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Chemeryna – rola w patologii cz?owieka

机译:Chemerin-在人类病理学中的作用

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Adipose tissue is not merely a storage depot of triacylglycerols but also a major endocrine organ. Its cells, including adipocytes, synthesize and secrete a range of biologically active molecules termed adipokines. Adipokines that display the properties of cytokines are often called adipocytokines. In recent years there has been increasing interest in a new adipokine called chemerin. Chemerin is a protein synthesized mostly by the adipose tissue and the liver as inactive pre-pro-chemerin. After the intracellular hydrolytic cutting off of the 20-amino-acid N-terminal polypeptide, it is secreted into the bloodstream as inactive pro-chemerin. Biologically active chemerin is then derived from pro-chemerin after cleavage of the C-terminal fragment by serum proteases involved in inflammation, coagulation and fibrinolysis. Proteolytic cleavage leads to formation of several chemerin-derived peptides, both biologically active (often with opposing functions) and inactive.Within the last decade, there has been a growing number of publications regarding the role of chemerin in human disease. It seems to be implicated in the inflammatory response, metabolic syndrome, cardiovascular disease and alimentary tract disorders. The article presents the most recent information on the role of chemerin in human disease, and specifically alimentary tract disorders. The available evidence suggests that chemerin is an important link between adipose tissue mass, metabolic processes, the immune system and inflammation, and therefore plays a major role in human pathophysiology.
机译:脂肪组织不仅是三酰基甘油的储存库,而且还是主要的内分泌器官。它的细胞(包括脂肪细胞)合成并分泌一系列被称为脂肪因子的生物活性分子。显示细胞因子特性的脂肪因子通常被称为脂肪细胞因子。近年来,人们对新的称为凯莫瑞的脂肪因子的兴趣日益增加。 Chemerin是一种主要由脂肪组织和肝脏合成的蛋白质,是无活性的前chemerin。在细胞内水解切断20个氨基酸的N端多肽后,它以无活性的前趋化因子形式分泌到血液中。然后,由涉及炎症,凝血和纤维蛋白溶解的血清蛋白酶切割C-末端片段后,从前化学疗法中衍生出具有生物活性的凯莫瑞。蛋白水解切割导致形成一些凯莫瑞衍生的肽,它们具有生物学活性(通常具有相反的功能)和无活性。在过去的十年中,关于凯莫瑞在人类疾病中的作用的出版物越来越多。它似乎与炎症反应,代谢综合征,心血管疾病和消化道疾病有关。本文介绍了凯莫瑞在人类疾病(特别是消化道疾病)中的作用的最新信息。现有证据表明,凯莫瑞是脂肪组织量,代谢过程,免疫系统和炎症之间的重要纽带,因此在人体病理生理学中起着重要作用。

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