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Kvbeta K+ channel/Pan-Kvbeta K

+ channel Antibody-Kvbeta K+ channel/Pan-Kvbeta K+ channel Antibody
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  • 询价
  • Biogradetech
  • 美国
  • BGT-ANT-36613
  • 2025年07月15日
  • IB,ICC,IHC,WB
  • Mouse
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    • 详细信息
    • 文献和实验
    • 技术资料
    • 免疫原

      免疫原详情见datasheet,该抗体亚型为:IgG2a, kappa

    • 保存条件

      -2°C-8°C

    • 保质期

      1年

    • 库存

      100

    • 供应商

      艾美捷科技

    • 宿主

      Mouse

    • 应用范围

      IB,ICC,IHC,WB

    • 抗体英文名

      Kvbeta K+ channel/Pan-Kvbeta K+ channel Antibody

    • 抗体名

      Kvbeta K+ channel/Pan-Kvbeta K+ channel Antibody

    Kvbeta K+ channel/Pan-Kvbeta K+ channel Antibody,Kvbeta K+ channel/Pan-Kvbeta K+ channel Antibody,Kvbeta K+ channel/Pan-Kvbeta K+ channel Antibody,Kvbeta K+ channel/Pan-Kvbeta K+ channel Antibody

    产品名称:Kvbeta K+ channel/Pan-Kvbeta K+ channel Antibody-Kvbeta K+ channel/Pan-Kvbeta K+ channel Antibody

    产品货号:BGT-ANT-36613

    产品规格:50ug#100ug#1mg

    产品细节图片1

    应用类型:IB,ICC,IHC,WB

    产品细节图片2

    蛋白别名:KCNAB2, hKvbeta2, KCNK2, KCNA2B, Voltage-gated potassium channel subunit beta-2, K(+) channel subunit beta-2, Kv-beta-2

    产品细节图片3

    Kvbeta K+ channel/Pan-Kvbeta K+ channel Antibody-Kvbeta K+ channel/Pan-Kvbeta K+ channel Antibody详情见产品datasheet

    点击:Kvbeta K+ channel/Pan-Kvbeta K+ channel Antibody-Kvbeta K+ channel/Pan-Kvbeta K+ channel Antibody更多Biogradetech产品信息价格,货期,产品说明,百度搜“艾美捷科技”进入官网网站,查看具体产品且快速下单。

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    图标文献和实验
    该产品被引用文献
    Kvbeta K+ channel/Pan-Kvbeta K+ channel Antibody
    相关实验
    • Manual Whole-Cell Patch-Clamping of the HERG Cardiac K+ Channel

      from direct pharmacological inhibition of the human ether-a-go-go- related gene (HERG) cardiac K+ channel. It is standard practice to test a drug’s ability to interact with the HERG channel prior to entry into clinical trials. This testing is used

    • Engineering K+ Channels Using Semisynthesis

      approach, which permits the use of chemical synthesis to manipulate the selectivity filter. In this chapter, we describe the protocols that we have developed for the semisynthesis of the K+ channel, KcsA. We anticipate that the protocols described

    • Use of ion-channel modulating agents to study cyanobacterial Na+-K+ fluxes

      + levels increased exponentially with rising alkalinity, with K+ levels being maximal for optimal growth pH (∼8). At standardized pH conditions, the increase in cellular Na+ , as induced by NaCl at 10 mM, was coupled by the two sodium channel-modulating

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