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Recombinant Selectin E/CD62e 抗体

The 小鼠 单克隆 anti-Selectin E/CD62e antibody is suitable to detect Selectin E/CD62e in samples from 人. It has been validated for IHC.
产品编号 ABIN8093462
发货至: 中国
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Quick Overview for Recombinant Selectin E/CD62e 抗体 (ABIN8093462)

抗原

See all Selectin E/CD62e (SELE) 抗体
Selectin E/CD62e (SELE) (Selectin E (SELE))

抗体类型

Recombinant Antibody

适用

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人

宿主

  • 66
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小鼠

克隆类型

  • 84
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单克隆

标记

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This Selectin E/CD62e antibody is un-conjugated

应用范围

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Immunohistochemistry (IHC)

克隆位点

R16G4
  • 原理

    SELE Antibody / E-selectin

    免疫原

    Prokaryotic recombinant fusion protein corresponding to the cysteine-rich complement control protein domains of the CD62E molecule was used as the immunogen for the SELE/E-selectin antibody.

    亚型

    IgG1, kappa
  • 应用备注

    1. Optimal dilution of the SELE/E-selectin antibody should be determined by the researcher.

    2. This SELE/E-selectin antibody is recombinantly produced by expression in CHO cells.

    限制

    仅限研究用
  • 状态

    Liquid

    浓度

    0.2 mg/mL

    缓冲液

    0.2 mg/mL in 1X PBS with 0.05 % BSA, 0.05 % sodium azide

    储存液

    Sodium azide

    注意事项

    This product contains Sodium azide: a POISONOUS AND HAZARDOUS SUBSTANCE which should be handled by trained staff only.

    储存条件

    -20 °C,-80 °C

    储存方法

    SELE/E-selectin antibody with sodium azide - store at 2 to 8oC, antibody without sodium azide - store at -20 to -80oC.
  • 抗原

    Selectin E/CD62e (SELE) (Selectin E (SELE))

    别名

    SELE

    背景

    SELE antibody, also known as E-selectin antibody, recognizes E-selectin, a type I transmembrane adhesion molecule encoded by the SELE gene and commonly referred to as CD62E and endothelial-leukocyte adhesion molecule 1. E-selectin is primarily localized to the plasma membrane of activated endothelial cells and is a member of the selectin family of calcium-dependent lectins. Under basal conditions, SELE expression is low or absent, however, it is rapidly induced in endothelial cells in response to inflammatory cytokines such as interleukin-1 and tumor necrosis factor alpha, linking vascular activation to immune cell recruitment.

    SELE antibody detects a glycoprotein composed of an N-terminal C-type lectin domain, an epidermal growth factor-like domain, multiple short consensus repeat units, a single transmembrane region, and a short cytoplasmic tail. The lectin domain mediates binding to sialylated carbohydrate ligands, including sialyl Lewis x structures on neutrophils, monocytes, and subsets of lymphocytes. Through these interactions, E-selectin supports leukocyte tethering and rolling along the vascular endothelium under shear flow conditions, representing a critical early step in extravasation during inflammation.

    Functionally, E-selectin plays a central role in acute and chronic inflammatory responses by regulating leukocyte trafficking into tissues. Because its expression is tightly controlled and transient following cytokine stimulation, SELE is widely used as a marker of endothelial activation in experimental models of vascular inflammation. Elevated E-selectin levels have been associated with atherosclerosis, cardiovascular disease, autoimmune disorders, and other inflammatory conditions. In oncology research, endothelial E-selectin can contribute to adhesion of circulating tumor cells, implicating SELE in metastatic dissemination and tumor-vascular interactions.

    The SELE gene is located on chromosome 1 and is transcriptionally regulated by inflammatory signaling pathways, including those downstream of nuclear factor kappa B activation. The endothelial-restricted and inducible nature of E-selectin expression makes detection of this protein valuable for studying cytokine signaling, vascular biology, and immune-endothelial interactions.

    This recombinant monoclonal SELE antibody (clone r16G4) targets E-selectin protein in research applications. SELE antibody supports investigation of endothelial activation, leukocyte recruitment mechanisms, and disease-associated inflammatory signaling.

    UniProt

    P16581

    途径

    Thromboxane A2 Receptor Signaling
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