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首页> 外文期刊>Journal of Theoretical Biology >Effect of localization, length and orientation of chondrocytic primary cilium on murine growth plate organization.
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Effect of localization, length and orientation of chondrocytic primary cilium on murine growth plate organization.

机译:软骨细胞初级纤毛的定位,长度和方向对鼠生长板组织的影响。

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摘要

The research investigates the role of the immotile chondrocytic primary cilium in the growth plate. This study was motivated by (i) the recent evidence of the mechano-sensorial function of the primary cilium in kidney tubule epithelial cells and (ii) the distinct three-dimensional orientation patterns that the chondrocytic primary cilium forms in articular cartilage in the presence or the absence of loading. For our investigation, we used the Smad1/5(CKO) mutant mouse, whose disorganized growth plate is due to the conditional deletion of Smad 1 and 5 proteins that also affect the so-called Indian Hedgehog pathway, whose physical and functional topography has been shown to be partially controlled by the primary cilium. Fluorescence and confocal microscopy on stained sections visualized ciliated chondrocytes. Morphometric data regarding position, orientation and eccentricity of chondrocytes, and ciliary localization on cell membrane, length and orientation, were collected and reconstructed from images. We established that both localization and orientation of the cilium are definite, and differently so, in the Smad1/5(CKO) and control mice. The orientation of the primary cilium, relative to the major axis of the chondrocyte, clusters at 80 degrees with respect to the anterior-posterior direction for the Smad1/5(CKO) mice, showing loss of the additional clustering present in the control mice at 10 degrees . We therefore hypothesized that the clustering at 10 degrees contains information of columnar organization. To test our hypothesis, we prepared a mathematical model of relative positioning of the proliferative chondrocytic population based on ciliary orientation. Our model belongs to the category of interactive particle system models for self-organization with birth qualitatively reproduced the experimentally observed chondrocytic arrangements in growth plate of each of the Smad1/5(CKO) and control mice. Our mathematically predicted cell division process will need to be observed experimentally to advance the identification of ciliary function in the growth plate.
机译:该研究调查了不动的软骨细胞初级纤毛在生长板上的作用。这项研究的动机是(i)肾小管上皮细胞中初级纤毛的机械感觉功能的最新证据,以及(ii)存在或存在时软骨软骨初级纤毛在关节软骨中形成的独特的三维定向模式。没有加载。在我们的研究中,我们使用了Smad1 / 5(CKO)突变小鼠,其混乱的生长板是由于Smad 1和5蛋白的条件缺失所致,这些蛋白也影响了所谓的印度刺猬通路,其物理和功能形态显示受初级纤毛部分控制。染色切片上的荧光和共聚焦显微镜可以观察到纤毛软骨细胞。收集有关软骨细胞的位置,方向和偏心率以及细胞膜上睫状体定位,长度和方向的形态学数据,并从图像中进行重建。我们确定在Smad1 / 5(CKO)和对照小鼠中,纤毛的定位和方向都是确定的,并且与此不同。对于Smad1 / 5(CKO)小鼠,初次纤毛相对于软骨细胞长轴的方向相对于前后方向成80度成簇,这表明对照小鼠中存在额外的成簇。 10度。因此,我们假设10度的聚类包含柱状组织的信息。为了检验我们的假设,我们基于纤毛方向准备了增殖软骨细胞群体相对定位的数学模型。我们的模型属于交互式的自组织交互式粒子系统模型,其性质从本质上复制了Smad1 / 5(CKO)和对照小鼠的生长板中实验观察到的软骨细胞排列。我们将需要通过实验观察我们数学上预测的细胞分裂过程,以促进对生长板中纤毛功能的鉴定。

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