慢病毒介导的针对 HMGB1 的 RNA 干扰可调节 AQP1,从而减轻背根神经节慢性压迫引起的疼痛

IF 4.4 2区 医学 Q1 PHARMACOLOGY & PHARMACY Frontiers in Pharmacology Pub Date : 2024-09-18 DOI:10.3389/fphar.2024.1469223
Jinlu Li, Kaihong Yang, Fuchao Yao, Hui Wei
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Behavioral tests were performed by calculating the paw withdrawal mechanical threshold (PWMT) and the thermal paw withdrawal latency (TPWL). Co-immunoprecipitation (CO-IP) was used to clarify protein interactions. Gene silencing was induced by injecting lentivirus expressing HMGB1 short hairpin RNA (shRNA) into rats. An LPS-inflammation-stimulated rat astrocyte model was established to validate the animal experiment results further. Western blot analysis and real-time quantitative PCR were used to detect pathway protein expression.ResultsAfter first establishing the rat CCD model, both PWMT and PTWL were significantly reduced in rats, indicating that the model construction was successful. After lentiviral silencing of HMGB1 expression, NP was significantly alleviated in CCD rats. CO-IP experiments showed a link between HMGB1 and AQP1; After silencing HMGB1 expression, the expression of AQP1 was significantly reduced, and HMGB1 was able to modulate the effect of AQP1 on NP. 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引用次数: 0

摘要

研究背景神经病理性疼痛(Neuropathic pain,NP)是临床上备受关注的一种慢性疼痛,具有发病率高、机制复杂、临床治疗困难等特点,而高迁移率基团框1(High mobility group box 1,HMGB1)的激活与之密切相关。本研究旨在探讨慢病毒介导的针对 HMGB1 的 RNA 干扰基因疗法对慢性背根神经节压迫(CCD)大鼠神经病理性疼痛的影响及其具体机制,从而探索新的药理靶点。通过计算爪退缩机械阈值(PWMT)和热爪退缩潜伏期(TPWL)进行行为测试。共免疫沉淀(CO-IP)用于明确蛋白质之间的相互作用。通过向大鼠注射表达HMGB1短发夹RNA(shRNA)的慢病毒诱导基因沉默。为了进一步验证动物实验结果,建立了 LPS 炎症刺激的大鼠星形胶质细胞模型。结果首先建立大鼠 CCD 模型后,大鼠的 PWMT 和 PTWL 均显著降低,表明模型构建成功。慢病毒沉默 HMGB1 表达后,CCD 大鼠的 NP 明显减轻。CO-IP 实验表明,HMGB1 和 AQP1 之间存在联系;沉默 HMGB1 表达后,AQP1 的表达明显减少,HMGB1 能够调节 AQP1 对 NP 的影响。进一步使用 HMGB1 受体抑制剂表明,抑制 RAGE 后,AQP1 的表达明显减少;HMGB1 可能通过其受体 RAGE 调节 AQP1 以影响 NP。沉默 HMGB1 会导致 NF-κB 显著下降,HMGB1 会影响其介导的炎症通路。结论 慢病毒介导的针对 HMGB1 的 RNA 干扰(RNAi)沉默可能通过 RAGE 调节 AQP1 的表达并最终激活 NF-κB,从而在大鼠神经病理性疼痛的发病过程中发挥关键作用。
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Lentivirus-mediated RNA interference targeting HMGB1 modulates AQP1 to reduce pain induced by chronic compression of the dorsal root ganglia
BackgroundsNeuropathic pain (NP) is a kind of chronic pain that has attracted much attention in clinical practice, characterized by high morbidity, complex mechanisms, and difficulties in clinical treatment, with which the activation of High mobility group box 1 (HMGB1) is closely related. The aim of this study was to investigate the effects of lentivirus-mediated RNA interference gene therapy targeting HMGB1 on neuropathic pain in rats with chronic dorsal root ganglion compression (CCD) and its specific mechanisms, so as to explore new pharmacological targets.MethodsAdult male Wistar rats were surgically subjected to chronic compression of the dorsal root ganglia (CCD). Behavioral tests were performed by calculating the paw withdrawal mechanical threshold (PWMT) and the thermal paw withdrawal latency (TPWL). Co-immunoprecipitation (CO-IP) was used to clarify protein interactions. Gene silencing was induced by injecting lentivirus expressing HMGB1 short hairpin RNA (shRNA) into rats. An LPS-inflammation-stimulated rat astrocyte model was established to validate the animal experiment results further. Western blot analysis and real-time quantitative PCR were used to detect pathway protein expression.ResultsAfter first establishing the rat CCD model, both PWMT and PTWL were significantly reduced in rats, indicating that the model construction was successful. After lentiviral silencing of HMGB1 expression, NP was significantly alleviated in CCD rats. CO-IP experiments showed a link between HMGB1 and AQP1; After silencing HMGB1 expression, the expression of AQP1 was significantly reduced, and HMGB1 was able to modulate the effect of AQP1 on NP. Further use of an inhibitor of the HMGB1 receptor showed that after inhibition of RAGE, AQP1 was significantly reduced; HMGB1 may regulate AQP1 through its receptor RAGE to affect NP. Silencing of HMGB1 resulted in a significant decrease in NF-κB, and HMGB1 affects the inflammatory pathways it mediates. After silencing AQP1, NF-κB also decreased significantly, indicating that AQP1 is an upstream regulator of NF-κB.ConclusionLentivirus-mediated RNA interference (RNAi) silencing targeting HMGB1 may play a key role in the development of neuropathic pain in rats by regulating AQP1 expression via RAGE and ultimately activating NF-κB.
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来源期刊
Frontiers in Pharmacology
Frontiers in Pharmacology PHARMACOLOGY & PHARMACY-
CiteScore
7.80
自引率
8.90%
发文量
5163
审稿时长
14 weeks
期刊介绍: Frontiers in Pharmacology is a leading journal in its field, publishing rigorously peer-reviewed research across disciplines, including basic and clinical pharmacology, medicinal chemistry, pharmacy and toxicology. Field Chief Editor Heike Wulff at UC Davis is supported by an outstanding Editorial Board of international researchers. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide.
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