Targeting Rap1b signaling cascades with CDNF: Modulating Platelet Activation, Regulating Plasma Oxylipins and Mitigating Reperfusion Injury in stroke

脂质信号 血小板活化 再灌注损伤 炎症 血小板 细胞生物学 冲程(发动机) 化学 信号转导 药理学 血小板活化因子 医学 免疫学 生物 内科学 缺血 物理 热力学
作者
Jui‐Sheng Wu,Helike Lõhelaid,Chih‐Chin Shih,Hock‐Kean Liew,Vicki Wang,Wei-Fen Hu,Yuan-Hao Chen,Märt Saarma,Mikko Airavaara,Kuan-Yin Tseng
出处
期刊:Molecular Therapy [Elsevier]
标识
DOI:10.1016/j.ymthe.2024.09.005
摘要

Cerebral reperfusion injury in stroke, stemming from interconnected thrombotic and inflammatory signatures, often involves platelet activation, aggregation and its interaction with various immune cells, contributing to microvascular dysfunction. However, the regulatory mechanisms behind this platelet activation and the resulting inflammation are not well understood, complicating the development of effective stroke therapies. Utilizing animal models and platelets from hemorrhagic stroke patients, our research demonstrates that human cerebral dopamine neurotrophic factor (CDNF) acts as an endogenous antagonist, mitigating platelet aggregation and associated neuroinflammation. CDNF moderates mitochondrial membrane potential, reactive oxygen species production, and intracellular calcium in activated platelets by interfering with GTP binding to Rap1b, thereby reducing Rap1b activation and downregulating the Rap1b-MAPK-PLA2 signaling pathway, which decreases release of the pro-inflammatory mediator thromboxane A2. In addition, CDNF reduces the inflammatory response in BV2 microglial cells co-cultured with activated platelets. Consistent with ex vivo findings, subcutaneous administration of CDNF in a rat model of ischemic stroke significantly reduces platelet activation, aggregation, lipid mediator production, infarct volume, and neurological deficits. In summary, our study highlights CDNF as a promising therapeutic target for mitigating platelet-induced inflammation and enhancing recovery in stroke. Harnessing the CDNF pathway may offer a novel therapeutic strategy for stroke intervention.
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