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17-beta Estradiol 抗体

This anti-17-beta Estradiol antibody is a 绵羊 antibody detecting 17-beta Estradiol in ELISA. Suitable for .
产品编号 ABIN638825
发货至: 中国

Quick Overview for 17-beta Estradiol 抗体 (ABIN638825)

抗原

17-beta Estradiol

适用

请咨询

宿主

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绵羊

标记

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This 17-beta Estradiol antibody is un-conjugated

应用范围

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ELISA
  • 特异性

    It recognizes 17 beta estradiol, a mammalian estrogenic hormone, produced in the ovaries, placenta and testis that has a role in normal sexual development and the regulation of the menstrual cycle. The following cross reactivites have been observed17-beta Oestradiol 100% Oestrone 14% Oestriol 5% Aldosterone, Cortisol, Corticosterone, DHEA, Deoxycorticosterone, Pregnenolone, Progesterone, 17OH-P and Testosterone all <0.01%

    产品特性

    Sheep Anti-17-beta-Estradiol

    纯化方法

    Purified

    亚型

    IgG
  • 限制

    仅限研究用
  • 状态

    Liquid

    溶解方式

    Supplied as 250ul of purified antibody. It is reconstituted with 50µl of sterile PBS. Its final concentration is 5.0 mg/ml. Please avoid freeze-thaw cycles.

    储存条件

    -20 °C
  • 抗原

    17-beta Estradiol

    别名

    17-beta-Estradiol

    物质类

    Hormone

    背景

    17 beta Estradiol is a potent mammalian estrogenic hormone that is produced in the ovaries (by the granulosa cells), in the placenta, testis and possibly the adrenal cortex. The hormone is synthesized enzymatically from acetate, cholesterol, progesterone and testosterone. In addition to anatomic and physiological regulation of reproduction and secondary sex characteristics, it also influences activities such as bone growth, brain development and maturation and the intracellular concentrations of calcium and certain second messenger molecules. Research demonstrates salutary effects of 17 beta estradiol following trauma-hemorrhage on different cell types. 17 beta estradiol also induces improved circulation through relaxation of the aorta and has an anti-apoptotic effect on endothelial cells. 17 beta estradiol is also implicated in the attenuation of H2O2-induced apoptosis via ER-dependent activation of caspase-9 and -3 in rat endothelial cells through mitochondria.
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