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缝隙连接蛋白 43 介导热休克蛋白 90α 信号通路对兔后纵韧带骨化的作用:体内与体外研究

Role of Cx43-Mediated NFкB Signaling Pathway in Ossification of Posterior Longitudinal Ligament: An In Vivo and In Vitro Study.

机构信息

Department of Spine Surgery, Changzheng Hospital, Second Military Medical University, Shanghai, China.

出版信息

Spine (Phila Pa 1976). 2017 Dec 1;42(23):E1334-E1341. doi: 10.1097/BRS.0000000000002165.

Abstract

STUDY DESIGN

In vivo and in vitro experiments.

OBJECTIVE

To illustrate the further molecular mechanism of Cx43-mediated osteoblastic differentiation of ligament cells.

SUMMARY OF BACKGROUND DATA

Ossification of the posterior longitudinal ligament (OPLL) is one of the main causes of myelopathy in Asians, but its etiology has not been clarified. We have previously found the mechanical stress can upregulate Cx43 expression in ligament cells, which transduces mechanical signal to promote osteoblastic differentiation.

METHODS

The posterior longitudinal ligaments were collected intraoperatively. Ligament fibroblasts were isolated and cultured, and an in vitro mechanical loading model was established. In vivo and in vitro expression levels of Cx43 protein were compared between OPLL and non-OPLL patients. The activation of nuclear factor (NF)-κB (p65) signal and related inflammatory responses were detected in ligament cells under mechanical loading. The mechanical stress-induced inflammatory response and osteoblastic differentiation of OPLL cells were investigated after the treatment with Cx43 siRNA or NFкB (p65) inhibitor.

RESULTS

We first confirmed higher Cx43 levels in both in vivo ligament tissue from OPLL patients and in vitro cultured OPLL cells. We also found NFκB (p65) signal and related inflammatory response were activated by mechanical stimulation. The activation of NFκB (p65) signal was dependent upon Cx43, as its knockdown reduced signal. Moreover, treatment with Cx43 siRNA or NFкB (p65) inhibitor significantly decreased the mechanical-induced inflammation response, but partly attenuated mechanical-stimulated osteoblastic differentiation of OPLL cells.

CONCLUSION

Cx43-mediated NFкB (p65) signal played an important role in mechanical stress-induced OPLL by transduction of mechanical signal, while giving rise to the activation of inflammatory response in ligament fibroblastsLevel of Evidence: N/A.

摘要

研究设计

体内和体外实验。

目的

阐明缝隙连接蛋白 43(Cx43)介导的韧带细胞成骨分化的进一步分子机制。

背景资料概要

后纵韧带骨化(OPLL)是亚洲人脊髓病的主要原因之一,但病因尚未阐明。我们之前发现机械应力可上调韧带细胞中 Cx43 的表达,从而将机械信号转导促进成骨分化。

方法

术中采集后纵韧带。分离培养韧带成纤维细胞,建立体外力学加载模型。比较 OPLL 和非 OPLL 患者韧带组织中 Cx43 蛋白的体内和体外表达水平。检测机械加载下韧带细胞中核因子(NF)-κB(p65)信号及相关炎症反应。用 Cx43 siRNA 或 NFкB(p65)抑制剂处理后,研究机械应力诱导的 OPLL 细胞炎症反应和成骨分化。

结果

我们首先证实了 OPLL 患者体内韧带组织和体外培养的 OPLL 细胞中 Cx43 水平较高。我们还发现 NFκB(p65)信号及相关炎症反应被机械刺激激活。NFκB(p65)信号的激活依赖于 Cx43,因为其敲低会降低信号。此外,用 Cx43 siRNA 或 NFкB(p65)抑制剂处理可显著降低机械诱导的炎症反应,但部分减弱机械刺激诱导的 OPLL 细胞成骨分化。

结论

Cx43 介导的 NFкB(p65)信号通过转导机械信号在机械应力诱导的 OPLL 中起重要作用,同时引起韧带成纤维细胞炎症反应的激活。

证据水平

N/A。

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