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负压伤口治疗通过上调miR-195抑制NLRX1来促进血管生成,从而促进伤口愈合。

Negative-Pressure Wound Therapy Promotes Wound Healing by Enhancing Angiogenesis Through Suppression of NLRX1 via miR-195 Upregulation.

作者信息

Liu Yu, Tang Ningning, Cao Ke, Wang Shaohua, Tang Sijie, Su Honghui, Zhou Jianda

机构信息

1 Central South University Third Xiangya Hospital, Changsha, Hunan Province, China.

2 Inner Mongolia Medical University, Hohhot, Inner Mongolia China.

出版信息

Int J Low Extrem Wounds. 2018 Sep;17(3):144-150. doi: 10.1177/1534734618794856. Epub 2018 Aug 24.

Abstract

Negative-pressure wound therapy (NPWT) is one of the most advanced therapeutic methods in the treatment of various hard-to-heal acute and refractory chronic wounds. Recent emerging evidence points to a role of the microRNA-mediated regulation of angiogenesis in ischemic tissues, and a series of microRNAs associated with angiogenesis have been successively identified. In this study, we found that miR-195 expression was significantly upregulated and the microvessel density (MVD) was increased in granulation tissue collected 7 days after NPWT compared with those in the pre-NPWT tissue. Moreover, the expression of NLRX1, the potential target gene of miR-195, was down-regulated in post-NPWT compared with that in pre-NPWT tissue. Significant negative correlations were detected between miR-195 and NLRX1 expression levels ( r = -.856, P < .001) and between NLRX1 expression and MVD ( r = -.618, P < .05), whereas miR-195 expression was positively correlated with MVD in the granulation tissue ( r = .630, P < .05). In summary, NPWT may suppress NLRX1 expression through the upregulation of miR-195 expression, thus efficaciously promoting angiogenesis in the granulation tissue to enhance wound healing.

摘要

负压伤口治疗(NPWT)是治疗各种难愈合急性和难治性慢性伤口的最先进治疗方法之一。最近新出现的证据表明,微小RNA介导的对缺血组织中血管生成的调节作用,并且一系列与血管生成相关的微小RNA已相继被鉴定出来。在本研究中,我们发现与NPWT治疗前组织相比,NPWT治疗7天后收集的肉芽组织中miR-195表达显著上调且微血管密度(MVD)增加。此外,与NPWT治疗前组织相比,NPWT治疗后miR-195的潜在靶基因NLRX1的表达下调。在miR-195与NLRX1表达水平之间(r = -0.856,P < 0.001)以及NLRX1表达与MVD之间(r = -0.618,P < 0.05)检测到显著的负相关,而在肉芽组织中miR-195表达与MVD呈正相关(r = 0.630,P < 0.05)。总之,NPWT可能通过上调miR-195表达来抑制NLRX1表达,从而有效促进肉芽组织中的血管生成以增强伤口愈合。

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