痛觉性脊髓回路中突触囊泡的嗜内蛋白A1和突触蛋白1依赖性内吞维持术后和癌性疼痛。

IF 5.9 1区 医学 Q1 ANESTHESIOLOGY
Maria Fernanda Pessano Fialho, Gokul Sriman Thanigai Arasu, Shen Chen, Wendy L Imlach, Nigel W Bunnett, Raquel Tonello
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引用次数: 0

摘要

慢性疼痛时,神经递质的持续释放需要突触囊泡(SV)循环。因此,SV内吞和再循环的介质是痛觉性脊髓回路中持续疼痛传递的关键。我们假设背根神经节(DRG)痛觉感受器SV内吞作用的破坏会阻碍突触传递,从而持续缓解多模态疼痛。采用免疫荧光和RNAScope原位杂交技术,在小鼠DRG原代感觉神经元中检测了突触蛋白1 (Synj1)和嗜内蛋白A1 (EndoA1),它们介导了内吞坑颈部形成和随后的内吞作用。鞘内注射Synj1和EndoA1 siRNA或shRNA可成功敲低DRG神经元中Synj1和Sh3gl2 (EndoA1) mRNA,抑制原感觉受体和离子通道激动剂诱导的雄性小鼠急性伤害感受,而不影响正常运动功能。Synj1和EndoA1敲低通过抑制突触前初级传入神经元的SV释放来抑制初级感觉神经元与脊髓背角I/II层神经元之间的突触传递。Synj1和EndoA1沉默在术后和癌性疼痛的临床前模型中逆转了机械性异常痛和热痛觉过敏。在这些模型中,动力蛋白1 (Dnm1)和接头相关蛋白激酶1 (AAK1)的敲低也减轻了疼痛样行为,这两种物质之前被认为是痛觉性脊髓回路中SV内吞的介质。因此,Synj1, EndoA1, Dnm1和AAK1介导SV循环,因此在伤害性脊髓回路中需要持续的突触传递。破坏SV循环有效地减少了伤害性传播,为缓解疼痛提供了一种新的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Endophilin A1 and synaptojanin 1-dependent endocytosis of synaptic vesicles in nociceptive spinal circuits maintains postoperative and cancer pain.

Abstract: The continued release of neurotransmitters from central projections of nociceptors during chronic pain requires synaptic vesicle (SV) recycling. Mediators of SV endocytosis and recycling are thus pivotal for sustained pain transmission in nociceptive spinal circuits. We hypothesized that disruption of SV endocytosis in dorsal root ganglia (DRG) nociceptors would impede synaptic transmission and thereby provide sustained relief from multimodalities of pain. Synaptojanin 1 (Synj1) and endophilin A1 (EndoA1), which mediate the neck formation of the endocytic pit and subsequent endocytosis, were detected in primary sensory neurons of mouse DRG by immunofluorescence and RNAScope in situ hybridization. Intrathecal injection of Synj1 and EndoA1 siRNA or shRNA successfully knocked down Synj1 and Sh3gl2 (EndoA1) mRNA in DRG neurons and suppressed acute nociception induced by agonists of pronociceptive receptors and ion channels in male mice, without affecting normal motor functions. Synj1 and EndoA1 knockdown inhibited synaptic transmission between primary sensory neurons and neurons in lamina I/II of the spinal cord dorsal horn by suppressing SV release from presynaptic primary afferent neurons. Synj1 and EndoA1 silencing reversed mechanical allodynia and thermal hyperalgesia in preclinical models of postoperative and cancer pain. Knockdown of dynamin 1 (Dnm1) and adaptor-associated protein kinase 1 (AAK1), previously characterized mediators of SV endocytosis in nociceptive spinal circuits, also alleviated pain-like behavior in these models. Thus, Synj1, EndoA1, Dnm1, and AAK1 mediate SV recycling and are thus required for sustained synaptic transmission in nociceptive spinal circuits. Disruption of SV recycling effectively reduces nociceptive transmission, providing a novel strategy for pain relief.

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来源期刊
PAIN®
PAIN® 医学-临床神经学
CiteScore
12.50
自引率
8.10%
发文量
242
审稿时长
9 months
期刊介绍: PAIN® is the official publication of the International Association for the Study of Pain and publishes original research on the nature,mechanisms and treatment of pain.PAIN® provides a forum for the dissemination of research in the basic and clinical sciences of multidisciplinary interest.
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