Structural changes in the nociceptive system induced by long-term conventional spinal cord stimulation in experimental painful diabetic polyneuropathy.

IF 5.1 2区 医学 Q1 ANESTHESIOLOGY Regional Anesthesia and Pain Medicine Pub Date : 2024-11-14 DOI:10.1136/rapm-2024-105919
Thomas de Geus, Glenn Franken, Xander Zuidema, Jan van Zundert, Elbert A J Joosten
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Abstract

Background: Clinical studies suggest that long-term conventional spinal cord stimulation (LT-SCS) for painful diabetic peripheral neuropathy (PDPN) is initially effective but may decline in efficacy over time. Preclinical studies indicate that LT-SCS alleviates mechanical hypersensitivity and enhances hind paw blood flow in PDPN rats, suggesting nociceptive system plasticity. This study hypothesized that LT-SCS induces peripheral hind paw small-fiber sprouting and reduces central protein expression of glial and P2X4 brain-derived neurotrophic factor (BDNF) pathway markers.

Methods: Diabetes was induced via Streptozotocin injection in 32 rats, with 16 developing PDPN and receiving a quadrupolar lead implant. LT-SCS was applied for 4 weeks, 12 hours per day. Pain behavior was assessed using the Von Frey test for mechanical hypersensitivity and the mechanical conflict avoidance system for motivational aspects of pain. Fiber sprouting was assessed via immunohistochemical analysis of nerve fibers in the hind paw skin. Protein expression in the spinal cord was assessed using western blotting.

Results: LT-SCS increased the baseline threshold of mechanical hypersensitivity in PDPN animals, consistent with previous findings, but showed no effects on motivational aspects of pain. Hind paw tissue analysis revealed significantly increased intraepidermal nerve fiber density of PGP9.5 fibers in LT-SCS animals compared with Sham-SCS animals. Protein analysis showed significantly decreased pro-BDNF expression in LT-SCS animals compared with Sham-SCS animals.

Conclusion: LT-SCS induces structural changes in both peripheral and central components of the nociceptive system in PDPN animals. These changes may contribute to observed behavioral modifications, elucidating mechanisms underlying LT-SCS efficacy in PDPN management.

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实验性疼痛性糖尿病多发性神经病长期常规脊髓刺激引起的痛觉系统结构变化。
背景:临床研究表明,长期常规脊髓刺激(LT-SCS)治疗疼痛性糖尿病周围神经病变(PDPN)最初有效,但随着时间的推移疗效可能会下降。临床前研究表明,LT-SCS 可减轻 PDPN 大鼠的机械过敏性并增强后爪血流量,这表明痛觉系统具有可塑性。本研究假设,LT-SCS 可诱导外周后爪小纤维发芽,并减少神经胶质和 P2X4 脑源性神经营养因子(BDNF)通路标记物的中枢蛋白表达:通过注射链脲佐菌素诱导 32 只大鼠患糖尿病,其中 16 只出现 PDPN 并接受四极导联植入。LT-SCS应用4周,每天12小时。使用 Von Frey 试验评估大鼠的疼痛行为,以了解其机械过敏性;使用机械冲突回避系统评估大鼠的疼痛动机。通过对后爪皮肤的神经纤维进行免疫组化分析来评估纤维萌发情况。脊髓中的蛋白质表达采用 Western 印迹法进行评估:结果:LT-SCS提高了PDPN动物的机械过敏基线阈值,这与之前的研究结果一致,但对疼痛的动机方面没有影响。后爪组织分析显示,与Sham-SCS动物相比,LT-SCS动物表皮内PGP9.5纤维的神经纤维密度明显增加。蛋白质分析表明,与Sham-SCS动物相比,LT-SCS动物的pro-BDNF表达明显减少:结论:LT-SCS 可诱导 PDPN 动物痛觉系统的外周和中枢成分发生结构性变化。这些变化可能有助于观察到的行为改变,从而阐明 LT-SCS 在 PDPN 治疗中的疗效机制。
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来源期刊
CiteScore
8.50
自引率
11.80%
发文量
175
审稿时长
6-12 weeks
期刊介绍: Regional Anesthesia & Pain Medicine, the official publication of the American Society of Regional Anesthesia and Pain Medicine (ASRA), is a monthly journal that publishes peer-reviewed scientific and clinical studies to advance the understanding and clinical application of regional techniques for surgical anesthesia and postoperative analgesia. Coverage includes intraoperative regional techniques, perioperative pain, chronic pain, obstetric anesthesia, pediatric anesthesia, outcome studies, and complications. Published for over thirty years, this respected journal also serves as the official publication of the European Society of Regional Anaesthesia and Pain Therapy (ESRA), the Asian and Oceanic Society of Regional Anesthesia (AOSRA), the Latin American Society of Regional Anesthesia (LASRA), the African Society for Regional Anesthesia (AFSRA), and the Academy of Regional Anaesthesia of India (AORA).
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