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CLS3516

Corning® Costar® 经TC处理多孔板

size 6 wells, clear, polystyrene plate, flat bottom, case of 50 (individually wrapped), sterile, lid

同義詞:

多孔板, 组织培养板, 细胞培养板

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About This Item

分類程式碼代碼:
41122107
eCl@ss:
32190102
NACRES:
NA.75

材料

clear
clear bottom
flat bottom
polystyrene plate
round clear wells

描述

growth area 9.5 cm2

無菌

sterile

特點

lid
skirt

包裝

case of 50 (individually wrapped)

製造商/商標名

Corning 3516

尺寸

6 wells

孔直徑

34.8 mm

孔容積

16.8 mL

孔有效容積

1.9-2.9 mL

結合類型

Tissue Culture (TC)-treated surface

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一般說明

带有凝结环的板盖可防止交叉污染。所有平板具有统一脚标,以及凸出的小珠以助堆放。每个孔均有编码易于识别。除非另行说明,否则材质为聚苯乙烯。

應用

Corning® Costar® 经TC处理多孔板已用于:
  • 培养SaOS-2细胞
  • 构建稳定的细胞系
  • 接种和分化细胞用于实时逆转录聚合酶链反应(RT-PCR)

特點和優勢

  • 平底提高稳定性。
  • 经过特别处理以助于实现最佳的细胞附着
  • 通过伽马辐射确保无菌
  • 不含热原,确保安全的细胞培养环境。

法律資訊

Corning is a registered trademark of Corning, Inc.
Costar is a registered trademark of Corning, Inc.

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Emad Tolba et al.
Journal of materials chemistry. B, 4(3), 376-386 (2016-01-21)
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Chintha Lankatillake et al.
Plant methods, 17(1), 3-3 (2021-01-08)
Enzyme assays have widespread applications in drug discovery from plants to natural products. The appropriate use of blanks in enzyme assays is important for assay baseline-correction, and the correction of false signals associated with background matrix interferences. However, the blank-correction
S Decembrini et al.
Scientific reports, 10(1), 10275-10275 (2020-06-26)
The development of improved methods to culture retinal organoids is relevant for the investigation of mechanisms of retinal development under pathophysiological conditions, for screening of neuroprotective compounds, and for providing a cellular source for clinical transplantation. We report a tissue-engineering
Nhan Huynh et al.
Genome biology, 21(1), 279-279 (2020-11-19)
Advances in CRISPR technology have immensely improved our ability to manipulate nucleic acids, and the recent discovery of the RNA-targeting endonuclease Cas13 adds even further functionality. Here, we show that Cas13 works efficiently in Drosophila, both ex vivo and in
Dakota B Ward et al.
International journal of molecular sciences, 20(17) (2019-08-24)
Contrast-induced acute kidney injury (CI-AKI) is the third most common cause of hospital associated kidney damage. Potential mechanisms of CI-AKI may involve diminished renal hemodynamics, inflammatory responses, and direct cytotoxicity. The hypothesis for this study is that diatrizoic acid (DA)

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