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Vitamin D in health and disease: a literature review

机译:维生素D在健康和疾病中的作用:文献综述

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Vitamin D, a fat-soluble prohormone, is synthesised in response to sunlight. Vitamin D requires two metabolic conversions, 25-hydroxylation in the liver and 1alpha-hydroxylation in the kidney, to become active hormone. The active form, 1alpha,25-(OH)_2D, binds to the vitamin D receptor (VDR) to modulate gene transcription and regulate mineral ion homeostasis. Vitamin D plays several roles in the body, influencing bone health as well as serum calcium and phosphate levels. Furthermore, vitamin D may modify immune function, cell proliferation, differentiation and apoptosis. Vitamin D deficiency has been associated with numerous health outcomes, including risk of rickets in children or osteomalacia in adults, increased risk of fractures, falls, cancer, autoimmune disease, infectious disease, type 1 and type 2 diabetes, hypertension and heart disease, and other diseases such as multiple sclerosis. Here, vitamin D physiology and metabolism, its genomic action and association of polymorphisms in vitamin D pathway genes with different diseases are reviewed by focusing on new findings published in the literature.
机译:维生素D是一种脂溶性激素,是对阳光的反应而合成的。维生素D需要两种代谢转化,肝脏中的25-羟基化和肾脏中的1α-羟基化才能成为活性激素。活性形式1alpha,25-(OH)_2D与维生素D受体(VDR)结合以调节基因转录并调节矿物质离子稳态。维生素D在人体中起多种作用,影响骨骼健康以及血清钙和磷酸盐水平。此外,维生素D可能会改变免疫功能,细胞增殖,分化和凋亡。维生素D缺乏症与许多健康状况有关,包括儿童children病或成人骨软化症的风险,骨折,跌倒,癌症,自身免疫性疾病,传染病,1型和2型糖尿病,高血压和心脏病的风险增加,以及其他疾病,例如多发性硬化症。在这里,通过关注文献中发表的新发现,对维生素D的生理和代谢,其基因组作用以及维生素D途径基因与不同疾病的多态性的关联进行了综述。

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