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糖酵解抑制通过促进髓系来源的抑制细胞的功能改善缺血性脑卒中后的脑损伤。

Glycolysis inhibition ameliorates brain injury after ischemic stroke by promoting the function of myeloid-derived suppressor cells.

机构信息

The Sixth Affiliated Hospital of Guangzhou Medical University, Qingyuan People's Hospital, Guangzhou Medical University, Guangzhou, China; School of Basic Medical Sciences, Guangzhou Medical University, Guangzhou, China; State Key Lab of Respiratory Disease, Guangzhou Medical University, Guangzhou, China.

The Sixth Affiliated Hospital of Guangzhou Medical University, Qingyuan People's Hospital, Guangzhou Medical University, Guangzhou, China; School of Basic Medical Sciences, Guangzhou Medical University, Guangzhou, China; State Key Lab of Respiratory Disease, Guangzhou Medical University, Guangzhou, China; Department of Radiology, The Third Affiliated Hospital, Sun Yat-Sen University, Guangzhou, China.

出版信息

Pharmacol Res. 2022 May;179:106208. doi: 10.1016/j.phrs.2022.106208. Epub 2022 Apr 6.

Abstract

Myeloid-derived suppressor cells (MDSCs) are a heterogeneous population of immature myeloid cells which are immunosuppressive and glycolytically inactive in inflammatory diseases. However, it is unknown whether MDSCs contribute to ischemic stroke and how glycolysis regulates MDSC function in such a context. Here, we showed that MDSCs arise in the blood of patients at early phase of stroke. Similar results were observed in temporary middle cerebral artery occlusion-induced cerebral ischemic mice. Pharmaceutical exhaustion of MDSCs aggravated, while adoptive transfer of MDSCs rescued the ischemic brain injury. However, the differentiation of MDSCs into immunopotent myeloid cells which coincides with increased glycolysis was observed in the context of ischemic stroke. Mechanistically, the glycolytic product lactate autonomously induces MDSC differentiation through activation of mTORC1, and paracrinely activates Th1 and Th17 cells. Moreover, gene knockout or inhibition of the glycolytic enzyme PFKFB3 increased endogenous MDSCs by blocking their differentiation, and improved ischemic brain injury. Collectively, these results revealed that glycolytic switch decreases the immunosuppressive and neuroprotective role of MDSCs in ischemic stroke and pharmacological targeting MDSCs via glycolysis inhibition constitutes a promising therapeutic strategy for ischemic stroke.

摘要

髓系来源的抑制性细胞(MDSCs)是一群异质性的未成熟髓系细胞,在炎症性疾病中具有免疫抑制作用且糖酵解活性较低。然而,目前尚不清楚 MDSCs 是否会导致缺血性中风,以及糖酵解在这种情况下如何调节 MDSC 的功能。在这里,我们发现 MDSCs 会在中风早期出现在患者的血液中。在短暂性大脑中动脉闭塞诱导的脑缺血小鼠中也观察到了类似的结果。通过药物耗尽 MDSCs 会加重缺血性脑损伤,而过继转移 MDSCs 则可以挽救缺血性脑损伤。然而,在缺血性中风的情况下,我们观察到 MDSCs 分化为具有免疫功能的髓样细胞,同时伴随着糖酵解的增加。从机制上讲,糖酵解产物乳酸通过激活 mTORC1 自主诱导 MDSC 分化,并通过旁分泌激活 Th1 和 Th17 细胞。此外,通过抑制糖酵解酶 PFKFB3 的基因敲除或抑制作用,通过阻止其分化,增加内源性 MDSCs,并改善缺血性脑损伤。总之,这些结果表明,糖酵解开关降低了 MDSCs 在缺血性中风中的免疫抑制和神经保护作用,通过糖酵解抑制靶向 MDSCs 的药物治疗可能成为缺血性中风的一种有前途的治疗策略。

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