Sirtuin 5抑制剂MC3482通过上调Annexin-A1的琥珀酰化水平改善缺血性脑卒中后小胶质细胞诱发的神经炎症

IF 6.2
Qian Xia, Yongbo Yu, Gaofeng Zhan, Xue Zhang, Shuai Gao, Tangrui Han, Yilin Zhao, Xing Li, Yonghong Wang
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引用次数: 0

摘要

我们在之前的研究中得出结论,缺血性脑卒中后,小胶质细胞中的sirtuin 5(SIRT5)高度表达,这诱发了过度的神经炎症和神经元损伤。因此,以 SIRT5 为靶点的干预措施应能减轻神经炎症并防止缺血性脑损伤。在这里,我们发现使用特异性 SIRT5 抑制剂 MC3482 可以减轻小胶质细胞诱导的神经炎症,并改善中风小鼠模型的长期神经功能。小鼠在大脑中动脉闭塞发病后,每天通过侧脑室注射给药,连续7天服用药物或2毫克/千克MC3482。结果通过一系列测试进行评估,包括神经系统结果评分、陈述性记忆、感觉运动测试、焦虑样行为和一系列炎症因子。我们观察到,在缺血性中风的早期阶段,小鼠接受 MC3482 治疗后,梗死面积和炎症因子明显减少,长期神经功能也得到改善。从机理上讲,MC3482能抑制annexin-A1的脱琥珀酰化,从而促进其膜募集和细胞外分泌,进而缓解缺血性脑卒中期间的神经炎症。根据我们的研究结果,MC3482有望作为一种抗缺血性中风的治疗药物,直接针对疾病的潜在因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Sirtuin 5 Inhibitor MC3482 Ameliorates Microglia‑induced Neuroinflammation Following Ischaemic Stroke by Upregulating the Succinylation Level of Annexin-A1.

The Sirtuin 5 Inhibitor MC3482 Ameliorates Microglia‑induced Neuroinflammation Following Ischaemic Stroke by Upregulating the Succinylation Level of Annexin-A1.

In our previous study, we concluded that sirtuin 5 (SIRT5) was highly expressed in microglia following ischaemic stroke, which induced excessive neuroinflammation and neuronal injury. Therefore, SIRT5-targeting interventions should reduce neuroinflammation and protect against ischaemic brain injury. Here, we showed that treatment with a specific SIRT5 inhibitor, MC3482, alleviated microglia-induced neuroinflammation and improved long-term neurological function in a mouse model of stroke. The mice were administrated with either vehicle or 2 mg/kg MC3482 daily for 7 days via lateral ventricular injection following the onset of middle cerebral artery occlusion. The outcome was assessed by a panel of tests, including a neurological outcome score, declarative memory, sensorimotor tests, anxiety-like behavior and a series of inflammatory factors. We observed a significant reduction of infarct size and inflammatory factors, and the improvement of long-term neurological function in the early stages during ischaemic stroke when the mice were treated with MC3482. Mechanistically, the administration of MC3482 suppressed the desuccinylation of annexin-A1, thereby promoting its membrane recruitment and extracellular secretion, which in turn alleviated neuroinflammation during ischaemic stroke. Based on our findings, MC3482 offers promise as an anti-ischaemic stroke treatment that targets directly the disease's underlying factors.

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