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首页> 外文期刊>The Journal of Nutritional Biochemistry >Regulation of vitamin D metabolism following disruption of the microbiota using broad spectrum antibiotics
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Regulation of vitamin D metabolism following disruption of the microbiota using broad spectrum antibiotics

机译:使用广谱抗生素破坏Microbiota破坏Microbiota后的维生素D代谢调节

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摘要

Vitamin D, 25hydroxyvitamin D (25D), and 24,25dihydroxyvitamin D (24,25D) were measured before and after broad spectrum antibiotic (Abx) treatment for 2 wks. Abx treatments increased 25D and 24,25D levels suggesting that the microbiota or Abx were altering vitamin D metabolism. Increased 25D, but not 24,25D, following Abx treatments were found to be dependent on toll like receptor signaling. Conversely, the effects of Abx on 24,25D levels required that the vitamin D receptor (VDR) be expressed in tissues outside of the hematopoietic system (kidney) and not the immune system. Fibroblast growth factor (FGF)23 increased following Abx treatment and the effect of Abx treatment on FGF23 (like the effect on 24250) was not present in VDR knockout (KO) mice. The Abx mediated increase in 24,25D was due to changes to the endocrine regulation of vitamin D metabolism. Conversely, 25D levels went up with Abx treatment of the VDR KO mice. Host sensing of microbial signals regulates the levels of 25D in the host. (C) 2018 Elsevier Inc. All rights reserved.
机译:在抗生素(ABX)处理之前和之后,测量维生素D,25羟基乙二醇D(25d)和24,25d羟基维生素D(24,25d)进行2个WKS。 ABX治疗增加了25d和24,25d水平,表明微生物群或ABX正在改变维生素D代谢。在发现ABX治疗后,25D增加了25d,但不是24,25d依赖于受体信号传导等损伤。相反,ABX对24,25D水平的影响要求维生素D受体(VDR)在造血系统(肾脏)之外的组织中表达,而不是免疫系统。在ABX处理后,成纤维细胞生长因子(FGF)23增加,并且ABX处理对FGF23的影响(如在24250的效果)中不存在于VDR敲除(KO)小鼠中。 ABX介导的24,25d增加是由于对维生素D代谢的内分泌调节的变化。相反,25D级别随着VDR KO小鼠的ABX治疗而上升。 Microbial信号的主机感测量调节主机中25d的水平。 (c)2018年Elsevier Inc.保留所有权利。

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