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有限元建模预测了由于颌骨发育中肌肉应变丧失而导致的关节形状和细胞行为的变化。

Finite element modelling predicts changes in joint shape and cell behaviour due to loss of muscle strain in jaw development.

作者信息

Brunt Lucy H, Norton Joanna L, Bright Jen A, Rayfield Emily J, Hammond Chrissy L

机构信息

Schools of Physiology and Pharmacology and of Biochemistry, University of Bristol, BS8 1TD Bristol, United Kingdom.

School of Earth Sciences, University of Bristol, BS8 1RJ Bristol, United Kingdom.

出版信息

J Biomech. 2015 Sep 18;48(12):3112-22. doi: 10.1016/j.jbiomech.2015.07.017. Epub 2015 Jul 28.

Abstract

Abnormal joint morphogenesis is linked to clinical conditions such as Developmental Dysplasia of the Hip (DDH) and to osteoarthritis (OA). Muscle activity is known to be important during the developmental process of joint morphogenesis. However, less is known about how this mechanical stimulus affects the behaviour of joint cells to generate altered morphology. Using zebrafish, in which we can image all joint musculoskeletal tissues at high resolution, we show that removal of muscle activity through anaesthetisation or genetic manipulation causes a change to the shape of the joint between the Meckel's cartilage and Palatoquadrate (the jaw joint), such that the joint develops asymmetrically leading to an overlap of the cartilage elements on the medial side which inhibits normal joint function. We identify the time during which muscle activity is critical to produce a normal joint. Using Finite Element Analysis (FEA), to model the strains exerted by muscle on the skeletal elements, we identify that minimum principal strains are located at the medial region of the joint and interzone during mouth opening. Then, by studying the cells immediately proximal to the joint, we demonstrate that biomechanical strain regulates cell orientation within the developing joint, such that when muscle-induced strain is removed, cells on the medial side of the joint notably change their orientation. Together, these data show that biomechanical forces are required to establish symmetry in the joint during development.

摘要

关节形态发生异常与诸如发育性髋关节发育不良(DDH)等临床病症以及骨关节炎(OA)相关联。已知肌肉活动在关节形态发生的发育过程中很重要。然而,关于这种机械刺激如何影响关节细胞行为以产生形态改变,人们了解得较少。利用斑马鱼,我们能够以高分辨率对所有关节肌肉骨骼组织进行成像,结果表明,通过麻醉或基因操作去除肌肉活动会导致梅克尔软骨与腭方软骨之间的关节(颌关节)形状发生变化,使得关节不对称发育,导致内侧软骨元件重叠,从而抑制正常关节功能。我们确定了肌肉活动对于形成正常关节至关重要的时间段。使用有限元分析(FEA)来模拟肌肉对骨骼元件施加的应变,我们发现最小主应变位于张口时关节和关节间区域的内侧。然后,通过研究紧邻关节的细胞,我们证明生物力学应变调节发育中关节内的细胞取向,使得当去除肌肉诱导的应变时关节内侧的细胞明显改变其取向。这些数据共同表明,发育过程中建立关节对称性需要生物力学力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7628/4601018/f8c4064166a8/gr1.jpg

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