Calcitriol-modulated human antibiotics: New pathophysiological aspects of vitamin D

Carlos Antonio Amado Diago , María Teresa García-Unzueta , María del Carmen Fariñas , Jose Antonio Amado
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Abstract

Traditionally, calcitriol has been considered a calcium and phosphate regulating hormone, but has recently been shown to play a pivotal role in innate immunity. Many barrier and immune cells have membrane and intracellular receptors that recognize different microbial antigens. Activation of these receptors induces synthesis of 1α-hydroxylase, which acts on 25 hydroxyvitamin D to generate intracellular calcitriol. Calcitriol activates its receptor and enhances the synthesis of important human antibiotics like cathelicidin and β2-defensin while inhibiting hepcidin. These pluripotent peptides have an important role in innate immunity, and their regulation is abnormal in hypovitaminosis D. The literature on their secretion mechanisms, levels in different organic fluids, mechanism of action, and relationship with vitamin D is reviewed here.

钙三醇调节的人类抗生素:维生素D的新病理生理学方面
传统上,骨化三醇被认为是一种钙和磷酸盐调节激素,但最近被证明在先天免疫中发挥着关键作用。许多屏障和免疫细胞具有识别不同微生物抗原的膜和细胞内受体。这些受体的激活诱导1α-羟化酶的合成,该酶作用于25-羟基维生素D以产生细胞内钙三醇。钙三醇激活其受体,增强重要的人类抗生素如组织蛋白酶和β2-防御素的合成,同时抑制铁调素。这些多能干肽在先天免疫中发挥着重要作用,在维生素D缺乏症中它们的调节是异常的。本文综述了关于它们的分泌机制、在不同有机液中的水平、作用机制以及与维生素D的关系的文献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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