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[奥沙利铂诱导的周围神经性疼痛的分子机制]

[The molecular mechanism of oxaliplatin-induced peripheral neuropathic pain].

作者信息

Yang S M, Wu S B, Wu J M, Huang J B, Huang M J, Xiong D L, Hao Y, Sun W P, Xiao L Z

机构信息

Department of Pain Medicine, Huazhong University of Science and Technology Union Shenzhen Hospital (Nanshan Hospital), Shenzhen Municipal Key Laboratory for Pain Medicine, Shenzhen 518052, China.

School of Pharmaceutical Sciences, Health Science Center, Shenzhen University, Shenzhen 518060, China.

出版信息

Zhonghua Yi Xue Za Zhi. 2021 Nov 23;101(43):3581-3587. doi: 10.3760/cma.j.cn112137-20210513-01127.

Abstract

To investigate the molecular mechanism of oxaliplatin-induced chemotherapy-induced peripheral neuropathic pain (CIPNP). A total of 16 male Sprague-Dawley rats of specific pathogen-free grade were randomly divided into two groups: oxaliplatin experimental group (2.4 mg/kg oxaliplatin dissolved in 5.0% glucose solution, =8) and control group (equal volume 5% glucose solution, =8). The rat model of CIPNP was established by continuous administration with oxaliplatin. In addition, mechanical allodynia, thermal hyperalgesia and cold hyperalgesia were measured and compared between the two groups. To explore the molecular mechanism of oxaliplatin-induced CIPNP, the gene expression of dorsal root ganglia (DRG) from the rat model of CIPNP was analyzed using RNA sequencing (RNA-Seq). Mechanical and thermal hypersensitivity was exhibited on day 7 and a stronger hypersensitivity was observed on day 14. A total of 20 152 genes were quantified by RNA-Seq, and 379 differentially expressed genes (DEGs) were obtained with absolute fold change cut-offs ≥ 2 and value<0.05. There were 7 genes (Npy, Car3, Cdkn1a, Nts, Prc1, Ms4a7 and Ecel1) that were involved in peripheral nerve injury-related neuropathic pain. Gene ontology (GO) functional enrichment analyses indicated that the DEGs induced by oxaliplatin were involved in oxygen transport, cell division, intermediate, centromere, oxygen transporter activity, oxygen binding. Moreover, the result of Kyoto Encyclopedia of genes and genomes (KEGG) analyses highlighted that the DEGs induced by oxaliplatin were involved in malaria, African trypanosomiasis, primary immunodeficiency, peroxisome proliferator activated receptor (PPAR) signaling pathway. Oxaliplatin induces CIPNP via pain-related genes and signaling pathways.

摘要

为研究奥沙利铂诱导的化疗引起的周围神经病理性疼痛(CIPNP)的分子机制。将16只无特定病原体级别的雄性Sprague-Dawley大鼠随机分为两组:奥沙利铂实验组(2.4 mg/kg奥沙利铂溶于5.0%葡萄糖溶液,n = 8)和对照组(等体积5%葡萄糖溶液,n = 8)。通过连续给予奥沙利铂建立CIPNP大鼠模型。此外,测量并比较两组的机械性异常性疼痛、热痛觉过敏和冷痛觉过敏。为探究奥沙利铂诱导CIPNP的分子机制,使用RNA测序(RNA-Seq)分析CIPNP大鼠模型背根神经节(DRG)的基因表达。在第7天出现机械性和热超敏反应,在第14天观察到更强的超敏反应。通过RNA-Seq对总共20152个基因进行定量,获得379个差异表达基因(DEG),其绝对倍数变化截止值≥2且P值<0.05。有7个基因(Npy、Car3、Cdkn1a、Nts、Prc1、Ms4a7和Ecel1)参与周围神经损伤相关的神经病理性疼痛。基因本体(GO)功能富集分析表明,奥沙利铂诱导的DEG参与氧运输、细胞分裂、中间体、着丝粒、氧转运体活性、氧结合。此外,京都基因与基因组百科全书(KEGG)分析结果突出显示,奥沙利铂诱导的DEG参与疟疾、非洲锥虫病、原发性免疫缺陷、过氧化物酶体增殖物激活受体(PPAR)信号通路。奥沙利铂通过疼痛相关基因和信号通路诱导CIPNP。

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