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异常胰岛素样生长因子 1 信号通过调节雷帕霉素相关自噬和神经炎症来调控小鼠的神经病理性疼痛。

Abnormal Insulin-like Growth Factor 1 Signaling Regulates Neuropathic Pain by Mediating the Mechanistic Target of Rapamycin-Related Autophagy and Neuroinflammation in Mice.

机构信息

Department of Anesthesiology, Nan Fang Hospital, Southern Medical University, Guangzhou 510515, Guangdong, China.

Department of Anesthesiology, The First People's Hospital of Foshan, 81# North of Ling Nan Road, Foshan 528000, Guangdong, China.

出版信息

ACS Chem Neurosci. 2021 Aug 4;12(15):2917-2928. doi: 10.1021/acschemneuro.1c00271. Epub 2021 Jul 15.

Abstract

Neuropathic pain is a chronic condition with little specific treatment. Insulin-like growth factor 1 (IGF1), interacting with its receptor, IGF1R, serves a vital role in neuronal and brain functions such as autophagy and neuroinflammation. Yet, the function of spinal IGF1/IGF1R in neuropathic pain is unclear. Here, we examined whether and how spinal IGF1 signaling affects pain-like behaviors in mice with chronic constriction injury (CCI) of the sciatic nerve. To corroborate the role of IGF1, we injected intrathecally IGF1R inhibitor (nvp-aew541) or anti-IGF1 neutralizing antibodies. We found that IGF1 (derived from astrocytes) in the lumbar cord increased along with the neuropathic pain induced by CCI. IGF1R was predominantly expressed on neurons. IGF1R antagonism or IGF1 neutralization attenuated pain behaviors induced by CCI, relieved mTOR-related suppression of autophagy, and mitigated neuroinflammation in the spinal cord. These findings reveal that the abnormal IGF1/IGF1R signaling contributes to neuropathic pain by exacerbating autophagy dysfunction and neuroinflammation.

摘要

神经病理性疼痛是一种慢性疾病,治疗方法有限。胰岛素样生长因子 1(IGF1)与其受体 IGF1R 相互作用,在神经元和大脑功能(如自噬和神经炎症)中发挥重要作用。然而,脊髓 IGF1/IGF1R 在神经病理性疼痛中的作用尚不清楚。在这里,我们研究了脊髓 IGF1 信号是否以及如何影响坐骨神经慢性缩窄性损伤(CCI)小鼠的痛觉行为。为了证实 IGF1 的作用,我们鞘内注射 IGF1R 抑制剂(nvp-aew541)或抗 IGF1 中和抗体。我们发现,CCI 诱导的神经病理性疼痛时,腰段脊髓中的 IGF1(源自星形胶质细胞)增加。IGF1R 主要表达于神经元上。IGF1R 拮抗或 IGF1 中和减轻了 CCI 诱导的痛觉行为,缓解了 mTOR 相关的自噬抑制,并减轻了脊髓中的神经炎症。这些发现表明,异常的 IGF1/IGF1R 信号通过加重自噬功能障碍和神经炎症导致神经病理性疼痛。

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