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IL-9 ELISA 试剂盒

This 人 IL-9 ELISA Kit specifically detects IL-9 in Cell Culture Supernatant, Serum, Plasma (heparin), Plasma (citrate) 和 Plasma (EDTA).
产品编号 ABIN4986965
发货至: 中国
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Quick Overview for IL-9 ELISA 试剂盒 (ABIN4986965)

抗原

See all IL-9 (IL9) ELISA试剂盒
IL-9 (IL9) (Interleukin 9 (IL9))

适用

  • 9
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  • 5
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检测方法

Colorimetric

实验类型

Sandwich ELISA

检测范围

3.9-250 pg/mL

应用范围

ELISA

样品类型

Cell Culture Supernatant, Serum, Plasma (heparin), Plasma (citrate), Plasma (EDTA)
  • 最低检测浓度

    3.9 pg/mL

    Analytical Method

    Quantitative

    特异性

    Natural and recombinant Human IL-9 Ligand

    灵敏度

    2 pg/mL

    试剂未包括

    • Microplate reader.
    • Pipettes and pipette tips.
    • EP tube Deionized or distilled water.
  • 应用备注

    Detection Wavelength: 450 nm

    样本量

    20 μL

    实验时间

    3 h

    板类型

    Pre-coated

    限制

    仅限研究用
  • 储存条件

    4 °C
  • 抗原 See all IL-9 (IL9) ELISA试剂盒

    IL-9 (IL9) (Interleukin 9 (IL9))

    别名

    IL-9

    背景

    Human IL-9 was originally identified as a cytokine found in the conditioned medium of a human T cell leukemia virus type I (HTLV-I) transformed T cell line that is mitogenic for the factor-dependent human megakaryoblastic leukemic cell line, M07e. This human cytokine and its murine homologue are now designated as human and mouse IL-9. The gene for H IL-9 has been mapped to human chromosome 5. As in the mouse system, the human IL-9 cDNA encodes a 144 amino acid residue precursor protein with an 18 amino acid signal peptide that is cleaved to form the mature cysteinerich protein with a predicted molecular mass of 14 kDa. Human IL-9 contains four potential Nlinked glycosylation sites and the native HIL-9 is a highly glycosylated protein. Human and mouse IL-9 share 56 % and 67 % homology at the amino acid and nucleotide levels, respectively. Although murine IL-9 is active on human cells, human IL-9 is not active on mouse cells. Human and murine IL9 are also capable of enhancing in vitro survival of human T cell lines as well as synergizing with Epo to support erythroid colony formation in vitro.

    途径

    JAK/STAT Signaling
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