Department of Zoology, School of Natural Sciences, Trinity College Dublin, Dublin, Ireland.
PLoS One. 2011 Feb 28;6(2):e17526. doi: 10.1371/journal.pone.0017526.
Very little is known about the regulation of morphogenesis in synovial joints. Mechanical forces generated from muscle contractions are required for normal development of several aspects of normal skeletogenesis. Here we show that biophysical stimuli generated by muscle contractions impact multiple events during chick knee joint morphogenesis influencing differential growth of the skeletal rudiment epiphyses and patterning of the emerging tissues in the joint interzone. Immobilisation of chick embryos was achieved through treatment with the neuromuscular blocking agent Decamethonium Bromide. The effects on development of the knee joint were examined using a combination of computational modelling to predict alterations in biophysical stimuli, detailed morphometric analysis of 3D digital representations, cell proliferation assays and in situ hybridisation to examine the expression of a selected panel of genes known to regulate joint development. This work revealed the precise changes to shape, particularly in the distal femur, that occur in an altered mechanical environment, corresponding to predicted changes in the spatial and dynamic patterns of mechanical stimuli and region specific changes in cell proliferation rates. In addition, we show altered patterning of the emerging tissues of the joint interzone with the loss of clearly defined and organised cell territories revealed by loss of characteristic interzone gene expression and abnormal expression of cartilage markers. This work shows that local dynamic patterns of biophysical stimuli generated from muscle contractions in the embryo act as a source of positional information guiding patterning and morphogenesis of the developing knee joint.
关于滑膜关节形态发生的调控,人们知之甚少。肌肉收缩产生的机械力是正常骨骼发生的几个方面正常发育所必需的。在这里,我们表明,肌肉收缩产生的生物物理刺激会影响小鸡膝关节形态发生过程中的多个事件,影响骨骼原基骺的差异生长和关节间区新兴组织的模式形成。通过用神经肌肉阻断剂溴化十甲铵处理鸡胚胎来实现胚胎的固定。通过结合计算模型来预测生物物理刺激的改变,对 3D 数字表示的详细形态计量分析,细胞增殖测定和原位杂交来检查一组已知调节关节发育的选定基因的表达,来检查对膝关节发育的影响。这项工作揭示了在改变的机械环境中发生的形状的精确变化,特别是在远端股骨中,与预测的机械刺激的空间和动态模式的变化以及细胞增殖率的区域特异性变化相对应。此外,我们显示了关节间区新兴组织的图案形成发生改变,特征性的间区基因表达丧失和软骨标记物的异常表达表明细胞领地的丧失和组织紊乱。这项工作表明,胚胎中肌肉收缩产生的局部动态生物物理刺激模式充当指导发育中的膝关节形态发生和模式形成的位置信息源。