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重组A型肉毒杆菌神经毒素A1对小鼠外周炎性疼痛的疗效评估

Evaluation of Recombinant Botulinum Neurotoxin Type A1 Efficacy in Peripheral Inflammatory Pain in Mice.

作者信息

Oehler Beatrice, Périer Cindy, Martin Vincent, Fisher Amy, Lezmi Stéphane, Kalinichev Mikhail, McMahon Stephen B

机构信息

Wolfson Center of Age-Related Diseases, IoPPN, Health and Life Science, King's College London, London, United Kingdom.

Department of Anaesthesiology, Heidelberg University Hospital, Heidelberg, Germany.

出版信息

Front Mol Neurosci. 2022 May 26;15:909835. doi: 10.3389/fnmol.2022.909835. eCollection 2022.

Abstract

Well-established efficacy of botulinum neurotoxin type A (BoNT/A) in aesthetic dermatology and neuromuscular hyperactivity disorders relies on canonical interruption of acetylcholine neurotransmission at the neuromuscular junction at the site of the injection. The mechanisms and the site of activity of BoNT/A in pain, on the other hand, remain elusive. Here, we explored analgesic activity of recombinant BoNT/A1 (rBoNT/A1; IPN10260) in a mouse model of inflammatory pain to investigate the potential role of peripheral sensory afferents in this activity. After confirming analgesic efficacy of rBoNT/A1 on CFA-induced mechanical hypersensitivity in C57Bl6J mice, we used GCaMP6s to perform calcium imaging in the ipsilateral dorsal root ganglion (DRG) neurons in rBoNT/A1 vs. vehicle-treated mice at baseline and following administration of a range of mechanical and thermal stimuli. Additionally, immunohisochemical studies were performed to detect cleaved SNAP25 in the skin, DRGs and the spinal cord. Injection of CFA resulted in reduced mechanical sensitivity threshold and increased calcium fluctuations in the DRG neurons. While rBoNT/A1 reduced mechanical hypersensitivity, calcium fluctuations in the DRG of rBoNT/A1- and vehicle-treated animals were similar. Cleaved SNAP25 was largely absent in the skin and the DRG but present in the lumbar spinal cord of rBoNT/A1-treated animals. Taken together, rBoNT/A1 ameliorates mechanical hypersensitivity related to inflammation, while the signal transmission from the peripheral sensory afferents to the DRG remained unchanged. This strengthens the possibility that spinal, rather than peripheral, mechanisms play a role in the mediation of analgesic efficacy of BoNT/A in inflammatory pain.

摘要

A型肉毒杆菌神经毒素(BoNT/A)在美容皮肤科和神经肌肉功能亢进疾病中已确立的疗效依赖于在注射部位的神经肌肉接头处对乙酰胆碱神经传递的经典阻断。另一方面,BoNT/A在疼痛方面的作用机制和活性位点仍不清楚。在这里,我们在炎症性疼痛小鼠模型中探索了重组BoNT/A1(rBoNT/A1;IPN10260)的镇痛活性,以研究外周感觉传入神经在该活性中的潜在作用。在证实rBoNT/A1对C57Bl6J小鼠CFA诱导的机械性超敏反应具有镇痛效果后,我们使用GCaMP6s在基线以及给予一系列机械和热刺激后,对rBoNT/A1处理组和溶剂处理组小鼠同侧背根神经节(DRG)神经元进行钙成像。此外,还进行了免疫组织化学研究,以检测皮肤、DRG和脊髓中裂解的SNAP25。注射CFA导致机械性敏感性阈值降低,DRG神经元中的钙波动增加。虽然rBoNT/A1降低了机械性超敏反应,但rBoNT/A1处理组和溶剂处理组动物DRG中的钙波动相似。裂解的SNAP25在皮肤和DRG中基本不存在,但在rBoNT/A1处理组动物的腰脊髓中存在。综上所述,rBoNT/A1改善了与炎症相关的机械性超敏反应,而从外周感觉传入神经到DRG的信号传递保持不变。这强化了脊髓而非外周机制在介导BoNT/A在炎症性疼痛中的镇痛效果中起作用的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73dc/9179158/853b4dd373f1/fnmol-15-909835-g0001.jpg

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