C7057
Nunc® Lab-Tek® II Chamber Slide™ system
wells 8, well area 0.7 cm2, sterile
Synonym(s):
cell culture chamber, chamber slides, microscope slides, microscopy slides
material
polystyrene chamber
sterility
sterile
feature
CE marked
manufacturer/tradename
Nunc 154534
packaging
pack of 16 ×
well area
0.7 cm2
wells
8
working volume
0.2-0.5 mL
suitability
suitable for (cell culture; attachment and growth of cells)
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General description
Grow, stain, and examine cells directly on the Nunc® Lab-Tek® II chamber slide™ which consists of a removable polystyrene media chamber attached to a standard glass slide. Slide surface is specially treated for adherent cell culture. Available in 1-, 2-, 4-, and 8-well formats.
Features and Benefits
- Slide surface is specially treated with a unique RS wash to ensure consistent cell growth.
- Tabbed polystyrene lid allows gas exchange with minimal evaporation.
- Removal tool separates media chamber from glass slide.
- Biocompatible adhesive hydrophobic well border is printed on slide.
- Slide features a white frosted writing area.
- Includes: Chamber removal tool.
- Sterile
- Packed in convenient stackable incubation trays.
Legal Information
Chamber Slide is a trademark of Thermo Fisher Scientific or its subsidiaries
Lab-Tek is a registered trademark of Thermo Fisher Scientific or its subsidiaries
Nunc is a registered trademark of Thermo Fisher Scientific or its subsidiaries
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The Journal of physiology, 595(12), 3847-3865 (2017-03-28)
Repolarizing currents through K+ channels are essential for proper sinoatrial node (SAN) pacemaking, but the influence of intracellular Ca2+ on repolarization in the SAN is uncertain. We identified all three isoforms of Ca2+ -activated small conductance K+ (SK) channels in
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From early embryonic life, anti-Müllerian hormone (AMH) is produced by Sertoli cells and is essential for male sex differentiation. In females, AMH is produced by immature granulosa cells (GCs) but a definitive function in females is uncertain. We have assessed
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Clinical cancer research : an official journal of the American Association for Cancer Research, 21(6), 1383-1394 (2015-01-16)
KRAS mutations are frequent driver mutations in multiple cancers. KRAS mutations also induce anti-EGFR antibody resistance in adenocarcinoma such as colon cancer. The aim of this study was to overcome anti-EGFR antibody resistance by coupling the antibody to KRAS-specific siRNA.
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