Overexpressed CD73 attenuates GSDMD-mediated astrocyte pyroptosis induced by cerebral ischemia-reperfusion injury through the A2B/NF-κB pathway

IF 4.6 2区 医学 Q1 NEUROSCIENCES
Hao Zhuang , Wen Lei , Qiang Wu , Songyun Zhao , Yunxuan Zhao , Shizhe Zhang , Ning Zhao , Jun Sun , Yuankun Liu
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引用次数: 0

Abstract

Ischemic stroke, resulting from the blockage or narrowing of cerebral vessels, causes brain tissue damage due to ischemia and hypoxia. Although reperfusion therapy is essential to restore blood flow, it may also result in reperfusion injury, causing secondary damage through mechanisms like oxidative stress, inflammation, and excitotoxicity. These effects significantly impact astrocytes, neurons, and endothelial cells, aggravating brain injury and disrupting the blood-brain barrier. CD73, an ectoenzyme that regulates adenosine production through ATP hydrolysis, plays a critical role in purinergic signaling and neuroprotection. During ischemic stroke, CD73 expression is dynamically regulated in response to ischemia and inflammation. It catalyzes the conversion of AMP to adenosine, which activates adenosine receptors to exert neuroprotective effects. Targeting the CD73-adenosine pathway presents a potential therapeutic strategy for mitigating ischemic stroke damage. Pyroptosis, a highly inflammatory form of programmed cell death mediated by inflammasomes like NLRP3 and caspases, plays a significant role in cerebral ischemia-reperfusion injury. Astrocytes, the most abundant CNS cells, contribute to both neuroprotection and injury, with pyroptosis exacerbating inflammation and brain damage. Regulating astrocyte pyroptosis is a promising therapeutic target. Our study investigates CD73's role in regulating astrocyte pyroptosis during ischemia-reperfusion injury. Using CD73 knockout mice and overexpression models, along with in vitro oxygen-glucose deprivation/reperfusion experiments, we found that CD73 overexpression reduces GSDMD-mediated astrocyte pyroptosis via the A2B/NF-κB pathway. These findings offer a novel approach to reducing neuroinflammation, protecting astrocytes, and improving outcomes in ischemic stroke.
过表达的CD73通过A2B/NF-κB途径减弱gsdmd介导的脑缺血再灌注损伤引起的星形细胞凋亡。
缺血性中风是由脑血管堵塞或狭窄引起的,由于缺血和缺氧导致脑组织损伤。虽然再灌注治疗对恢复血流至关重要,但它也可能导致再灌注损伤,通过氧化应激、炎症和兴奋毒性等机制引起继发性损伤。这些影响显著影响星形胶质细胞、神经元和内皮细胞,加重脑损伤并破坏血脑屏障。CD73是一种通过ATP水解调节腺苷产生的外酶,在嘌呤能信号传导和神经保护中起关键作用。在缺血性脑卒中中,CD73的表达在缺血和炎症反应中受到动态调节。它催化AMP转化为腺苷,激活腺苷受体发挥神经保护作用。靶向cd73 -腺苷途径为减轻缺血性卒中损伤提供了一种潜在的治疗策略。焦亡是一种由NLRP3和caspases等炎性小体介导的高度炎症性细胞程序性死亡,在脑缺血再灌注损伤中起重要作用。星形胶质细胞是最丰富的中枢神经系统细胞,对神经保护和损伤都有贡献,焦亡会加剧炎症和脑损伤。调控星形胶质细胞焦亡是一个很有前景的治疗靶点。本研究探讨了CD73在缺血再灌注损伤中对星形细胞凋亡的调控作用。通过CD73敲除小鼠和过表达模型,以及体外氧糖剥夺/再灌注实验,我们发现CD73过表达通过A2B/NF-κB途径降低gsdmd介导的星形胶质细胞焦亡。这些发现为减少缺血性卒中的神经炎症、保护星形胶质细胞和改善预后提供了一种新的方法。
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来源期刊
Experimental Neurology
Experimental Neurology 医学-神经科学
CiteScore
10.10
自引率
3.80%
发文量
258
审稿时长
42 days
期刊介绍: Experimental Neurology, a Journal of Neuroscience Research, publishes original research in neuroscience with a particular emphasis on novel findings in neural development, regeneration, plasticity and transplantation. The journal has focused on research concerning basic mechanisms underlying neurological disorders.
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