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首页> 外文期刊>Journal of Structural Biology >Analysis of the orientation of primary cilia in growth plate cartilage: A mathematical method based on multiphoton microscopical images
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Analysis of the orientation of primary cilia in growth plate cartilage: A mathematical method based on multiphoton microscopical images

机译:生长板软骨中初级纤毛的取向分析:一种基于多光子显微图像的数学方法

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The chondrocytic primary cilium has been hypothesized to act as a mechano-sensor, analogously to primary cilium of cells in epithelial tissues. We hypothesize that mechanical inputs during growth, sensed through the primary cilium, result in directed secretion of the extracellular matrix, thereby establishing tissue anisotropy in growth plate cartilage. The cilium, through its orientation in three-dimensional space, is hypothesized to transmit to the chondrocyte the preferential direction for matrix secretion. This paper reports on the application of classical mathematical methods to develop an algorithm that addresses the particular challenges relative to the assessment of the orientation of the primary cilium in growth plate cartilage, based on image analysis of optical sections visualized by multiphoton microscopy. Specimens are prepared by rapid cold precipitation-based fixation to minimize possible artifactual post-mortem alterations of ciliary orientation. The ciliary axoneme is localized by immunocytochemistry with antibody acetylated-alpha-tubulin. The method is applicable to investigation of ciliary orientation in different zones of the growth plate, under either normal or altered biomechanical environments. The methodology is highly flexible and adaptable to other connective tissues where tissue anisotropy and directed secretion of extracellular matrix components are hypothesized to depend on the tissue's biomechanical environment during development and growth.
机译:假设软骨上的初级纤毛充当机械传感器,类似于上皮组织中细胞的初级纤毛。我们假设通过初级纤毛感觉到的生长过程中的机械输入导致细胞外基质的定向分泌,从而在生长板软骨中建立组织各向异性。假设纤毛通过其在三维空间中的定向将基质分泌的优先方向传递给软骨细胞。本文报告了经典数学方法的应用,以开发基于多光子显微镜可视化光学切片的图像分析来解决与评估生长板软骨中初级纤毛的方向有关的特殊挑战的算法。通过基于冷沉淀的快速固定来制备标本,以最大程度地减少可能的人为验尸后纤毛方向的变化。睫状状轴突通过抗体乙酰化的α-微管蛋白通过免疫细胞化学定位。该方法适用于在正常或变化的生物力学环境下研究生长板不同区域的纤毛方向。该方法具有高度的灵活性,可适用于其他结缔组织,在这些结缔组织中,假设组织各向异性和细胞外基质成分的定向分泌取决于发育和生长过程中组织的生物力学环境。

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