首页|期刊导航|Integrative Medicine Discovery|miRNAs expression change in spinal dorsal horn after Tuina in neuropathic pain rats

miRNAs expression change in spinal dorsal horn after Tuina in neuropathic pain ratsOA

中文摘要

Background:Neuropathic pain(NP)has a long course and is difficult to treat,causing great physical suffering and psychological burden to patients.Unfortunately,the pathogenesis of NP is still poorly understood.The occurrence and progression of NP are influenced by microRNA(miRNA).It has been reported that Tuina may effectively alleviate NP,however,the mechanisms related to miRNA-mediated Tuina for NP are still unexplored.Methods:To generate NP,a rat model of chronic constriction injury(CCI)was developed.Rats’pain thresholds are studied through pain behaviour tests.The effect of Tuina on the structure and morphology of neurones in the spinal dorsal horn(SDH)of rats with neuropathological pain was examined using HE staining.The levels of miRNA in the SDH of rats with a CCI model were studied using RNA sequencing(RNA-seq)and bioinformatics analysis.The top three miRNAs with the highest fold changes were chosen for qRT-PCR detection to confirm the validity of the RNA-seq results.Results:On the 4th day after CCI surgery,the paw withdrawal threshold(PWT)of the CCI+Tuina group was considerably higher than that of the CCI group(P<0.001).Furthermore,there was a significant increase in the paw withdrawal latency(PWL)of the CCI+Tuina group from day 4 to day 17 after the CCI surgery(P<0.001).Differentially expressed miRNAs in the SDH of three groups of rats were examined using RNA-seq technology.Seven miRNAs were found to intersect in total.The Kyoto Encyclopaedia of Genes and Genomes(KEGG)and Gene Ontology(GO)both anticipated the possible roles of the miRNAs.The RNA-seq results matched the changes in the levels of miR-383-3p(P<0.01),miR-183-3p(P<0.01),and miR-184(P<0.01).Conclusion:CCI-induced NP in rats leads to changes in miRNA expression in the SDH,and Tuina may alleviate NP by modulating the expression pattern of miRNAs and their underlying mechanisms.These findings may provide new targets for future NP treatment.

Shi-Ye Wu;Hong-Ye Huang;Le-Chun Chen;Jing-Jing Jiang;Huan-Zhen Zhang;Jin-Cheng Chen;Shui-Jin Chen;Zhi-Gang Lin

College of Rehabilitation,Fujian University of Traditional Chinese Medicine,Fuzhou 350122,ChinaDepartment of Tuina,Rehabilitation Hospital affiliated to Fujian University of Traditional Chinese Medicine,Fuzhou 350001,ChinaDepartment of Tuina,Rehabilitation Hospital affiliated to Fujian University of Traditional Chinese Medicine,Fuzhou 350001,ChinaDepartment of Tuina,Rehabilitation Hospital affiliated to Fujian University of Traditional Chinese Medicine,Fuzhou 350001,ChinaDepartment of Tuina,Rehabilitation Hospital affiliated to Fujian University of Traditional Chinese Medicine,Fuzhou 350001,ChinaDepartment of Tuina,Rehabilitation Hospital affiliated to Fujian University of Traditional Chinese Medicine,Fuzhou 350001,ChinaDepartment of Tuina,Rehabilitation Hospital affiliated to Fujian University of Traditional Chinese Medicine,Fuzhou 350001,ChinaDepartment of Tuina,Rehabilitation Hospital affiliated to Fujian University of Traditional Chinese Medicine,Fuzhou 350001,China

医药卫生

Tuinaspinal dorsal hornneuropathic painRNA-seqmiRNA

《Integrative Medicine Discovery》 2025 (19)

P.1-13,13

supported by the Project of National Natural Science Foundation of China(No.82174523,No.82205303)Fujian Provincial Health Commission Traditional Chinese Medicine Science and Technology Plan Project(No.2025YBB010)Natural Science Foundation of Fujian Province(No.2023J06037,No.2024J01141).

10.53388/IMD202509019

评论