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Z734853

Nunc® Lab-Tek® II chambered coverglass

8 wells, polystyrene chambers, 1.5 borosilicate coverglass, 0.7 cm2/well, 96/cs

Synonym(s):
chamber slides, microscope slides, microscopy slides
NACRES:
NB.22

material

borosilicate glass
colorless
polystyrene chamber

sterility

non-sterile
sterile

quality

CE marked

packaging

case of 96

manufacturer/tradename

Nunc 155409

W × L

24 mm × 55 mm

well area

0.7 cm2

wells

8

working volume

0.2-0.5 mL

suitability

suitable for (high power inverted microscopic viewing; confocal image analysis)

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1 of 4

This Item
Z734756Z734640Z734535
sterility

non-sterile

sterility

non-sterile

sterility

sterile

sterility

non-sterile

packaging

case of 96

packaging

case of 96

packaging

case of 96

packaging

case of 96

manufacturer/tradename

Nunc 155409

manufacturer/tradename

Nunc 155382

manufacturer/tradename

Nunc 155379

manufacturer/tradename

Nunc 155360

W × L

24 mm × 55 mm

W × L

24 mm × 55 mm

W × L

24 mm × 55 mm

W × L

25 mm × 75 mm

wells

8

wells

4

wells

2

wells

1

General description

  • Excellent for confocal image analysis
  • Optimal for high-power inverted microscopic viewing
  • Chambered coverglass
  • The medium chamber is not removable

Features and Benefits

  • Ideal for culture, examining, and analyzing living cells on a single device.
  • Available in 1, 2, 4, and 8-well formats.
  • Media chamber safely mounted to the No. 1.5 borosilicate coverglass using biocompatible acrylic adhesive.
  • Optimal gas exchange ensured with minimal evaporation via tabbed polystyrene cover.
  • Shipped conveniently in stackable incubation trays.

Legal Information

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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Massimo D'Agostino et al.
The EMBO journal, 37(19) (2018-08-19)
Constitutive membrane fusion within eukaryotic cells is thought to be controlled at its initial steps, membrane tethering and SNARE complex assembly, and to rapidly proceed from there to full fusion. Although theory predicts that fusion pore expansion faces a major
Charles R Krois et al.
Cellular and molecular life sciences : CMLS, 76(12), 2425-2447 (2019-02-23)
RDH1 is one of the several enzymes that catalyze the first of the two reactions to convert retinol into all-trans-retinoic acid (atRA). Here, we show that Rdh1-null mice fed a low-fat diet gain more weight as adiposity (17% males, 13%
Mary Mirvis et al.
PLoS biology, 17(7), e3000381-e3000381 (2019-07-18)
The primary cilium is a central signaling hub in cell proliferation and differentiation and is built and disassembled every cell cycle in many animal cells. Disassembly is critically important, as misregulation or delay of cilia loss leads to cell cycle
Dae-Hee Lee et al.
Autophagy, 14(11), 1870-1885 (2018-07-07)
Macroautophagy is induced under various stresses to remove cytotoxic materials, including misfolded proteins and their aggregates. These protein cargoes are collected by specific autophagic receptors such as SQSTM1/p62 (sequestosome 1) and delivered to phagophores for lysosomal degradation. To date, little

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