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Hyperglycosylated human chorionic gonadotropin and human chorionic gonadotropin free beta-subunit: tumor markers and tumor promoters.

机译:高糖基化的人绒毛膜促性腺激素和人绒毛膜促性腺激素释放的β亚基:肿瘤标志物和肿瘤启动子。

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摘要

Human chorionic gonadotropin (hCG) is a heterogeneous glycoprotein hormone comprising an alpha-subunit and beta-subunit that can vary in peptide and carbohydrate structure. After conception, hCG produced by early trophoblast cells acts on luteinizing hormone (LH)/hCG receptor corpus luteum cells to promote progesterone production and establish maternal recognition of pregnancy. hCG is not simply 1 molecule, and 2 variants of hCG appear to have independent activities in promoting tumor cell growth, invasion and malignancy. Hyperglycosylated hCG (H-hCG), produced by cytotrophoblast cells, is a marker for cytotrophoblast cells and tumor marker for gestational trophoblastic diseases. H-hCG promotes growth and invasion in these cells during pregnancy implantation, and growth in varying degrees by many nontrophoblastic neoplasms. beta-hCG is a marker of poor prognosis shown to promote growth and invasion in vitro, suggesting autocrine growth factor properties. Vaccines to beta-hCG have been successfully demonstrated, suggesting a potential adjuvant therapy in cancer treatment. Although sufficiently distinct in both structure and occurrence, similarities have been observed between H-hCG and beta-hCG as promoters of cell growth, invasion and malignancy. It is somewhat irregular for 2 structural variants of a molecule to have independent actions, actions very different to the gonadotropic function of the established hormone hCG.
机译:人绒毛膜促性腺激素(hCG)是一种异质糖蛋白激素,包含可在肽和碳水化合物结构中变化的α亚基和β亚基。受孕后,早期滋养层细胞产生的hCG作用于黄体生成激素(LH)/ hCG受体黄体细胞,从而促进孕激素的产生并建立母体对妊娠的识别。 hCG不仅仅是1个分子,hCG的2个变体似乎在促进肿瘤细胞生长,侵袭和恶性肿瘤方面具有独立的活性。由细胞滋养层细胞产生的高糖基化的hCG(H-hCG)是细胞滋养层细胞的标志物和妊娠滋养层疾病的肿瘤标志物。 H-hCG可以在妊娠植入过程中促进这些细胞的生长和侵袭,并通过许多非滋养细胞肿瘤在不同程度上生长。 β-hCG是不良预后的标志物,显示可促进体外生长和侵袭,提示自分泌生长因子特性。已经成功证明了针对β-hCG的疫苗,表明在癌症治疗中有潜在的辅助疗法。尽管在结构和发生方面都足够不同,但已观察到H-hCG和β-hCG作为细胞生长,侵袭和恶性肿瘤的促进剂之间的相似性。一个分子的两个结构变体具有独立的作用在某种程度上是不规则的,该作用与已建立的激素hCG的促性腺激素功能非常不同。

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