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Alexa Fluor® 488 Mouse Anti-Human DAF/CD55 Antibody (S-628-48)

Complement decay-accelerating factor,CR

价格 1,257.00 供应商现货 : 3-5个工作日
货号 S0B5604
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产品规格
  • 宿主来源

    Mouse
  • 抗原名称

    DAF/CD55
  • 分子别名

    Complement decay-accelerating factor; CR
  • 免疫原

    Recombinant Protein
  • 细胞定位

    Cell membrane
  • Accession

    P08174
  • 克隆号

    S-628-48
  • 抗体类型

    Mouse mAb
  • 抗体同种型

    IgG1,k
  • 反应种属 ?

    Hu
  • 阳性样本

    Human Peripheral Blood cells
  • 纯化方式

    Protein G
  • 浓度

    0.2 mg/ml
  • 标记

    Alexa Fluor® 488
  • 性状

    Liquid
  • 缓冲体系

    PBS, 1% BSA, 0.3% Proclin 300

  • 储存条件

    12 months from date of receipt / reconstitution, 2 to 8 °C as supplied

  • 应用

    FCM

  • 稀释度

    应用 稀释度 推荐种属
    FCM 5μl per million cells in 100μl volume Hu
背景介绍
  • Decay-accelerating factor (DAF, also known as CD55) is a complement regulatory protein that plays a crucial role in protecting cells from complement-mediated attack. It is a membrane lipid microdomain-associated, GPI-anchored protein that accelerates the decay of C3 and C5 convertases, which are essential for the downstream formation of the membrane attack complex (MAC) in the complement cascade. This action helps prevent excessive complement activation and subsequent cell damage. CD55 is involved in various physiological and pathological processes, including immune regulation, cancer progression, and tissue protection. In cancer, CD55 can promote malignant transformation, cell survival, angiogenesis, and inhibit apoptosis through intracellular signaling pathways such as JNK, JAK/STAT, MAPK/NF-κB, and LCK. Additionally, it is enriched in the cancer stem cell niche and can be induced by chemotherapeutics and hypoxic environments.

  • 流式分析

    • Flow cytometric analysis of Human DAF/CD55 expression on Human Peripheral Blood cells. Human Peripheral Blood cells were stained with Alexa Fluor® 488 Mouse IgG1, κ Isotype Control (Left panel) or Alexa Fluor® 488 Mouse Anti-Human DAF/CD55 Antibody (Right panel) at 5 μl/test. Flow cytometry and data analysis were performed using BD FACSymphony™ A1 and FlowJo™ software.

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