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首页> 外文期刊>Annals of the New York Academy of Sciences >Role of Connexin43 in Osteoblast Response to Physical Load
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Role of Connexin43 in Osteoblast Response to Physical Load

机译:连接蛋白43在成骨细胞对物理负荷反应中的作用

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摘要

Gap junctions are hexameric transmembrane channels formed by connexins, and are responsible for direct cell-to-cell communication. The most abundant gap junction protein in bone is connexin43 (Cx43), although connexin45 (Cx45) is also expressed. In the present study, we tested the hypothesis that bone cell responses to mechanical stimulation are dependent on the type of gap junction communication provided by Cx43 in vitro and in an in vivo model of physical load. Application of cyclic stretch to calvaria osteoblasts results in a modest but detectable increase in PGE_2 levels, and the amount of PGE_2 produced was lower in cells isolated from Cx43 null mice. Mice with an osteoblast-specific deletion of the Cx43 gene were subjected to an in vivo four-point bending protocol on the tibia. This resulted in fast and exuberant formation of woven bone at the region directly below the loading fulcrum in both osteoblast Cx43-deleted and wild-type mice. However, indirect measurement of endosteal bone apposition suggested a less pronounced effect of physical load in Cx43-deficient than in wild-type mice. Taken together, these results indicate that deficiency of Cx43 in osteoblasts attenuates but does not abolish anabolic responses to mechanical strain.
机译:间隙连接是由连接蛋白形成的六聚体跨膜通道,负责直接的细胞间通信。骨中最丰富的间隙连接蛋白是connexin43(Cx43),尽管也表达了connexin45(Cx45)。在本研究中,我们测试了以下假设:骨细胞对机械刺激的反应取决于Cx43在体外和体内物理负荷模型中提供的间隙连接通讯的类型。将循环拉伸应用于颅骨成骨细胞会导致PGE_2水平适度但可检测的增加,并且从Cx43缺失小鼠分离的细胞中产生的PGE_2量较低。对Cx43基因具有成骨细胞特异性缺失的小鼠进行胫骨体内四点弯曲实验。这导致在成骨细胞Cx43缺失和野生型小鼠中,在负载支点正下方的区域快速且旺盛地形成了编织骨。但是,间接测量骨内膜并位表明,在Cx43缺陷中,物理负荷的影响不如野生型小鼠明显。综上所述,这些结果表明成骨细胞中Cx43的缺乏会减弱但不会消除对机械应变的合成代谢反应。

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