises a body 52 having a reservoir therein (not shown) which contains a quantity of the liquid composition comprising a coating material described elsewhere herein (e.g., polysiloxane).
- the pen 50 further comprises an applicator end 54 , and a cap 56 for inhibiting evaporation of the coating material or drying of the tip 54 .
- the pen 50 or cap 56 may comprise means for clipping, e.g., to a pocket.
- the applicator end may be a brush, a swab, a rubber tip, or any other device known to one of ordinary skill in the art of applicator pens.
- a user can use the pen 50 to custom make his own “bordered slides” having a containment border as described herein.
- the border applied in such a manner is resistant to removal by organic solvents such as xylene, as described above.
- the user applies a layer of the coating material, e.g., polysiloxane, to a slide, allows it to dry, then applies the aqueous or non-aqueous liquid or histological material, or other biological sample, and carries out various processing steps known in the art for analyzing the specimen (e.g., treating with stains and organic solvents).
- the sample may be applied to the slide before the containment border is applied to the slide, e.g., a list of any tissue sample or any other biological sample that requires air drying before processing. Treatment with organic solvents used in the processing steps has substantially no effect on the durable containment border as claimed herein.
- the pen applicator of the present invention differs from other pen applicators known in the art (e.g., PAP Pen) because such prior art pens are used only to apply a greasy or oily layer to the slide which is neither resistant to abrasion or rubbing nor resistant to organic solvents, i.e., the layer can be physically wiped or worn off and is not resistant to most organic solvents such as xylene.
- the containment borders provided by using the pen 50 described herein are resistant to abrasion or to removal by organic solvents. Further, in an especially preferred version of the present invention, the coating material used in the pen 50 does not contain or comprise an oil.
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- Chemical & Material Sciences (AREA)
- Health & Medical Sciences (AREA)
- Analytical Chemistry (AREA)
- Physics & Mathematics (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Clinical Laboratory Science (AREA)
- Hematology (AREA)
- General Health & Medical Sciences (AREA)
- General Physics & Mathematics (AREA)
- Optics & Photonics (AREA)
- Sampling And Sample Adjustment (AREA)
- Surface Treatment Of Glass (AREA)
- Application Of Or Painting With Fluid Materials (AREA)
Abstract
An analytic plate such as a microscope slide or a diagnostic plate and kit having the slide or plate, the slide or plate having a containment border for containing a liquid, histological or other biological sample. The containment border is substantially transparent and is substantially flush with the surface of the slide or plate for containing the liquid, histological or other biological sample disposed thereon and thereby preventing spreading or migration of the sample across the slide or plate. The containment border is preferably comprised of a polysiloxane, siloxane, silicone, a silane, a silicon fluid, or a combination thereof.
Description
- The present application is a divisional application of U.S. Ser. No. 10/225,412, filed Aug. 20, 2002, which is a continuation-in-part of U.S. Ser. No. 09/373,468, filed Aug. 12, 1999, now U.S. Pat. No. 6,555,384, which is a continuation-in-part of U.S. Ser. No. 09/021,077, filed Feb. 10, 1998, now U.S. Pat. No. 5,948,685, and which is also a continuation-in-part of International Application No. PCT/US99/02854 filed Feb. 9, 1999. Each of the patents or applications listed above is hereby expressly incorporated by reference herein in its entirety.
- The present invention relates generally to the field of analytic plates such as microscope slides or diagnostic plates and more particularly to such analytic plates having borders thereon.
- Standard microscope slides and diagnostic plates are thin, typically rectangular, sheets of glass, ceramic, or plastic. In use, a sample comprising an aqueous or non-aqueous liquid, liquid reagent, biological fluid and/or placed in a fixative, or remain fresh prior to treatment for enhanced visualization by light, electron, or fluorescent microscopy, and/or including gross analysis with the human eye. The sample may be analyzed in its natural state or may need treatment with one or more liquid dyes to enhance visualization. Further treatment with molecular biological techniques may include, for example, treatment by monoclonal, polyclonal antibodies, in-situ hybridization by molecular probes, and/or their liquid detection reagents. During routine analysis or manipulation of a slide or plate, the sample or liquid reagent may spill from the slide, run or migrate onto other portions of the slide, and/or “wick off” if the slide touches another object, thus resulting in a loss of all or part of the liquid sample or reagent. It is desirous to avoid such inadvertent or undesired mixing or contamination of different samples or liquid reagents.
- It is therefore beneficial for the slide or diagnostic plate to have means to confine the sample or liquid used in treating the sample to a specific area on the slide or plate. This has been accomplished previously by creating a slide or plate having one or more depressions, or “wells” therein. Alternatively, a physical barrier or hydrophobic material may be applied to the slide surface in a bordered pattern to confine the liquid applied to the plate within the area surrounded by the border. Such borders may comprise a coating of teflon, paint, wax, paraffin, epoxy resin, or other resinous material, or a paint. Each of these materials results in a border having a thickness resulting in a raised border extending a distance above the surface of the glass, for example, a teflon layer is generally from about 0.001 to about 0.0025 inches high. These raised areas are generally opaque and the end result is a loss of the transparent nature of the slide where the border is applied. In spite of the fact that these raised borders may be somewhat effective in confining the liquid, there continues to be a need for a slide or plate which achieves confinement of the liquid upon a slide while maintaining transparency of the glass or plate. It is the object of the present invention to provide such a slide.
- The present invention contemplates an analytic plate such as a microscope slide or a diagnostic plate having a containment border for inhibiting migration of liquids or liquid samples thereon, wherein the border is substantially transparent and is substantially flush with the surface of the slide or plate and which covers only a portion of the surface of the slide or plate, and a method of making such a plate or slide.
- FIG. 1A is a plan view of a microscope slide constructed in accordance with the present invention.
- FIG. 1B is a side view of the slide of FIG. 1A.
- FIG. 2A is a plan view of another version of a microscope slide constructed in accordance with the present invention.
- FIG. 2B is a side view of the slide of FIG. 2A.
- FIG. 3 is a plan view of another version of a microscope slide constructed in accordance with the present invention.
- FIG. 4 is a plan view of another version of a microscope slide constructed in accordance with the present invention.
- FIG. 5 is a plan view of another version of a microscope slide constructed in accordance with the present invention.
- FIG. 6 is a plan view of another version of a microscope slide constructed in accordance with the present invention.
- FIG. 7 is a perspective view of a pen used in accordance with the present invention.
- The present invention contemplates an analytic plate such as a microscope slide or a diagnostic plate having a containment border for inhibiting migration of liquids or liquid samples thereon, wherein the border is substantially transparent and is substantially flush with the surface of the slide or plate and which covers only a portion of the surface of the slide or plate.
- Where used herein, the term “analytic plate” refers to those types of plates such as microscope slides and diagnostic plates which are used, for example, in microscopic analysis or diagnostic analysis or comparison of samples. Analytic plates are generally comprised of glass or plastic (translucent, transparent, or opaque) but may also comprise ceramic materials. The analytic plates contemplated herein can have any shape suitable for use in analytic devices wherein the analytic plate can hold or contain a liquid or sample for analysis. When used herein, the terms, “plate” and “slide” are intended to be interchangeable.
- Referring now to FIGS. 1A and 1B, a glass microscope slide having the
general reference numeral 10 is shown. Theslide 10 has a conventional length, width and thickness as is well known to one of ordinary skill in the art. Theslide 10 has anupper surface 12 and alower surface 14. Disposed upon a portion of theupper surface 12 is aliquid containment border 16 which in the version of FIG. 1A has a rectangular shape. Where used herein the term “liquid containment border” or “containment border” refers to a transparent border which prevents passage of an aqueous or non-aqueous liquid thereacross. Thecontainment border 16 surrounds acontainment area 18 of theupper surface 12 of theslide 10. Thecontainment border 16 forms a liquid barrier about thecontainment area 18. When a liquid or liquid sample (not shown) is placed upon thecontainment area 18 of theslide 10 for analysis, thecontainment border 16 prevents the spreading, leakage or migration of the liquid or liquid sample from thecontainment area 18, thus causing the sample to be retained in a discrete and confined location upon theslide 10. Where used herein, the term liquid or liquid sample is intended to refer to a liquid material, or a liquid biological sample (e.g., blood, urine, plasma, or cerebrospinal fluid) which is desired to be localized on the slide. - The coating material which is used to form the
containment border 16 comprises a material which when applied to theslide 10 is preferably transparent or clear although it may have a color to indicate its position on the slide or have printed, by one of ordinary skill in the art, on thelower surface 14 and/orupper surface 12 of theslide 10 information (lines or numbers or symbols) indicating the position of thecontainment border 16 on theupper surface 12. Thecontainment border 16 forms a molecular layer when dry and therefore is substantially flush (level) with theupper surface 12 of theslide 10. Thecontainment border 16 is therefore not raised above theupper surface 12 to a degree that is visible to the naked eye. In fact, thecontainment border 16 preferably has a thickness of less than 0.0001 inch and more preferably less than 0.00001 inch. After the coating material is applied to theslide 10 thereby forming thecontainment border 16, theslide 10 is dried. Thecontainment border 16 may be transparent or translucent after application, wherein it may be desired to buff or treat theslide 10 chemically (e.g., by xylene, alcohol, or acetone, or other commonly used laboratory solvents) such that thecontainment border 16 is preferably rendered clear (transparent) and invisible whereby thecontainment border 16 leaves the refractive index of theslide 10 unaltered when viewed through a microscope. - In a preferred embodiment the coating material which forms the
containment border 16 is a composition comprising a liquid repellant compound dissolved in a volatile solvent. In a particularly preferred version, the composition comprises an alkyl polysiloxane and a mineral acid mixed with a solvent in a manner well known in the art. Such a mixture is described in U.S. Pat. No. 3,579,540, the specification of which is hereby incorporated herein by reference in its entirety. Other polysiloxanes, siloxanes, silanes, silicones, silicon fluids, and combinations thereof which can permanently or at least substantially permanently bond to a glass surface and function in accordance with the present invention are also contemplated and are well known in the art, and are available commercially for use herein. Although a polysiloxane acid mixture is particularly preferred, it will be understood by one of ordinary skill in the art that any material which can adhere to the surface of at least one of a glass, plastic or ceramic slide or plate and which forms a substantially non-raised molecular layer as described and claimed herein and is suitable for use in the present invention. - It is generally necessary to apply a coating material composition comprising at least 1% by weight of the polysiloxane, siloxane, silane, silicone, silicon fluid or combinations thereof to provide a
containment border 16 having sufficient liquid repellancy properties for theslide 10 with thecontainment border 16 thereon to function as contemplated in the present invention herein. More preferably the composition of the coating material comprises at least 2.5%, 5%, 10%, 15%, 20% or 25% of the polysiloxane, the siloxane, the silane, the silicone, the silicon fluid, or combinations thereof. - The coating material can be applied to the
slide 10 in any manner known in the art for applying a liquid to a surface, for example, by brushing, wiping, by using a stamping device, by spraying or by application from a device (such as a pen or pen-like device) filled with the coating material to be applied to the slides or plates (described in more detail below). - In an alternative method of application of the coating material for the
containment border 16, theslide 10 may be provided with a removable raised layer of a material such as a silicone rubber which is applied as a raised strip on a portion of theupper surface 12 of the slide 10 (not shown). Prior to the application of the liquid or liquid sample for treatment, the raised silicone strip is peeled away from theupper surface 12 of theslide 10, leaving a residual coating comprising thecontainment border 16 in accordance with the present invention. After the raised silicone rubber strip has been peeled away leaving thecontainment border 16, theslide 10 can be used in accordance with the present invention. - It is another distinctive characteristic of the present invention that, in a preferred embodiment, after the coating material is applied to the
slide 10 to form thecontainment border 16 and the coating material has dried thereon, thecontainment border 16 is highly resistant to abrasion and to chemical removal and physical removal by washing, scrubbing, wiping, placement in organic solvents, inorganic solvents, and aqueous solvents. Theslide 10 can therefore be used repeatedly without thecontainment border 16 losing its repellant properties. - The
containment border 16 of thepresent slide 10 is further distinguished from prior art slides which have teflon borders or other physical barriers because the surface of such prior art slides must be treated before the teflon coating can adhere to the slide (e.g., using an adhesive) thus causing solvents to dissolve the adhesive and the subsequent loss of the border's efficiency due to peeling and/or loss of the liquid confinement integrity of the border. The borders of slides using coatings of teflon, epoxy, or paint are generally opaque and are raised above the surface of the slide, unlike the borders on the slides of the present invention. In the present invention, there is no intervening layer (e.g., an adhesive) between the glass and the coating comprising thecontainment border 16. Further, borders of such prior art slides also suffer from non-specific binding of reagents along their raised edges thereby causing interference with the specimen. - For example, interference may occur when the reagents used in processing biological samples adhere, are drawn to, or react with these raised borders causing undesirable background staining around the specimen. Additionally, these raised borders cause “pooling” of reagents in the “well” formed by the raised border, making rinsing of reagents more difficult than the non-raised borders of the present invention.
- The present invention also enables the user to coverslip the slides with known manual and automated coversliping methods without the need to add excess mountant into the space within the raised wells to fill the gaps of “dead air” space resulting from the raised borders. These “dead air” spaces, if not filled with mountant, would have bubbles present under the coverslip, which is undesirable. The substantially non-raised borders of the present invention do not interfere with the placement of the coverslip on the slide nor do they necessitate the addition of mountant beyond the normal amount of mountant necessary for a normal untreated slide to be coversliped.
- Another advantage of the slide of the present invention relates to the transparent nature of the border. Recent developments in image analysis has advanced specimen scanning to offer a reproducible analysis of specimens on a slide. These instruments automatically or semi-automatically scan the slide to find the specimen and measure variables. The need to maintain the transparent nature of the slide is critical. The camera scans the slides and picks up anything that alters the light path, therefore, it is important that the only object on the slide which alters the light passing through the camera is the specimen itself, not an opaque border that would typically block the entire light path.
- Although the microscope slide of the present invention may consist solely of a
slide 10 with thecontainment border 16 thereon, in some embodiments the slide may further have a distinct marking surface thereon for writing upon or for attaching a label thereto. FIGS. 2A and 2B show such a slide, designated therein by thegeneral reference numeral 10 a. Theslide 10 a has a markingsurface 20 which is a “frosted” portion of theslide 10 a (i.e., a portion of theslide 10 a which has been etched off or abraded). In an alternative version of such a slide, the markingsurface 20 may be an opaque epoxy or painted coating. Other means of forming a marking surface will be apparent to one of ordinary skill in the art. FIG. 2A further shows an alternative version of the invention wherein the containment border, designated by thegeneral reference numeral 22 comprises a pair of strips extending from one edge of the slide to another, rather than forming a box pattern as shown inslide 10 a. - FIG. 3 shows a
slide 10 b which is essentially the same asslide 10 a except the containment border is aborder 24 which forms an entire “box” on thesurface 12 of theslide 10 b. FIG. 4 shows an alternative embodiment of the invention, aslide 10 c having acontainment border 26 which comprises a pair ofseparate containment areas 28. Theseparate containment areas 28 can therefore contain separate samples which are prevented from mixing by theportion 30 of thecontainment border 26 which separates the twocontainment areas 28. Although not specifically shown in the figure, theslide 10 c may be constructed to comprise a plurality ofseparate containment areas 28 greater than two for holding a plurality of samples, as will be understood by a person of ordinary skill in the art. - FIG. 5 shows a
slide 10 d having a pair of circular containment borders 32 which surroundcontainment areas 34. Alternative versions ofslide 10 d may have only a singlecircular containment border 32, or may have a plurality of circular containment borders 32. FIG. 6 shows aslide 10 e comprising acontainment border 36 having adiagonal border 38 extending thereacross forming a pair of triangle shapedcontainment areas 40. Alternative versions of theslide 10 e may have only a single triangle shapedcontainment area 40, or may have a plurality ofareas 40. Further, it will be understood by a person of ordinary skill in the art that the shapes of the containment areas are not limited only to those shown in the figures herein. The containment areas may have other shapes, such as ovals, stars, ellipses, pentagons, hexagons, trapezoids, or even non-geometric or fanciful shapes. Further, a single slide may have more than one particular shape of containment border disposed thereon, for example, a circle and a box or a pair of circles and a pair of boxes. - As is evident from the above, each slide contemplated herein has only a portion of the surface thereof coated with the coating material, with the specific purpose for retaining a liquid or liquid sample upon a discrete and predetermined portion of the slide.
- In an alternative embodiment of the invention, one or more of the microscope slides or plates contemplated herein may be supplied as a kit along with other components used in microscopic analysis of samples. Said other components may comprise stains and reagents commonly used by those of ordinary skill, including but not limited to, stains, dyes, molecular biological reagents including monoclonal and polyclonal antibodies, and molecular probes and their detection reagents, and other aqueous and non-aqueous processing reagents. Examples of aqueous and non-aqueous processing reagents include xylene, toluene, acetone, and other organic and inorganic solvents, and alcohols, biological buffers, and aqueous reagents for use with antibodies, and molecular probes and their detection reagents.
- As noted above, the containment border may be applied via a pen, or pen-like device, an example of which is shown in FIG. 7. The pen is designated by
reference number 50 and comprises abody 52 having a reservoir therein (not shown) which contains a quantity of the liquid composition comprising a coating material described elsewhere herein (e.g., polysiloxane). Thepen 50 further comprises anapplicator end 54, and acap 56 for inhibiting evaporation of the coating material or drying of thetip 54. Thepen 50 orcap 56 may comprise means for clipping, e.g., to a pocket. The applicator end may be a brush, a swab, a rubber tip, or any other device known to one of ordinary skill in the art of applicator pens. - As contemplated herein, a user can use the
pen 50 to custom make his own “bordered slides” having a containment border as described herein. The border applied in such a manner is resistant to removal by organic solvents such as xylene, as described above. In use, the user applies a layer of the coating material, e.g., polysiloxane, to a slide, allows it to dry, then applies the aqueous or non-aqueous liquid or histological material, or other biological sample, and carries out various processing steps known in the art for analyzing the specimen (e.g., treating with stains and organic solvents). Alternatively, the sample may be applied to the slide before the containment border is applied to the slide, e.g., a list of any tissue sample or any other biological sample that requires air drying before processing. Treatment with organic solvents used in the processing steps has substantially no effect on the durable containment border as claimed herein. The pen applicator of the present invention differs from other pen applicators known in the art (e.g., PAP Pen) because such prior art pens are used only to apply a greasy or oily layer to the slide which is neither resistant to abrasion or rubbing nor resistant to organic solvents, i.e., the layer can be physically wiped or worn off and is not resistant to most organic solvents such as xylene. The containment borders provided by using thepen 50 described herein are resistant to abrasion or to removal by organic solvents. Further, in an especially preferred version of the present invention, the coating material used in thepen 50 does not contain or comprise an oil. - The examples described herein are not intended to limit the scope of the invention. Changes may be made in the construction and the operation of the various components, elements and assemblies described herein or in the steps or the sequence of steps of the methods described herein without departing from the scope of the invention as defined in the following claims.
Claims (82)
1. An applicator device comprising:
a reservoir and an applicator, the reservoir containing a quantity of a colorless liquid composition comprising a polysiloxane, a siloxane, a silane, a silicone, a silicon fluid, or a combination thereof and wherein when the applicator is appressed to a surface of a glass, plastic or ceramic analytic plate, the liquid composition flows from the reservoir through the applicator to the surface of the glass, plastic or ceramic analytic plate.
2. The applicator device of claim 1 wherein the liquid composition contained within the reservoir forms a transparent or translucent containment border when deposited on the glass, plastic or ceramic analytic plate.
3. The applicator device of claim 1 wherein the liquid composition contained within the reservoir forms a transparent containment border when deposited on the surface of the glass, plastic or ceramic analytic plate, wherein the transparent containment border is highly resistant to removal or abrasion.
4. The applicator device of claim 1 wherein the liquid composition contained within the reservoir forms a translucent containment border when deposited on the surface of the glass, plastic or ceramic analytic plate, wherein the translucent containment border is highly resistant to removal or abrasion.
5. The applicator device of claim 1 wherein the liquid composition contained within the reservoir forms a containment border when deposited on the glass, plastic or ceramic analytic plate and wherein the containment border can be treated to be invisible.
6. The applicator device of claim 1 wherein the liquid composition contained within the reservoir forms a containment border when deposited on the glass, plastic or ceramic analytic plate wherein the containment border is invisible.
7. The applicator device of claim 1 wherein the liquid composition contained within the reservoir forms a containment border when deposited on the glass or plastic analytic plate and wherein the containment border leaves the refractive index of the glass or plastic analytic plate unaltered when viewed through a microscope.
8. An applicator device comprising:
a reservoir and an applicator, the reservoir containing a quantity of a colorless liquid composition, and wherein when the applicator is appressed to a surface of a glass or plastic analytic plate, the liquid composition flows from the reservoir through the applicator to the surface of the glass or plastic analytic plate forming a containment border which does not alter the refractive index of the glass or plastic analytic plate when viewed through a microscope.
9. The applicator device of claim 8 wherein the liquid composition contained within the reservoir forms a transparent containment border when deposited on the glass or plastic analytic plate.
10. The applicator device of claim 8 wherein the liquid composition contained within the reservoir forms a transparent containment border when deposited on the glass or plastic analytic plate and wherein the containment border is highly resistant to removal or abrasion.
11. The applicator device of claim 8 wherein the liquid composition contained within the reservoir forms a containment border when deposited on the glass or plastic plate and wherein the containment border can be treated to be invisible.
12. The applicator device of claim 8 wherein the liquid composition contained within the reservoir forms a containment border when deposited on the glass or plastic analytic plate, and wherein the containment border is invisible.
13. The applicator device of claim 8 wherein the liquid composition comprises a polysiloxane, a siloxane, a silane, a silicone, a silicon fluid, or a combination thereof.
14. The applicator device of claim 8 wherein the containment border has a thickness of less than 0.00001 inch.
15. The applicator device of claim 8 wherein the containment border has a thickness of less than 0.0001 inch.
16. The applicator device of claim 8 wherein the containment border is highly resistant to removal or abrasion.
17. An applicator device comprising:
a reservoir and an applicator, the reservoir containing a quantity of a colorless liquid composition, and wherein when the applicator is appressed to a surface of a glass or plastic analytic plate, the liquid composition flows from the reservoir through the applicator to the surface of the glass or plastic analytic plate forming a containment border which does not alter the refractive index of the glass or plastic analytic plate when viewed through a microscope and wherein the containment border is highly resistant to removal or abrasion.
18. An applicator device comprising:
a reservoir and an applicator, the reservoir containing a quantity of a colorless liquid composition, and wherein when the applicator is appressed to a surface of a glass, plastic or ceramic analytic plate, the liquid composition flows from the reservoir through the applicator to the surface of the analytic plate forming a containment border having a thickness of less than 0.00001 inch.
19. The applicator device of claim 18 wherein the liquid composition contained within the reservoir forms a transparent or translucent containment border when deposited on the glass, plastic or ceramic analytic plate.
20. The applicator device of claim 18 wherein the liquid composition contained within the reservoir forms a transparent containment border when deposited on the surface of the glass, plastic or ceramic analytic plate, wherein the transparent containment border is highly resistant to removal or abrasion.
21. The applicator device of claim 18 wherein the liquid composition contained within the reservoir forms a translucent containment border when deposited on the surface of the glass, plastic or ceramic analytic plate, wherein the translucent containment border is highly resistant to removal or abrasion.
22. The applicator device of claim 18 wherein the liquid composition contained within the reservoir forms a containment border when deposited on the glass, plastic or ceramic analytic plate and wherein the containment border can be treated to be invisible.
23. The applicator device of claim 18 wherein the liquid composition contained within the reservoir forms a containment border when deposited on the glass, plastic or ceramic analytic plate wherein the containment border is invisible.
24. The applicator device of claim 18 wherein the liquid composition comprises a polysiloxane, a siloxane, a silane, a silicone, a silicon fluid, or a combination thereof.
25. An applicator device comprising:
a reservoir and an applicator, the reservoir containing a quantity of a colorless liquid composition, and wherein when the applicator is appressed to a surface of a glass, plastic or ceramic analytic plate, the liquid composition flows from the reservoir through the applicator to the surface of the analytic plate forming a containment border having a thickness of less than 0.0001 inch.
26. The applicator device of claim 25 wherein the liquid composition contained within the reservoir forms a transparent or translucent containment border when deposited on the glass, plastic or ceramic analytic plate.
27. The applicator device of claim 25 wherein the liquid composition contained within the reservoir forms a transparent containment border when deposited on the surface of the glass, plastic or ceramic analytic plate, wherein the transparent containment border is highly resistant to removal or abrasion.
28. The applicator device of claim 25 wherein the liquid composition contained within the reservoir forms a translucent containment border when deposited on the surface of the glass, plastic or ceramic analytic plate, wherein the translucent containment border is highly resistant to removal or abrasion.
29. The applicator device of claim 25 wherein the liquid composition contained within the reservoir forms a containment border when deposited on the glass, plastic or ceramic analytic plate and wherein the containment border can be treated to be invisible.
30. The applicator device of claim 25 wherein the liquid composition contained within the reservoir forms a containment border when deposited on the glass, plastic or ceramic analytic plate wherein the containment border is invisible.
31. The applicator device of claim 25 wherein the liquid composition comprises a polysiloxane, a siloxane, a silane, a silicone, a silicon fluid, or a combination thereof.
32. An applicator device comprising:
a reservoir and an applicator, the reservoir containing a quantity of a colorless liquid composition, and wherein when the applicator is appressed to a surface of a glass, plastic or ceramic analytic plate, the liquid composition flows from the reservoir through the applicator to the surface of the analytic plate forming a containment border which can be treated to be invisible.
33. The applicator device of claim 32 wherein the containment border has a thickness of less than 0.00001 inch.
34. The applicator device of claim 32 wherein the containment border has a thickness of less than 0.0001 inch.
35. The applicator device of claim 32 wherein the containment border is highly resistant to removal or abrasion.
36. The applicator device of claim 32 wherein the liquid composition comprises a polysiloxane, a siloxane, a silane, a silicone, a silicon fluid, or a combination thereof.
37. An applicator device comprising:
a reservoir and an applicator, the reservoir containing a quantity of a colorless liquid composition, and wherein when the applicator is appressed to a surface of a glass, plastic or ceramic analytic plate, the liquid composition flows from the reservoir through the applicator to the surface of the analytic plate forming a containment border which is invisible.
38. The applicator device of claim 37 wherein the containment border has a thickness of less than 0.00001 inch.
39. The applicator device of claim 37 wherein the containment border has a thickness of less than 0.0001 inch.
40. The applicator device of claim 37 wherein the containment border is highly resistant to removal or abrasion.
41. The applicator device of claim 37 wherein the liquid composition comprises a polysiloxane, a siloxane, a silane, a silicone, a silicon fluid, or a combination thereof.
42. An applicator device comprising:
a reservoir and an applicator, the reservoir containing a quantity of a colorless liquid composition, and wherein when the applicator is appressed to a surface of a glass, plastic or ceramic analytic plate, the liquid composition flows from the reservoir through the applicator to the surface of the analytic plate forming a containment border which is transparent.
43. The applicator device of claim 42 wherein the containment border has a thickness of less than 0.00001 inch.
44. The applicator device of claim 42 wherein the containment border has a thickness of less than 0.0001 inch.
45. The applicator device of claim 42 wherein the containment border is highly resistant to removal or abrasion.
46. The applicator device of claim 42 wherein the liquid composition comprises a polysiloxane, a siloxane, a silane, a silicone, a silicon fluid, or a combination thereof.
47. An applicator device comprising:
a reservoir and an applicator, the reservoir containing a quantity of a liquid composition, and wherein when the applicator is appressed to a surface of a glass, plastic or ceramic analytic plate, the liquid composition flows from the reservoir through the applicator to the surface of the analytic plate forming a containment border which is transparent and highly resistant to removal or abrasion.
48. The applicator device of claim 47 wherein the containment border has a thickness of less than 0.00001 inch.
49. The applicator device of claim 47 wherein the containment border has a thickness of less than 0.0001 inch.
50. The applicator device of claim 47 wherein the liquid composition comprises a polysiloxane, a siloxane, a silane, a silicone, a silicon fluid, or a combination thereof.
51. An applicator device comprising:
a reservoir and an applicator, the reservoir containing a quantity of a liquid composition, and wherein when the applicator is appressed to a surface of a glass, plastic or ceramic analytic plate, the liquid composition flows from the reservoir through the applicator to the surface of the analytic plate forming a containment border which is translucent and highly resistant to removal or abrasion.
52. The applicator device of claim 51 wherein the containment border has a thickness of less than 0.00001 inch.
53. The applicator device of claim 51 wherein the containment border has a thickness of less than 0.0001 inch.
54. The applicator device of claim 51 wherein the liquid composition comprises a polysiloxane, a siloxane, a silane, a silicone, a silicon fluid, or a combination thereof.
55. An applicator device comprising:
a reservoir and an applicator, the reservoir containing a quantity of a liquid composition, and wherein when the applicator is appressed to a surface of a glass, plastic or ceramic analytic plate, the liquid composition flows from the reservoir through the applicator to the surface of the analytic plate forming a containment border which is invisible and highly resistant to removal or abrasion.
56. The applicator device of claim 55 wherein the containment border has a thickness of less than 0.00001 inch.
57. The applicator device of claim 55 wherein the containment border has a thickness of less than 0.0001 inch.
58. The applicator device of claim 55 wherein the liquid composition comprises a polysiloxane, a siloxane, a silane, a silicone, a silicon fluid, or a combination thereof.
59. An applicator device comprising:
a reservoir and an applicator, the reservoir containing a quantity of a liquid composition comprising an acid, and at least one of a polysiloxane, a siloxane, a silane, a silicone, or a silicon fluid, and wherein when the applicator is appressed to a surface of a glass, plastic or ceramic analytic plate, the liquid composition flows from the reservoir through the applicator to the surface of the analytic plate.
60. The applicator device of claim 59 wherein the acid in the liquid composition is a mineral acid.
61. The applicator device of claim 59 wherein the liquid composition contained within the reservoir is colored.
62. The applicator device of claim 59 wherein the liquid composition contained within the reservoir is colorless.
63. The applicator device of claim 59 wherein the liquid composition contained within the reservoir forms a transparent or translucent containment border when deposited on the glass, plastic or ceramic analytic plate.
64. The applicator device of claim 59 wherein the liquid composition contained within the reservoir forms a transparent containment border when deposited on the surface of the glass, plastic or ceramic analytic plate, wherein the transparent containment border is highly resistant to removal or abrasion.
65. The applicator device of claim 59 wherein the liquid composition contained within the reservoir forms a translucent containment border when disposed on the surface of the glass, plastic or ceramic analytic plate, wherein the translucent containment border is highly resistant to removal or abrasion.
66. The applicator device of claim 59 wherein the liquid composition contained within the reservoir forms a containment border when disposed on the glass, plastic or ceramic analytic plate and wherein the containment border can be treated to be invisible.
67. The applicator device of claim 59 wherein the liquid composition contained within the reservoir forms a containment border when disposed on the glass, plastic or ceramic analytic plate and wherein the containment border leaves the refractive index of the glass or plastic analytic plate unaltered when viewed through a microscope.
68. The applicator device of claim 59 wherein the liquid composition contained within the reservoir forms a containment border when disposed on the glass, plastic or ceramic analytic plate wherein the containment border is invisible.
69. The applicator device of claim 59 wherein the containment border has a thickness of less than 0.00001 inch.
70. The applicator device of claim 59 wherein the containment border has a thickness of less than 0.0001 inch.
71. An applicator device comprising:
a reservoir and an applicator, the reservoir containing a quantity of a liquid composition comprising a polysiloxane, a siloxane, a silane, a silicone, a silicon fluid, or a combination thereof and wherein when the applicator is appressed to a surface of a glass, plastic or ceramic analytic plate, the liquid composition flows from the reservoir through the applicator to the surface of the glass, plastic or ceramic analytic plate forming a colored and transparent containment border thereon which is highly resistant to removal or abrasion.
72. The applicator device of claim 71 wherein the colored and transparent containment border can be treated to be invisible.
73. The applicator device of claim 71 wherein the colored and transparent containment border has a thickness of less than 0.00001 inch.
74. The applicator device of claim 71 wherein the colored and transparent containment border has a thickness of less than 0.0001 inch.
75. An applicator device comprising:
a reservoir and an applicator, the reservoir containing a quantity of a liquid composition comprising a polysiloxane, a siloxane, a silane, a silicone, a silicon fluid, or a combination thereof and wherein when the applicator is appressed to a surface of a glass, plastic or ceramic analytic plate, the liquid composition flows from the reservoir through the applicator to the surface of the glass, plastic or ceramic analytic plate forming a colored and translucent containment border thereon which is highly resistant to removal or abrasion.
76. The applicator device of claim 75 wherein the colored and translucent border can be treated to be invisible.
77. The applicator device of claim 75 wherein the colored and translucent containment border has a thickness of less than 0.00001 inch.
78. The applicator device of claim 75 wherein the colored and translucent containment border has a thickness of less than 0.0001 inch.
79. An applicator device comprising:
a reservoir and an applicator, the reservoir containing a quantity of a liquid composition, and wherein when the applicator is appressed to a surface of a glass, plastic or ceramic analytic plate, the liquid composition flows from the reservoir through the applicator to the surface of the analytic plate forming a containment border which is translucent and has a thickness of less than 0.0001 inch.
80. The applicator device of claim 79 wherein the containment border has a thickness of less than 0.00001 inch.
81. The application device of claim 79 wherein the containment border is highly resistant to removal or abrasion.
82. The applicator device of claim 79 wherein the liquid composition comprises a polysiloxane, a siloxane, a silane, a silicone, a silicon fluid, or a combination thereof.
Priority Applications (6)
Application Number | Priority Date | Filing Date | Title |
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US10/805,777 US20040179973A1 (en) | 1998-02-10 | 2004-03-22 | Analytic plate with containment border and method |
US10/990,080 US20050063876A1 (en) | 1998-02-10 | 2004-11-16 | Applicator device for applying a containment border |
US10/989,785 US20050070026A1 (en) | 1998-02-10 | 2004-11-16 | Method of applying a coating to an analytic plate |
US12/624,202 US8192994B2 (en) | 1998-02-10 | 2009-11-23 | Method of applying a biological specimen to an analytic plate |
US13/485,323 US8450116B2 (en) | 1998-02-10 | 2012-05-31 | Method of applying a biological specimen to an analytic plate |
US13/903,759 US9176029B2 (en) | 1998-02-10 | 2013-05-28 | Method of applying a biological specimen to an analytic plate |
Applications Claiming Priority (5)
Application Number | Priority Date | Filing Date | Title |
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US09/021,077 US5948685A (en) | 1998-02-10 | 1998-02-10 | Analytic plate with containment border and method of use |
PCT/US1999/002854 WO1999040431A1 (en) | 1998-02-10 | 1999-02-09 | Analytic plate and method |
US09/373,468 US6555384B1 (en) | 1998-02-10 | 1999-08-12 | Method of applying a containment border to an analytical plate |
US10/225,412 US6713304B2 (en) | 1998-02-10 | 2002-08-20 | Method of forming a containment border on an analytic plate |
US10/805,777 US20040179973A1 (en) | 1998-02-10 | 2004-03-22 | Analytic plate with containment border and method |
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US10/225,412 Division US6713304B2 (en) | 1998-02-10 | 2002-08-20 | Method of forming a containment border on an analytic plate |
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US10/990,080 Continuation US20050063876A1 (en) | 1998-02-10 | 2004-11-16 | Applicator device for applying a containment border |
US10/989,785 Continuation US20050070026A1 (en) | 1998-02-10 | 2004-11-16 | Method of applying a coating to an analytic plate |
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US10/225,412 Expired - Fee Related US6713304B2 (en) | 1998-02-10 | 2002-08-20 | Method of forming a containment border on an analytic plate |
US10/805,777 Abandoned US20040179973A1 (en) | 1998-02-10 | 2004-03-22 | Analytic plate with containment border and method |
US10/990,080 Abandoned US20050063876A1 (en) | 1998-02-10 | 2004-11-16 | Applicator device for applying a containment border |
US10/989,785 Abandoned US20050070026A1 (en) | 1998-02-10 | 2004-11-16 | Method of applying a coating to an analytic plate |
Family Applications Before (1)
Application Number | Title | Priority Date | Filing Date |
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US10/225,412 Expired - Fee Related US6713304B2 (en) | 1998-02-10 | 2002-08-20 | Method of forming a containment border on an analytic plate |
Family Applications After (2)
Application Number | Title | Priority Date | Filing Date |
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US10/990,080 Abandoned US20050063876A1 (en) | 1998-02-10 | 2004-11-16 | Applicator device for applying a containment border |
US10/989,785 Abandoned US20050070026A1 (en) | 1998-02-10 | 2004-11-16 | Method of applying a coating to an analytic plate |
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US (4) | US6713304B2 (en) |
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US9074778B2 (en) | 2009-11-04 | 2015-07-07 | Ssw Holding Company, Inc. | Cooking appliance surfaces having spill containment pattern |
US9176029B2 (en) | 1998-02-10 | 2015-11-03 | Lee H. Angros | Method of applying a biological specimen to an analytic plate |
US10317129B2 (en) | 2011-10-28 | 2019-06-11 | Schott Ag | Refrigerator shelf with overflow protection system including hydrophobic layer |
US11786036B2 (en) | 2008-06-27 | 2023-10-17 | Ssw Advanced Technologies, Llc | Spill containing refrigerator shelf assembly |
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US9176029B2 (en) | 1998-02-10 | 2015-11-03 | Lee H. Angros | Method of applying a biological specimen to an analytic plate |
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US9532649B2 (en) | 2008-06-27 | 2017-01-03 | Ssw Holding Company, Inc. | Spill containing refrigerator shelf assembly |
US9179773B2 (en) | 2008-06-27 | 2015-11-10 | Ssw Holding Company, Inc. | Spill containing refrigerator shelf assembly |
US9207012B2 (en) | 2008-06-27 | 2015-12-08 | Ssw Holding Company, Inc. | Spill containing refrigerator shelf assembly |
US8596205B2 (en) | 2008-06-27 | 2013-12-03 | Ssw Holding Company, Inc. | Spill containing refrigerator shelf assembly |
US10130176B2 (en) | 2008-06-27 | 2018-11-20 | Ssw Holding Company, Llc | Spill containing refrigerator shelf assembly |
US10827837B2 (en) | 2008-06-27 | 2020-11-10 | Ssw Holding Company, Llc | Spill containing refrigerator shelf assembly |
US11191358B2 (en) | 2008-06-27 | 2021-12-07 | Ssw Advanced Technologies, Llc | Spill containing refrigerator shelf assembly |
US11786036B2 (en) | 2008-06-27 | 2023-10-17 | Ssw Advanced Technologies, Llc | Spill containing refrigerator shelf assembly |
US12096854B2 (en) | 2008-06-27 | 2024-09-24 | Ssw Advanced Technologies, Llc | Spill containing refrigerator shelf assembly |
US9074778B2 (en) | 2009-11-04 | 2015-07-07 | Ssw Holding Company, Inc. | Cooking appliance surfaces having spill containment pattern |
US10317129B2 (en) | 2011-10-28 | 2019-06-11 | Schott Ag | Refrigerator shelf with overflow protection system including hydrophobic layer |
Also Published As
Publication number | Publication date |
---|---|
US20030003586A1 (en) | 2003-01-02 |
US20050063876A1 (en) | 2005-03-24 |
US20050070026A1 (en) | 2005-03-31 |
US6713304B2 (en) | 2004-03-30 |
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Legal Events
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