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CLS3590

Corning® 96孔EIA/RIA分析微板

flat bottom clear, polystyrene, high binding surface, pkg of (individually wrapped), non-sterile, lid: no

别名:

96孔多孔板, 96孔微孔板, 96孔微孔滴定板, 96孔板, EIA/RIA板, 免疫分析板

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About This Item

分類程式碼代碼:
41121800
NACRES:
NB.13

材料

flat bottom clear
polystyrene
polystyrene
round wells

無菌

non-sterile

特點

lid: no
skirt
plate format: 96 well standard
well: flat bottom, clear

包裝

pack of 1
case of 100
pkg of (individually wrapped)

製造商/商標名

Corning 3590

尺寸

96 wells , 96 well plate

孔容積

330-360 μL , Note: CLS3366 and CLS3797 have well volume capacities of 330 uL

孔有效容積

75-200 μL

顏色

clear plate

適合性

suitable for (EIA/RIA; immunoassays)

結合類型

high binding surface

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一般說明

  • 高结合表面和基质(>10kD)以及带有离子基团和/或疏水区域的大分子结合
  • 结合能力大约是500ng小鼠IgG/cm2
  • 适合免疫分析
  • EIA/RIA按批次测试,如果需要可以提供每批次的证书
  • 推荐最大工作体积为75到200 μL
  • 符合标准微板足迹和尺寸
  • 不带盖子,盖子分开供应
这些96孔EIA/RIA板用于体外诊断免疫分析。 所有EIA/RIA板用特殊医药级别聚苯乙烯生产,用于一致结合,高光学清晰度和低背景吸收。 另外,Easy-Wash产品是认证表面化学项目一部分,保证了中蛋白质结合效果符合质量规范。

法律資訊

Corning is a registered trademark of Corning, Inc.
Easy-Wash is a trademark of Corning, Inc.

分析证书(COA)

输入产品批号来搜索 分析证书(COA) 。批号可以在产品标签上"批“ (Lot或Batch)字后找到。

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William J Olson et al.
Cell reports, 28(11), 2878-2891 (2019-09-12)
CD4 T follicular helper (Tfh) cells are specialized in helping B cells during the germinal center (GC) reaction and ultimately promote long-term humoral immunity. Here we report that loss of the nuclear orphan receptor NR2F6 causes enhanced survival and accumulation of
Katia Schoeler et al.
The FEBS journal, 286(18), 3566-3581 (2019-05-24)
Upon activation by antigen, B cells form germinal centres where they clonally expand and introduce affinity-enhancing mutations into their B-cell receptor genes. Somatic mutagenesis and class switch recombination (CSR) in germinal centre B cells are initiated by the activation-induced cytidine
Karen Cortés-Sarabia et al.
Applied microbiology and biotechnology, 104(14), 6173-6183 (2020-05-29)
Bacterial vaginosis is one of the most frequent vaginal infections. Its main etiological agent is Gardnerella vaginalis, which produces several virulence factors involved in vaginal infection and colonization, in particular, sialidase (SLD), a potential clinical biomarker that participates in immune

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