VWR® Polysine®, Adhesion Slides
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Tissue section thickness of 2 to 5 µm
90° ground edges and color-frosted end for labeling
Adhesion superior to glue-, protein- or silane-treated slides
Specifications:
Application | microscopy, Histology |
Material | Borosilicate glass |
Storage Temperature | Ambient |
Product Type | Glass slide |
Product Brand | VWR |
Product Grade | Molecular Biology |
VWR® Polysine® Adhesion Slides are specially coated microscope slides designed for superior adhesion of tissue sections and cell preparations. The permanent adhesive coating provides strong binding of specimens, significantly reducing tissue loss during extended staining procedures, including in situ hybridisation, immunocytochemistry, and cytological preparations.
These slides are ideal for molecular biology, histology, and pathology laboratories, offering a reliable alternative to glue-, protein-, or silane-coated slides.
Key Features
- Adhesive Coating: Strong and permanent surface treatment for optimal specimen retention
- Slide Dimensions: Standard size with 90° ground edges
- Color-Frosted End: Easy labelling and identification
- Section Thickness Compatibility: Recommended for tissue sections 2 to 5 µm thick
- High Performance: Outperforms protein, glue, or silane-coated alternatives
- Application Ready: Ideal for cytocentrifugation, long-term hybridisation, and diagnostic workflows
Recommended Applications
- Molecular Biology Techniques: In situ hybridisation (ISH), FISH
- Immunocytochemistry (ICC)
- Cytological smears and cytocentrifuged samples
- Histological sectioning with prolonged staining protocols
- Tissue microarrays (TMA)
Packaging Information
Catalog No. | Pack Type | Qty per Pack | Edge Finish | Label Area |
---|---|---|---|---|
631-0107 | Slide box | 72 slides | 90° ground edges | Colour-frosted label end |
VWR® Polysine® Adhesion Slides offer exceptional tissue and cell retention, making them the ideal choice for high-precision staining and hybridisation procedures. Their robust coating ensures minimal sample loss even in demanding protocols, enhancing accuracy and consistency in histological and molecular analyses.