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Heritable and acquired disorders of phosphate metabolism: Etiologies involving FGF23 and current therapeutics

机译:遗传性和获得的磷酸盐代谢障碍:涉及FGF23和当前治疗剂的病因

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摘要

Phosphate is critical for many cellular processes and structural functions, including as a key molecule for nucleic acid synthesis and energy metabolism, as well as hydroxyapatite formation in bone. Therefore it is critical to maintain tight regulation of systemic phosphate levels. Based upon its broad biological importance, disruption of normal phosphate homeostasis has detrimental effects on skeletal integrity and overall health. Investigating heritable diseases of altered phosphate metabolism has led to key discoveries underlying the regulation and systemic actions of the phosphaturic hormone Fibroblast growth factor-23 (FGF23). Both molecular and clinical studies have revealed novel targets for the development and optimization of therapies for disorders of phosphate handling. This review will focus upon the bridge between genetic discoveries involving disorders of altered FGF23 bioactivity, as well as describe how these findings have translated into pharmacologic application. (C) 2017 Elsevier Inc. All rights reserved.
机译:磷酸盐对于许多细胞方法和结构功能至关重要,包括作为核酸合成和能量代谢的关键分子,以及骨中的羟基磷灰石形成。因此,保持全身磷酸盐水平的紧张调节至关重要。基于其广泛的生物重要性,对正常磷酸盐稳态的破坏对骨骼完整性和整体健康有不利影响。调查磷酸盐代谢改变的遗传性疾病导致了磷酸性激素成纤维细胞生长因子-33(FGF23)的调节和全身作用的主要发现。分子和临床研究揭示了对磷酸盐处理障碍的开发和优化的新靶点。该审查将重点关注涉及改变FGF23生物活性的遗传发现之间的桥梁,以及描述这些发现如何转化为药理学应用。 (c)2017年Elsevier Inc.保留所有权利。

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