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Human PRL (诊断原料,生殖)
Recombinant Human PRL (C-6His)
Catalog #: DCM10 Derived From: Human Cells
Description:
Recombinant Human Prolactin is produced by our Mammalian expression system and the target gene encoding Leu29-Cys227 is expressed with a 6His tag at the C-terminus.
Accession: P01236
Names(Known as): Prolactin; PRL
Quality Control:
Mol Mass: 23.9kDa AP Mol Mass: 25-30 kDa, reducing conditions
Purity: Greater than 95% as determined by reducing SDS-PAGE.
Formulation:
Supplied as a 0.2 μm filtered solution of 20mM PB, 150mM NaCl, pH 7.4.
Shipping:
The product is shipped on dry ice pack. Upon receipt, store it immediately at the temperature listed below.
Storage:
Reconstituted protein solution should be stored at ≤ -20°C.
Purification:
Affinity purification chromatography.
Immunoreactivity:
N.A.
Application:
Immunogen, calibrator or standard.
Background:
Prolactin (PRL) is a secreted neuroendocrine pituitary hormone that acts primarily on the mammary glandto promote lactation, but has pleiotropic effects in both males and females. Non-glycosylated prolactin isproduced by the pituitary and packaged in storage granules before secretion, while glycosylated prolactin isreported to be constitutively secreted, have lower biological potency, and be removed from the circulationmore quickly. Prolactin is synthesized mainly by the anterior pituitary in all mammals, where secretion isunder tonic inhibition by hypothalamic dopamine. In humans, prolactin is also produced peripherally.Prolactin expression is low during early human pregnancy, but increases in late pregnancy. The prolactinreceptor (PRLR) is a transmembrane type I glycoprotein that belongs to the cytokine hematopoieticreceptor family. prolactin molecule is thought to bind two receptor molecules. In addition to its lactogenicactivity, peripherally produced prolactin plays roles in breast and prostate cancer development, regulationof reproductive function, and immunoregulation.
FOR RESEARCH OR FURTHER MANUFACTURING USE ONLY
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文献和实验180 余单位通力合作,登顶 Nature!生殖衰老领域最大
大学临床医学院等 180 多个机构的学者通力合作并在国际顶尖期刊 Nature 在线发表了题为 Genetic insights into biological mechanisms governing human ovarian ageing 的文章。该研究通过超大规模的人群研究确定了 290 个影响女性生殖寿命的遗传位点。此外,借助动物模型,他们操纵了与这些遗传位点相关的关键基因,并成功地延长了它们的生殖寿命。总的来说,这项研究极大地增加了我们对生殖衰老过程的认识,并为更好地预测哪些女性可能
一种哄骗女性的正常休眠的生殖细胞进入活跃状态的方法可能让科学家帮助衰老的女性或者在接受癌症治疗之前冷冻了卵巢的女性生育子女。 Aaron Hsueh及其同事对小鼠使用了一种遗传疗法从而诱导未受精卵周围的细胞群(卵泡)脱离休眠状态,其方法是用改变PTEN 和PI3K蛋白质活性的分子处理新生小鼠卵巢,此前的研究已经证明了这能够影响动物卵泡的生长。这组科学家然后把经过处理的这些细胞群移植到小鼠体内,在那里这些移植细胞发育成了成熟的产生卵子的卵泡。 成熟卵子在试管中受精,然后移植到了代孕雌性
from the human urogenital tract.Int J.Syst .Bacteriol,1983,33(2):387 Jensen JS,Hansen HT,Lind K,Isolation of Mycoplasm genitalium strains from the male urethra.J Clin Microbiol,1996,34(2):286 赵季文,王婉云,范宝剑,等。生殖支原体分离培养及流行病学意义的研究,南京铁道医学院学报,1997,16(4):229
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