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Vitamin D: direct effects of vitamin D metabolites on bone: lessons from genetically modified mice

机译:维生素D:维生素D代谢物对骨骼的直接作用:转基因小鼠的教训

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摘要

The vitamin D endocrine system has clear beneficial effects on bone as demonstrated by prevention of rickets in children and by reducing the risk of osteomalacia or osteoporosis in adults or elderly subjects. Depending on the design of the study of genetically modified animals, however, 1,25(OH)2D and the vitamin D receptor (VDR) may have no effect, beneficial or even deleterious direct effects on bone. We present here a comprehensive model of the direct effects of vitamin D on bone. In case of sufficient calcium supply, vitamin D and its metabolites can improve the calcium balance and facilitate mineral deposition in bone matrix largely without direct effects on bone cells, although some beneficial effects may occur via mature osteoblasts, as demonstrated in mice with osteoblast-specific overexpression of VDR or 1α-hydroxylase. In case of calcium deficiency, however, 1,25(OH)2D enhances bone resorption, whereas simultaneously inhibiting bone mineralization, so as to defend serum calcium homeostasis at the expense of bone mass. This dual role probably provides a survival benefit for land vertebrates living in a calcium-poor environment.
机译:维生素D内分泌系统对骨骼具有明显的有益作用,这可以通过预防儿童病和降低成人或老年患者骨软化症或骨质疏松症的风险来证明。但是,取决于对转基因动物的研究设计,1,2,5(OH)2D和维生素D受体(VDR)可能对骨骼没有任何作用,有益甚至有害的直接作用。我们在这里介绍维生素D对骨骼的直接作用的综合模型。在充足的钙供应的情况下,维生素D及其代谢物可以改善钙平衡并促进矿物质沉积在骨基质中,而对骨细胞没有直接影响,尽管通过成骨细胞特异性小鼠可能会​​产生一些有益的作用,如成骨细胞特异性小鼠所证明的那样。 VDR或1α-羟化酶的过表达。然而,在缺钙的情况下,1,25(OH)2D增强骨吸收,同时抑制骨矿化,从而以降低骨量为代价捍卫血清钙稳态。这种双重作用可能为生活在缺钙环境中的陆地脊椎动物提供生存优势。

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