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Merck
CN

P8991

Sigma-Aldrich

Nunc® MicroWell 96 well optical bottom plates

96 well optical bottom plate, cell cultured treated, 400uL/well, black, 30/cs

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别名:
96 multiwell plate, 96 well ELISA plate, 96 well immunoassay plate, 96 well microplate, 96 well microtiter plate, 96 well optical bottom plate, 96 well plate, ELISA plate, immunoassay plate, optical bottom plate
UNSPSC代码:
41122107
NACRES:
NB.22

物料

black polystyrene
flat bottom clear wells

无菌性

sterile

特点

lid
polystyrene/polymer base

包装

case of 30 ea (internal packs of 10)

制造商/商品名称

Nunc 165305

板长度 × 宽度

128 mm × 86 mm

尺寸

96 wells

孔体积

200 μL

孔工作体积

400 μL

工作体积

200 μL

适用性

suitable for (fluorescence/luminescene based assays)

吸附类型

Tissue Culture (TC)-treated surface

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一般描述

Polystyrene/Polymer Base

Optimum clarity for viewing well contents. Polymer bottom plates combine the optical clarity of virgin crystalline polystyrene with optimal surface for a wide range of HTS applications. Polystyrene upper structures available in black or white. Flat bottom well geometry for plate reader access. Black plates provide minimum back-scatterd light. White plates maximize reflection and provide minimum autoflorescence and autoluminescence. Note: All plates supplied with lid and sterile.

White or black upper structure with polystyrene/polymer bottom plates combine the optical clarity of virgin crystalline polystyrene with optimal surface for a wide range of HTS applications

  • Nunclon® Δ (cell culture surface), Poly-D-Lysine or Collagen I surfaces for cell culture
  • Non-treated plates are optimized for scintillation counting
  • Working volume range: 50 - 200 μl/well

法律信息

Nunc is a registered trademark of Thermo Fisher Scientific or its subsidiaries
Nunclon is a registered trademark of Thermo Fisher Scientific or its subsidiaries

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Camille Dejos et al.
Scientific reports, 8(1), 5944-5944 (2018-04-15)
For many neurodegenerative disorders, expression of a pathological protein by one cell type impedes function of other cell types, which in turn contributes to the death of the first cell type. In transgenic mice modelling Stargardt-like (STGD3) maculopathy, human mutant

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