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骨质疏松症——细胞外基质硬度降低会损害骨细胞中连接蛋白 43 介导的缝隙连接细胞间通讯。

Osteoporosis-decreased extracellular matrix stiffness impairs connexin 43-mediated gap junction intercellular communication in osteocytes.

机构信息

State Key Laboratory of Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu 610064, China.

National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu 610064, China.

出版信息

Acta Biochim Biophys Sin (Shanghai). 2020 May 26;52(5):517-526. doi: 10.1093/abbs/gmaa025.

Abstract

Osteocytes are the main sensitive and responsive cells for mechanical stimuli in bone. The connexin family enables them to communicate with each other via forming functional gap junctions. However, how osteoporosis-impaired extracellular mechanical property modulates gap junction intercellular communication in osteocytes remains elusive. In this study, we established an ovariectomy (OVX)-induced osteoporosis mouse model in vivo and a polydimethylsiloxane (PDMS)-based cell culture substrate model in vitro to explore the influence of extracellular matrix (ECM) stiffness on cell-to-cell communication in osteocytes. Firstly, we established an OVX-induced osteoporosis mouse model by characterizing the changes in radiography, morphology and histochemistry of femurs. Our results showed that osteoporosis decreased the bone matrix stiffness together with the changes including the loss of osteocytes and the decrease of protein markers. Meanwhile, the dendritic process interconnection and channel-forming protein, Cx43, were reduced in osteoporosis mice. Next we mimicked ECM stiffness changes in vitro by using PDMS substrates at ratios 1:5 for normal stiffness and 1:45 for osteoporosis stiffness. Our results showed that the decreased ECM stiffness reduced the number of dendritic processes in a single cell and gap junctions between adjacent osteocytes. We further detected the decreased expression of Cx43, in the substrate with decreased stiffness. Finally, we found that gap junction-based intercellular communication was reduced in living osteocytes in the substrate with decreased stiffness. This study demonstrates the correlation between ECM mechanical property and cell-to-cell communication in osteocytes and might pave the way for further exploration of osteoporosis in terms of biomechanics.

摘要

成骨细胞是骨骼中对机械刺激最敏感和最有反应的细胞。连接蛋白家族使它们能够通过形成功能性缝隙连接相互通讯。然而,骨质疏松症损伤的细胞外机械特性如何调节成骨细胞之间的缝隙连接细胞间通讯仍不清楚。在这项研究中,我们建立了体内去卵巢(OVX)诱导的骨质疏松症小鼠模型和基于聚二甲基硅氧烷(PDMS)的细胞培养底物模型,以探讨细胞外基质(ECM)刚度对成骨细胞细胞间通讯的影响。首先,我们通过对股骨影像学、形态和组织化学变化的特征描述,建立了 OVX 诱导的骨质疏松症小鼠模型。结果表明,骨质疏松症降低了骨基质的刚度,同时还伴随着成骨细胞的丢失和蛋白标志物的减少。同时,骨质疏松症小鼠的树突状过程连接和缝隙连接蛋白 Cx43 减少。接下来,我们通过使用 PDMS 基质在正常刚度比 1:5 和骨质疏松刚度比 1:45 来模拟 ECM 刚度的变化。结果表明,ECM 刚度的降低减少了单个细胞中树突状过程的数量和相邻成骨细胞之间的缝隙连接。我们进一步在刚度降低的基质中检测到 Cx43 的表达减少。最后,我们发现刚度降低的基质中活的成骨细胞之间的缝隙连接细胞间通讯减少。这项研究表明了细胞外基质力学特性与成骨细胞细胞间通讯之间的相关性,并为进一步从生物力学角度探索骨质疏松症铺平了道路。

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