The chondrocytic journey in endochondral bone growth and skeletal dysplasia

Q Medicine
Kwok Yeung Tsang, Shun Wa Tsang, Danny Chan, Kathryn S.E. Cheah
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引用次数: 66

Abstract

The endochondral bones of the skeleton develop from a cartilage template and grow via a process involving a cascade of chondrocyte differentiation steps culminating in formation of a growth plate and the replacement of cartilage by bone. This process of endochondral ossification, driven by the generation of chondrocytes and their subsequent proliferation, differentiation, and production of extracellular matrix constitute a journey, deviation from which inevitably disrupts bone growth and development, and is the basis of human skeletal dysplasias with a wide range of phenotypic severity, from perinatal lethality to progressively deforming. This highly coordinated journey of chondrocyte specification and fate determination is controlled by a myriad of intrinsic and extrinsic factors. SOX9 is the master transcription factor that, in concert with varying partners along the way, directs the different phases of the journey from mesenchymal condensation, chondrogenesis, differentiation, proliferation, and maturation. Extracellular signals, including bone morphogenetic proteins, wingless-related MMTV integration site (WNT), fibroblast growth factor, Indian hedgehog, and parathyroid hormone-related peptide, are all indispensable for growth plate chondrocytes to align and organize into the appropriate columnar architecture and controls their maturation and transition to hypertrophy. Chondrocyte hypertrophy, marked by dramatic volume increase in phases, is controlled by transcription factors SOX9, Runt-related transcription factor, and FOXA2. Hypertrophic chondrocytes mediate the cartilage to bone transition and concomitantly face a live-or-die situation, a subject of much debate. We review recent insights into the coordination of the phases of the chondrocyte journey, and highlight the need for a systems level understanding of the regulatory networks that will facilitate the development of therapeutic approaches for skeletal dysplasia. Birth Defects Research (Part C) 102:52–73, 2014. © 2014 Wiley Periodicals, Inc.

软骨内骨生长和骨骼发育不良的软骨细胞之旅
骨骼的软骨内骨从软骨模板发育而来,并通过一系列软骨细胞分化步骤生长,最终形成生长板并由骨代替软骨。软骨细胞的生成及其随后的增殖、分化和细胞外基质的产生驱动了软骨内成骨的过程,这一过程构成了一个旅程,偏离这一过程不可避免地会破坏骨骼的生长和发育,这是人类骨骼发育不良的基础,具有广泛的表型严重性,从围产期致死到渐进式变形。这个高度协调的旅程,软骨细胞规格和命运的决定是由无数的内在和外在因素控制。SOX9是主要的转录因子,与不同的伙伴一起,指导从间充质凝聚、软骨形成、分化、增殖和成熟的不同阶段。细胞外信号,包括骨形态发生蛋白、无翼相关MMTV整合位点(WNT)、成纤维细胞生长因子、印度刺猬、甲状旁腺激素相关肽,都是生长板软骨细胞排列和组织成适当柱状结构并控制其成熟和向肥大过渡所必需的。软骨细胞肥大是由转录因子SOX9、runt相关转录因子和FOXA2控制的,其特征是阶段性体积急剧增加。肥大软骨细胞介导软骨向骨的转变,同时面临着生死存亡的问题,这是一个备受争议的话题。我们回顾了最近对软骨细胞旅程阶段协调的见解,并强调了对调节网络的系统级理解的必要性,这将促进骨骼发育不良治疗方法的发展。出生缺陷研究(C辑)(2):52 - 73,2014。©2014 Wiley期刊公司
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来源期刊
CiteScore
3.65
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: John Wiley & Sons and the Teratology Society are please to announce a new journal, Birth Defects Research . This new journal is a comprehensive resource of original research and reviews in fields related to embryo-fetal development and reproduction. Birth Defects Research draws from the expertise and reputation of two current Wiley journals, and introduces a new forum for reviews in developmental biology and embryology. Part C: Embryo Today: Reviews
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