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骨矿化和异位钙化的生物学:同一演员出演不同剧目。

Biology of bone mineralization and ectopic calcifications: the same actors for different plays.

机构信息

INSERM UI059, Université Jean Monnet, CHU, F-42055 SAINT-ETIENNE, France.

University of Lyon I; ICBMS, UMR CNRS 5246, F-69622, LYON, France.

出版信息

Arch Pediatr. 2024 Sep;31(4S1):4S3-4S12. doi: 10.1016/S0929-693X(24)00151-9.

DOI:10.1016/S0929-693X(24)00151-9
PMID:39343471
Abstract

Bone has several crucial functions. It is essential for locomotion and allows our body to stand erect against gravity. A mismatch between the mechanical stresses applied to it and its mechanical resistance leads to fractures. Bone also has numerous endocrine functions. It acts as a reservoir for minerals such as calcium and phosphorus, making it the target of calciotropic hormones that mobilize these minerals, particularly calcium, according to the body's needs. Additionally, bone secretes hormones, notably fibroblast growth factor 23 (FGF23), which regulates urinary excretion of phosphate and the bioavailability of active vitamin D. Bone mineralization is the process that facilitates the organized deposition of minerals in the bone matrix, providing rigidity and appropriate mechanical resistance. This process is compromised in genetically related bone mineralization disorders, such as those causing hypophosphatemia or hypophosphatasia. Conversely, calcification can be pathological, affecting soft tissues like the blood vessels, as seen in generalized arterial calcification of infancy (GACI) or arterial calcification due to CD73 deficiency (ACDC). The aim of this article is to first present the composition and structure of the mineralized bone matrix, to review the current understanding of the molecular mechanisms of mineralization, and finally to discuss the conditions associated with ectopic calcification and the underlying mechanisms.

摘要

骨骼具有几个关键功能。它对于运动至关重要,使我们的身体能够直立对抗重力。施加在骨骼上的机械应力与其机械阻力之间的不匹配会导致骨折。骨骼还具有许多内分泌功能。它是钙和磷等矿物质的储存库,是钙调激素的作用靶点,这些激素根据身体的需要动员这些矿物质,特别是钙。此外,骨骼分泌激素,特别是成纤维细胞生长因子 23(FGF23),它调节磷酸盐的尿排泄和活性维生素 D 的生物利用度。骨矿化是促进矿物质在骨基质中有序沉积的过程,提供刚性和适当的机械阻力。在遗传相关的骨矿化障碍中,这一过程会受到损害,如导致低磷血症或低磷酸酶症的障碍。相反,钙化可能是病理性的,影响血管等软组织,如婴儿全身性动脉钙化(GACI)或由于 CD73 缺乏导致的动脉钙化(ACDC)。本文的目的首先是介绍矿化骨基质的组成和结构,回顾目前对矿化分子机制的理解,最后讨论与异位钙化相关的条件及其潜在机制。

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