The hidden cross talk between bone and tissues through bone turnover

M. González-Casaus
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Abstract

Abstract Bone is more than a reservoir of calcium and phosphorus. Its lacuno-canalicular arrangement provides an important pathway for exchange with circulation and currently, the skeleton is considered a large endocrine organ with actions that go beyond the control of calcium-phosphorus balance mediated by fibroblastic growth factor 23 (FGF23). Parallel to the modulating effect of adipokines on bone turnover, certain bone proteins, such as osteocalcin and sclerostin, play a counter-regulatory role on energy metabolism, probably in an attempt to ensure its high energy requirement for bone turnover. In this crosstalk between bone and other tissues, especially with adipose tissue, canonical Wnt/β-catenin signaling is involved and therefore, sclerostin, an osteocyte derived protein that inhibits this signalling, emerges as a potential biomarker. Furthermore, its involvement in diverse pathologic conditions supports sclerostin as a therapeutic target, with an anti-sclerostin antibody recently approved in our country for the treatment of osteoporosis. This review addresses the endocrine nature of bone, the role of osteocalcin, and specially, the regulatory and modulatory role of sclerostin on bone turnover and energy homeostasis through its inhibitory effect on canonical Wnt/β-catenin signaling, as well as its potential utility as a biomarker.
骨与组织之间通过骨转换进行的隐性交流
骨骼不仅仅是钙和磷的储存库。其腔隙-小管排列提供了与循环交换的重要途径,目前,骨骼被认为是一个大的内分泌器官,其作用超出了由纤维母细胞生长因子23 (FGF23)介导的钙磷平衡的控制。与脂肪因子对骨转换的调节作用平行,某些骨蛋白,如骨钙素和硬化蛋白,对能量代谢起反调节作用,可能是为了确保其对骨转换的高能量需求。在骨和其他组织,特别是脂肪组织之间的这种串音中,典型的Wnt/β-连环蛋白信号参与其中,因此,硬化蛋白,一种骨细胞来源的抑制这种信号的蛋白,作为一种潜在的生物标志物出现。此外,它在多种病理条件下的参与支持硬化蛋白作为治疗靶点,最近在我国批准了一种抗硬化蛋白抗体用于治疗骨质疏松症。本文综述了骨的内分泌特性,骨钙素的作用,特别是硬化蛋白通过抑制典型Wnt/β-catenin信号传导对骨转换和能量稳态的调节作用,以及其作为生物标志物的潜在用途。
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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