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加巴喷丁对人背根神经节的影响:供体特异性电生理和转录组学特征

Gabapentin's effect on human dorsal root ganglia: Donor-specific electrophysiological and transcriptomic profiles.

作者信息

Demeter Jenna B, Zurek Nesia A, Koch Maddy R, Goins Aleyah E, Holguin Cristian O, Shilling Mark W, Davis Michael S, Ehsanian Reza, Alles Sascha Ra, de la Peña June Bryan I

机构信息

Department of Anesthesiology & Critical Care Medicine, University of New Mexico Health Sciences Center, Albuquerque, NM, USA.

Division of Urology, Department of Surgery, University of New Mexico Health Sciences Center, Albuquerque, NM, USA.

出版信息

Mol Pain. 2025 Jan-Dec;21:17448069251361712. doi: 10.1177/17448069251361712. Epub 2025 Jul 14.

Abstract

Neuropathic pain affects approximately 10% of the adult population and is commonly treated with gabapentin (GBP), a repurposed anticonvulsant drug. Despite its widespread use, GBP's effectiveness varies significantly among patients, highlighting the need to better understand its functional and molecular impacts on human nociceptors. Here we characterized the electrophysiological and transcriptomic effects of GBP on primary neurons derived from the dorsal root ganglia (DRGs) of ethically consented human donors. Using patch-clamp electrophysiology, we demonstrated that GBP treatment reduced neuronal excitability, with more pronounced effects in multi-firing vs. single-firing neurons. Notably, significant donor-specific variability was observed in electrophysiological responsiveness to GBP treatment in vitro. RNA sequencing of DRG tissue from the donor that was more responsive to GBP revealed differences in transcriptome-wide expression of genes associated with ion transport, synaptic transmission, inflammation, and immune response. Cross-transcriptomic analyses further showed that GBP treatment counteracted these alterations, rescuing aberrant gene expression at the pathway level and for several key genes. This study provides a comprehensive electrophysiological and transcriptomic profile of the effects of GBP on human DRG neurons. These findings enhance our understanding of GBP's mechanistic actions on peripheral sensory neurons and could help optimize its use for managing neuropathic pain.

摘要

神经性疼痛影响着约10%的成年人口,常用加巴喷丁(GBP)进行治疗,这是一种重新用于治疗的抗惊厥药物。尽管其广泛使用,但GBP在患者中的疗效差异很大,这凸显了更好地了解其对人类伤害感受器的功能和分子影响的必要性。在此,我们对GBP对来自符合伦理标准的人类供体背根神经节(DRG)的原代神经元的电生理和转录组学效应进行了表征。使用膜片钳电生理学方法,我们证明GBP治疗降低了神经元兴奋性,在多发放神经元与单发放神经元中作用更明显。值得注意的是,在体外对GBP治疗的电生理反应中观察到了显著的供体特异性差异。对GBP反应更强的供体的DRG组织进行RNA测序,揭示了与离子转运、突触传递、炎症和免疫反应相关基因在全转录组表达上的差异。交叉转录组分析进一步表明,GBP治疗抵消了这些改变,在通路水平和几个关键基因上挽救了异常的基因表达。这项研究提供了GBP对人类DRG神经元作用的全面电生理和转录组学概况。这些发现加深了我们对GBP在外周感觉神经元上作用机制的理解,并有助于优化其在治疗神经性疼痛中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5de7/12368406/42270f6556e2/10.1177_17448069251361712-fig1.jpg

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