Chemical apparatus and process disinfecting – deodorizing – preser – Analyzer – structured indicator – or manipulative laboratory... – Sample mechanical transport means in or for automated...
Reexamination Certificate
2003-06-12
2004-10-05
Wallenhorst, Maureen M. (Department: 1743)
Chemical apparatus and process disinfecting, deodorizing, preser
Analyzer, structured indicator, or manipulative laboratory...
Sample mechanical transport means in or for automated...
C422S067000, C422S082050, C422S105000, C436S043000, C436S046000, C436S164000, C436S165000, C436S180000, C435S287300, C382S128000, C382S133000
Reexamination Certificate
active
06800249
ABSTRACT:
TECHNICAL FIELD
The invention relates generally to a slide staining apparatus and system. More particularly the invention relates to an automated system of staining slides comprising a biological sample.
BACKGROUND
In the field of medical diagnostics and research, the detection, identification, quantification, and characterization of cells of interest, such as cancer cells, through testing of biological samples is an important aspect of diagnosis and research. Typically, a biological sample such as bone marrow, lymph nodes, peripheral blood, cerebrospinal fluid, urine, effusions, fine needle aspirates, peripheral blood scrapings or other biological materials are prepared by staining a sample to identify cells of interest.
In Fluorescent In Situ Hybridization (FISH) a fluorescently labeled oligonucleotide probe is added to a tissue sample on a microscope slide under conditions that allow for the probe to enter the cell and enter the nucleus. If the labeled sequence is complementary to a sequence in a cell on the slide a fluorescent spot will be seen in the nucleus when the cell is visualized on a fluorescent microscope. FISH has the advantage that the individual cells containing the DNA sequences being tested can be visualized in the context of the tissue.
Immunostaining techniques utilizing non-fluorescent techniques are also commonly used. Such techniques can include the formation of colored precipitates and enzyme based reaction to label a sample. The result of the staining provides, for example, a precipitate at a location comprising a particular biological molecule, cell, or characteristic of interest.
Both non-fluorescent and fluorescent manual staining techniques are time consuming, result in variability among samples, and often utilize hazardous reagents. To overcome these problems automated systems have been designed to introduce cost savings, uniformity of slide preparation, and reduction of errors. Automated slide stainers are widely used in pathology to stain tissue samples that have been cut with a microtome and placed on glass slides. One common type of automated slide stainer consists of a set of racks for holding slides flat over a drain pan and a robotic arm which can travel in x, y and z over the slides. The arm carries a set of fluid dispensers. Some of these are connected to pumps that dispense a single fluid such as buffer. Others are connected to valves and can be used to dispense several fluids and some may have syringe pumps attached so they can draw and dispense fluids from vials prepositioned under the arm's range of motion. Descriptions of exemplary automatic slide stainers can be found in U.S. Pat. Nos. 6,352,861; 6,183,693; 6,349,264; and 6,180,061, the contents of which incorporated herein by reference in their entirety. There are several limiting factors to these designs including (1) that it is helpful to be able to control where the reagent is placed relative to the tissue sample, and (2) some fluids such as wash buffers are poured on the slide in excess and allowed to flow off the sides of the slide into the drain but others such as custom synthesized antibodies for IHC stains are very expensive. Typically just enough of these expensive reagents to cover the tissue sample is dripped onto the slide and held in place by surface tension.
SUMMARY
The invention provides a method for automated staining of a biological sample on a substrate. The method includes forming an image of the biological sample on the substrate; identifying a region to be stained comprising the biological sample; and dispersing a reagent on to the region to be stained. In one aspect of the invention, the method further comprises identifying a staining characteristic of the biological sample and dispensing the reagent on to the region to be stained based upon the staining characteristic. The automated stainer may use individual microscope slides as a substrate or may utilize carriers comprising multiple slides. Images acquired by the automated staining method can be high or low magnification images of the biological sample. In yet another aspect of the invention the method further comprises marking the region to be stained by surrounding the biological sample with a hydrophobic medium.
The invention also provide an apparatus comprising an imaging camera; a stage; at least one reagent container; at least one reagent dispenser device for dispensing a reagent from the at least one reagent container; a dispenser relocation device for moving the dispenser and/or stage relative to one another; and a computer. The imaging camera is in communication with the computer and is operable to image a slide on the stage and determine a processing parameter for the slide. The computer comprises an algorithm on a computer readable medium for instructing the computer to determine a location and an area comprising a biological sample on the slide, instructing the dispenser relocation device to relocate the dispenser to the area comprising the biological sample and dispensing a reagent from the reagent container in accordance with the processing parameter. In one aspect of the invention the apparatus further comprises a tracer device.
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ChromaVision Medical Systems, Inc.
Wallenhorst Maureen M.
LandOfFree
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