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本文引用的文献

1
Lin28a overexpression reveals the role of Erk signaling in articular cartilage development.Lin28a 过表达揭示了 Erk 信号在关节软骨发育中的作用。
Development. 2018 Aug 2;145(15):dev162594. doi: 10.1242/dev.162594.
2
Changes in the appendicular skeleton during metamorphosis in the axolotl salamander (Ambystoma mexicanum).墨西哥钝口螈(Ambystoma mexicanum)变态过程中附肢骨骼的变化。
J Anat. 2018 Oct;233(4):468-477. doi: 10.1111/joa.12846. Epub 2018 Jul 10.
3
The Role of Bmp2 in the Maturation and Maintenance of the Murine Knee Joint.Bmp2 在小鼠膝关节成熟和维持中的作用。
J Bone Miner Res. 2018 Sep;33(9):1708-1717. doi: 10.1002/jbmr.3441. Epub 2018 Jun 13.
4
Cell origin, volume and arrangement are drivers of articular cartilage formation, morphogenesis and response to injury in mouse limbs.细胞起源、体积和排列是小鼠四肢关节软骨形成、形态发生及损伤反应的驱动因素。
Dev Biol. 2017 Jun 1;426(1):56-68. doi: 10.1016/j.ydbio.2017.04.006. Epub 2017 Apr 21.
5
Superficial cells are self-renewing chondrocyte progenitors, which form the articular cartilage in juvenile mice.表层细胞是自我更新的软骨细胞祖细胞,它们在幼年小鼠体内形成关节软骨。
FASEB J. 2017 Mar;31(3):1067-1084. doi: 10.1096/fj.201600918R. Epub 2016 Dec 13.
6
Signaling networks in joint development.关节发育中的信号网络。
Dev Dyn. 2017 Apr;246(4):262-274. doi: 10.1002/dvdy.24472. Epub 2016 Dec 29.
7
Articular cartilage and joint development from embryogenesis to adulthood.从胚胎发生到成年期的关节软骨与关节发育。
Semin Cell Dev Biol. 2017 Feb;62:50-56. doi: 10.1016/j.semcdb.2016.10.005. Epub 2016 Oct 20.
8
Ancient origin of lubricated joints in bony vertebrates.硬骨脊椎动物中润滑关节的古老起源。
Elife. 2016 Jul 19;5:e16415. doi: 10.7554/eLife.16415.
9
Joint Development Involves a Continuous Influx of Gdf5-Positive Cells.关节发育涉及Gdf5阳性细胞的持续流入。
Cell Rep. 2016 Jun 21;15(12):2577-87. doi: 10.1016/j.celrep.2016.05.055. Epub 2016 Jun 9.
10
Hyaluronan concentration and size distribution in human knee synovial fluid: variations with age and cartilage degeneration.人膝关节滑液中透明质酸的浓度和大小分布:随年龄和软骨退变的变化
Arthritis Res Ther. 2016 Jan 21;18:18. doi: 10.1186/s13075-016-0922-4.

附肢骨骼中的关节:发育机制和进化影响。

Joints in the appendicular skeleton: Developmental mechanisms and evolutionary influences.

机构信息

Translational Research Program in Pediatric Orthopaedics, Division of Orthopaedic Surgery, The Children's Hospital of Philadelphia, Philadelphia, PA, United States.

Genomics Institute of the Novartis Research Foundation, San Diego, CA, United States.

出版信息

Curr Top Dev Biol. 2019;133:119-151. doi: 10.1016/bs.ctdb.2018.11.002. Epub 2018 Dec 10.

DOI:10.1016/bs.ctdb.2018.11.002
PMID:30902250
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6988388/
Abstract

The joints are a diverse group of skeletal structures, and their genesis, morphogenesis, and acquisition of specialized tissues have intrigued biologists for decades. Here we review past and recent studies on important aspects of joint development, including the roles of the interzone and morphogenesis of articular cartilage. Studies have documented the requirement of interzone cells in limb joint initiation and formation of most, if not all, joint tissues. We highlight these studies and also report more detailed interzone dissection experiments in chick embryos. Articular cartilage has always received special attention owing to its complex architecture and phenotype and its importance in long-term joint function. We pay particular attention to mechanisms by which neonatal articular cartilage grows and thickens over time and eventually acquires its multi-zone structure and becomes mechanically fit in adults. These and other studies are placed in the context of evolutionary biology, specifically regarding the dramatic changes in limb joint organization during transition from aquatic to land life. We describe previous studies, and include new data, on the knee joints of aquatic axolotls that unlike those in higher vertebrates, are not cavitated, are filled with rigid fibrous tissues and resemble amphiarthroses. We show that when axolotls metamorph to life on land, their intra-knee fibrous tissue becomes sparse and seemingly more flexible and the articular cartilage becomes distinct and acquires a tidemark. In sum, there have been considerable advances toward a better understanding of limb joint development, biological responsiveness, and evolutionary influences, though much remains unclear. Future progress in these fields should also lead to creation of new developmental biology-based tools to repair and regenerate joint tissues in acute and chronic conditions.

摘要

关节是骨骼结构中的一个多样化群体,它们的发生、形态发生和获得专门组织的过程令生物学家们着迷了几十年。在这里,我们回顾了过去和最近关于关节发育重要方面的研究,包括间区的作用和关节软骨的形态发生。研究记录了间区细胞在肢体关节起始和形成大多数(如果不是全部)关节组织中的作用。我们强调了这些研究,并报告了在鸡胚中更详细的间区解剖实验。关节软骨因其复杂的结构和表型及其在长期关节功能中的重要性而一直受到特别关注。我们特别关注新生儿关节软骨随时间增长和变厚的机制,以及最终获得多区结构并在成人中变得具有机械适应性的机制。这些和其他研究被置于进化生物学的背景下,特别是关于从水生到陆地生活的过渡过程中肢体关节组织的巨大变化。我们描述了以前的研究,并包括了关于水生蝾螈膝关节的新数据,与高等脊椎动物不同,这些膝关节没有被空化,充满了刚性的纤维组织,类似于微动关节。我们表明,当蝾螈变态为陆地生活时,它们膝关节内的纤维组织变得稀疏,似乎更有弹性,而关节软骨变得明显,并获得了一条界线。总之,尽管仍有许多问题尚不清楚,但我们对肢体关节发育、生物反应性和进化影响的理解已经取得了相当大的进展。这些领域的未来进展也应该导致创建基于发育生物学的新工具,以修复和再生急性和慢性条件下的关节组织。