化学
阻塞(统计)
神经保护
内吞作用
AMPA受体
治疗窗口
药理学
蛋白质亚单位
缺血
冲程(发动机)
缺血性中风
缺血性损伤
谷氨酸受体
肽
脑梗塞
美金刚
大脑中动脉
受体
抑制性突触后电位
脑缺血
神经科学
作者
Yujiao Qin,Qingye Zhu,Zhixiang Yan,Xin Chen,Jiacheng Wang,Xinru Zhang,Ruiguo Liang,Jiaying Han,Yi Mao,Xianglong Wang,Han Ju,Jie Zhou,Ping Li,Mingxin Dong
标识
DOI:10.1021/acs.jmedchem.5c03140
摘要
Targeting the interaction between the C-terminal domain of the GluA2 subunit of AMPA receptors and BRAG2 presents a highly promising therapeutic approach for acute ischemic stroke. The membrane-permeable peptide Tat-GluA2-3Y has shown potential by competitively binding to BRAG2 to inhibit GluA2 endocytosis; however, its clinical application is limited due to poor stability in vivo. To address this limitation, we developed stapled peptides based on GluA2-3Y, leading to the identification of the lead compound P3LC7LC-P, which exhibits high-affinity binding to BRAG2. Functionally, P3LC7LC-P offers strong neuroprotection in two injury models: oxygen-glucose deprivation-induced and glutamate-induced neurotoxicity. Notably, P3LC7LC-P significantly improved plasma stability compared to Tat-GluA2-3Y, with a half-life exceeding 372.7 min. In the transient middle cerebral artery occlusion (tMCAO) model, P3LC7LC-P reduced cerebral infarction areas to 21.00% at a dose of 8 mg/kg. These findings highlight P3LC7LC-P as a promising candidate for the development of novel therapies for ischemic stroke.
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