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参与疼痛性糖尿病神经病变的神经网络:一项系统综述。

Neural networks involved in painful diabetic neuropathy: A systematic review.

作者信息

Axelsen Johanne Lundager, Kirk Ulrich, Andersen Søren Bo, Schmidt Juliana Janeiro, Gaarde Maria Beck, Franck Christopher Lund, van Duinkerken Eelco, Pouwer François

机构信息

Department of Psychology, University of Southern Denmark, Odense, Denmark.

Fralin Biomedical Research Institute at VTC, Virginia Tech, Roanoke, VA, United States of America.

出版信息

Scand J Pain. 2025 Apr 8;25(1). doi: 10.1515/sjpain-2024-0069. eCollection 2025 Jan 1.

Abstract

OBJECTIVES

Diabetic distal symmetric polyneuropathy, affecting up to 50% of adults with diabetes, often leads to painful symptoms; yet current treatments are largely ineffective with standard therapies providing limited relief. The aim of this systematic review is to address the knowledge gap in understanding the neural networks associated with painful diabetic polyneuropathy (P-DPN). By synthesizing evidence from neuroimaging studies, it seeks to identify potential targets for neuromodulation-based treatments, ultimately guiding clinicians and researchers in developing novel, more effective therapeutic interventions for P-DPN.

CONTENT

A comprehensive search following the preferred reporting items for systematic reviews and meta-analysis was conducted across Embase, PsycINFO, and MEDLINE databases to identify relevant neuroimaging studies from 2010 to May 2024. The search focused on studies involving P-DPN and excluded animal research. After the removal of duplicates and irrelevant studies, 18 studies were included and critically appraised for their contributions to understanding the neural correlates of P-DPN.

SUMMARY

The review highlights that P-DPN is associated with alterations in brain networks involved in pain perception, particularly in the primary somatosensory cortex highlighting its role in sensory and pain perception. Regions such as the anterior cingulate cortex and thalamus exhibit altered functional connectivity, with the former showing responses to pain treatment. The review also identified increased connectivity between the cingulate cortex, medial prefrontal cortex, medial temporal region, and insula in individuals with P-DPN, pointing to the involvement of these regions in the emotional and cognitive aspects of pain processing.

OUTLOOK

This review provides a foundational understanding of the neural networks involved in P-DPN, offering potential targets for future neuromodulation therapies. Further research is required to deepen the understanding of these brain alterations and to explore how they can be leveraged for more effective P-DPN treatments.

摘要

目的

糖尿病性远端对称性多发性神经病变影响多达50%的成年糖尿病患者,常导致疼痛症状;然而,目前的治疗方法在很大程度上无效,标准疗法只能提供有限的缓解。本系统评价的目的是填补在理解与疼痛性糖尿病性多发性神经病变(P-DPN)相关的神经网络方面的知识空白。通过综合神经影像学研究的证据,它试图确定基于神经调节治疗的潜在靶点,最终指导临床医生和研究人员开发针对P-DPN的新型、更有效的治疗干预措施。

内容

按照系统评价和荟萃分析的首选报告项目进行了全面检索,在Embase、PsycINFO和MEDLINE数据库中查找2010年至2024年5月的相关神经影像学研究。检索重点是涉及P-DPN的研究,并排除动物研究。在去除重复和不相关的研究后,纳入了18项研究,并对它们在理解P-DPN神经相关性方面的贡献进行了严格评估。

总结

该评价强调,P-DPN与参与疼痛感知的脑网络改变有关,特别是在初级体感皮层,突出了其在感觉和疼痛感知中的作用。前扣带回皮层和丘脑等区域表现出功能连接改变,前者对疼痛治疗有反应。该评价还发现,P-DPN患者的扣带回皮层、内侧前额叶皮层、内侧颞叶区域和脑岛之间的连接增加,表明这些区域参与了疼痛处理的情感和认知方面。

展望

本评价提供了对参与P-DPN的神经网络的基本理解,为未来的神经调节治疗提供了潜在靶点。需要进一步研究以加深对这些脑改变的理解,并探索如何利用它们进行更有效的P-DPN治疗。

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