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Kir4.1 在自闭症谱系障碍 BTBR 小鼠模型痛觉迟钝中的作用。

Involvement of Kir4.1 in pain insensitivity of the BTBR mouse model of autism spectrum disorder.

机构信息

Department of Children's and Adolescent Health, Public Health College, Harbin Medical University, Harbin, China.

Department of Children's and Adolescent Health, Public Health College, Harbin Medical University, Harbin, China.

出版信息

Biochim Biophys Acta Mol Basis Dis. 2023 Jun;1869(5):166700. doi: 10.1016/j.bbadis.2023.166700. Epub 2023 Mar 28.

Abstract

Autism spectrum disorder (ASD) is a severe neurodevelopmental disorder. Abnormal pain sensation is a common clinical symptom of ASD that seriously affects the quality of life of patients with ASD and their families. However, the underlying mechanism is unclear. It is believed to be related to the excitability of neurons and the expression of ion channels. Herein, we confirmed that baseline pain and Complete Freund's adjuvant (CFA)-induced chronic inflammatory pain were impaired in the BTBR T+ Itpr3tf/J (BTBR) mouse model of ASD. RNA sequencing (RNA-seq) analyses of the dorsal root ganglia (DRG), which are closely related to pain in ASD model mice, revealed that high expression of KCNJ10 (encoding Kir4.1) might be an important factor in ASD pain sensation abnormalities. The levels of Kir4.1 were further verified by western blotting, RT-qPCR, and immunofluorescence. By inhibiting Kir4.1, the pain insensitivity of BTBR mice improved, confirming that a high expression level of Kir4.1 was highly correlated with decreased pain sensitivity in ASD. Meanwhile, we found that the anxiety behaviours and the social novelty recognition were changed after CFA induced inflammatory pain. And after inhibiting Kir4.1, the stereotyped behaviours and social novelty recognition of BTBR mice were also improved. Further, we found that the expression levels of glutamate transporters, excitatory amino acid transporter 1 (EAAT1), and excitatory amino acid transporter 2 (EAAT2) were increased in the DRG of BTBR mice but decreased after inhibiting Kir4.1. This suggests that Kir4.1 may play a key role in the improvement of pain insensitivity in ASD by regulating glutamate transporters. In conclusion, our findings revealed the possible mechanism and role of Kir4.1 in the pain insensitivity in ASD, using bioinformatics analyses and animal experiments, and provided a theoretical basis for clinically targeted intervention in ASD.

摘要

自闭症谱系障碍(ASD)是一种严重的神经发育障碍。异常的疼痛感知是 ASD 的常见临床症状,严重影响 ASD 患者及其家庭的生活质量。然而,其潜在机制尚不清楚。据信与神经元的兴奋性和离子通道的表达有关。在此,我们证实自闭症模型小鼠的基础疼痛和完全弗氏佐剂(CFA)诱导的慢性炎症性疼痛受损BTBR T+ Itpr3tf/J(BTBR)小鼠模型。与 ASD 模型小鼠疼痛密切相关的背根神经节(DRG)的 RNA 测序(RNA-seq)分析显示,高表达 KCNJ10(编码 Kir4.1)可能是 ASD 疼痛感觉异常的重要因素。通过 Western blot、RT-qPCR 和免疫荧光进一步验证了 Kir4.1 的水平。通过抑制 Kir4.1,BTBR 小鼠的疼痛不敏感性得到改善,证实 Kir4.1 的高表达水平与 ASD 中疼痛敏感性降低高度相关。同时,我们发现 CFA 诱导炎症性疼痛后焦虑行为和社会新异性识别发生改变,抑制 Kir4.1 后 BTBR 小鼠刻板行为和社会新异性识别也得到改善。此外,我们发现谷氨酸转运体、兴奋性氨基酸转运体 1(EAAT1)和兴奋性氨基酸转运体 2(EAAT2)的表达水平在 BTBR 小鼠的 DRG 中升高,但抑制 Kir4.1 后降低。这表明 Kir4.1 可能通过调节谷氨酸转运体在 ASD 中疼痛不敏感性的改善中发挥关键作用。总之,我们的研究结果通过生物信息学分析和动物实验揭示了 Kir4.1 在 ASD 中疼痛不敏感性的可能机制和作用,为临床上针对 ASD 的靶向干预提供了理论依据。

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