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骨细胞管腔网络:机械敏感性改变的形态学意义。

Osteocytic canalicular networks: morphological implications for altered mechanosensitivity.

机构信息

Department of Osteology and Biomechanics, University Medical Center Hamburg-Eppendorf , Lottestraße 59, 22529 Hamburg, Germany.

出版信息

ACS Nano. 2013 Sep 24;7(9):7542-51. doi: 10.1021/nn401360u. Epub 2013 Aug 9.

Abstract

Osteocytes are ramified bone cells distributed throughout the bone matrix within a network of micrometer-scale cavities (lacunae) and numerous nanometer-thick tunnels (canaliculi). The integrity of the canalicular network might influence bone quality and reflect its mechanosensory potential. In this study, we applied an acid etching technique to embedded bone specimens that allows 3D observation of the canalicular network across a 2D plane to quantitatively assess the canalicular connections in cortical bone specimens from young and aged individuals. Our results showed a nearly 30% reduction in the number of canaliculi per osteocyte lacuna in aged individuals (N.Ot.Ca/Ot.Lc: 15.92 ± 1.5 in aged vs 22.10 ± 2.82 in young; p < 0.001); moreover, canalicular number was found to be inversely related to the osteonal tissue age represented by Ca/P ratio (p < 0.001). We frequently observed the phenomenon that canaliculi of osteocytes located near the osteon's periphery did not end at the osteon's cement line boundary but penetrated through the cement line and spread into the surrounding bone matrix, thus establishing an "external rooting" or "connection", which might have significant relevance to bone quality. Our findings showed that not only does the aging process diminish the canalicular network within osteons, but it also significantly reduces the probability of external osteonal rooting and connections with the surrounding bone tissue. Deterioration in the canalicular network with age reduces the connectivity between osteocytes and between osteons/interstitial tissue, which affects the supply of nutrients to osteocytes, degrades their mechanosensitivity, and contributes to increased bone fragility in the elderly.

摘要

骨细胞是分布在骨基质中的分支状细胞,位于微米级腔隙(陷窝)和许多纳米级隧道(小管)构成的网络中。小管网络的完整性可能会影响骨质量并反映其机械感受潜能。在这项研究中,我们应用酸蚀技术处理嵌入的骨标本,使我们能够在二维平面上观察整个三维的小管网络,从而定量评估来自年轻和老年个体的皮质骨标本中小管的连接情况。我们的结果表明,老年个体中每个骨陷窝的小管数量减少了近 30%(N.Ot.Ca/Ot.Lc:15.92±1.5 岁 vs 22.10±2.82 岁;p<0.001);此外,小管数量与钙磷比(Ca/P ratio)所代表的骨单位组织年龄呈负相关(p<0.001)。我们经常观察到这样一种现象,即位于骨单位边缘的骨细胞的小管并未在骨单位的骨胶线边界处终止,而是穿过骨胶线并散布到周围的骨基质中,从而建立了一种“外部扎根”或“连接”,这可能与骨质量有重要关系。我们的研究结果表明,衰老过程不仅会减少骨单位内的小管网络,还会显著降低外部骨单位扎根和与周围骨组织连接的概率。随着年龄的增长,小管网络的恶化会降低骨细胞之间以及骨单位/间质组织之间的连通性,这会影响骨细胞的营养供应,降低其机械敏感性,并导致老年人的骨脆性增加。

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