NGF 信号通过增加 TRPV1 标记的 KOA 大鼠滑膜感觉神经传导加剧 KOA 周围痛觉减退

Zixiu Liu, Mingchao Li, Li Zhang, Xiaoqing Shi, Taiyang Liao, Lishi Jie, Likai Yu, Peimin Wang
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The synovial tissues were harvested on day 28, and the expressions of NGF, TrKA, TRPV1, IL-1<i>β</i>, and PGP9.5 were determined using western blot, qPCR, and immunofluorescence staining. The primary rat fibroblast-like synoviocytes (FLSs) and DRG cells were divided into 4 groups as in vivo. The expressions of NGF, TrKA, TRPV1, and CGRP in vitro were determined using western blot and qPCR. <i>Results</i>. KOA and intra-articular injection with NGF protein increased both mRNA and protein levels, not only TRPV1, PGP 9.5, and IL-1<i>β</i> in the synovial tissue, but also TRPV1, PGP 9.5, and S100 in the DRG tissue, while above changes were partly reversed after siRNA TrKA intervention. Besides, siRNA TrKA could improve peripheral hyperalgesia and decreased the TRPV1 positive nerve fiber innervation in synovial tissue. The results in vitro were consistent with those in vivo. <i>Conclusion</i>. 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引用次数: 0

摘要

目的。膝关节骨关节炎(KOA)疼痛是由痛觉感受器引起的,痛觉感受器实际上是感觉神经纤维末梢,可以检测刺激产生和传递疼痛信号,滑膜组织中高水平的 NGF 会导致 KOA 周围痛觉减退。本研究的目的是探讨感觉神经纤维如何响应 NGF/TrKA 信号通路并介导 KOA 大鼠的外周痛觉减退。研究方法将 40 只 SD 雄性大鼠随机分为 4 组:正常组、KOA 组、KOA + NGF 组和 KOA + siRNA TrKA 组。KOA 模型大鼠由前十字韧带横断(ACLT)诱导。每组测量 4 次机械阈值和冷退缩阈值(MWT 和 CWT)。第 28 天采集滑膜组织,采用 Western 印迹、qPCR 和免疫荧光染色法检测 NGF、TrKA、TRPV1、IL-1β 和 PGP9.5 的表达。将原代大鼠成纤维细胞样滑膜细胞(FLSs)和DRG细胞按体内方法分为4组。采用 Western 印迹和 qPCR 方法测定 NGF、TrKA、TRPV1 和 CGRP 在体外的表达。结果KOA 和关节内注射 NGF 蛋白不仅增加了滑膜组织中 TRPV1、PGP 9.5 和 IL-1β 的 mRNA 和蛋白水平,而且增加了 DRG 组织中 TRPV1、PGP 9.5 和 S100 的 mRNA 和蛋白水平。此外,siRNA TrKA还能改善外周痛觉减退,减少滑膜组织中TRPV1阳性神经纤维的支配。体外实验结果与体内实验结果一致。结论本研究表明,KOA 中 NGF/TrKA 信号通路的激活促进了疼痛介质的释放,增加了滑膜中感觉神经纤维的支配,加重了外周痛觉减退。研究还显示,KOA中TRPV1阳性感觉神经支配的增加是由NGF/TrKA信号传导介导的,并加剧了外周痛觉减退。
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NGF Signaling Exacerbates KOA Peripheral Hyperalgesia via the Increased TRPV1-Labeled Synovial Sensory Innervation in KOA Rats
Objectives. Knee osteoarthritis (KOA) pain is caused by nociceptors, which are actually sensory nerve fiber endings that can detect stimuli to produce and transmit pain signals, and high levels of NGF in synovial tissue led to peripheral hyperalgesia in KOA. The purpose of this study is to investigate how sensory nerve fibers respond to the NGF/TrKA signal pathway and mediate the peripheral hyperalgesia in KOA rats. Methods. Forty SD male rats were randomly divided into 4 groups: normal, KOA, KOA + NGF, and KOA + siRNA TrKA. KOA model rats were induced by anterior cruciate ligament transection (ACLT). Mechanical and cold withdrawal thresholds (MWT and CWT) were measured 4 times in each group. The synovial tissues were harvested on day 28, and the expressions of NGF, TrKA, TRPV1, IL-1β, and PGP9.5 were determined using western blot, qPCR, and immunofluorescence staining. The primary rat fibroblast-like synoviocytes (FLSs) and DRG cells were divided into 4 groups as in vivo. The expressions of NGF, TrKA, TRPV1, and CGRP in vitro were determined using western blot and qPCR. Results. KOA and intra-articular injection with NGF protein increased both mRNA and protein levels, not only TRPV1, PGP 9.5, and IL-1β in the synovial tissue, but also TRPV1, PGP 9.5, and S100 in the DRG tissue, while above changes were partly reversed after siRNA TrKA intervention. Besides, siRNA TrKA could improve peripheral hyperalgesia and decreased the TRPV1 positive nerve fiber innervation in synovial tissue. The results in vitro were consistent with those in vivo. Conclusion. This study showed the activation of the NGF/TrKA signaling pathway in KOA promoted the release of pain mediators, increased the innervation of sensory nerve fibers in the synovium, and worsened peripheral hyperalgesia. It also showed increased TRPV1 positive sensory innervation in KOA was mediated by NGF/TrKA signaling and exacerbated peripheral hyperalgesia.
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