药理学
吡那考
二硒醚
细胞凋亡
氧化应激
前药
细胞保护
癌症研究
氧化磷酸化
纳米医学
细胞毒性
内吞作用
硫醇
医学
化学
生物化学
药物输送
自噬
肝功能
生物正交化学
脂质过氧化
肝损伤
材料科学
细胞
KEAP1型
活性氧
作者
Qiuyue Wang,Xi Zhang,Baomei Zhang,Zerui Li,Xinlei Meng,Xia Ren,Wenchu Li,Xutao Ma,Hui Xin,Zhiyu He
摘要
ABSTRACT Hydropersulfides, noted for their potent reducing and nucleophilic characteristics, protect cells against severe oxidative damage. Nevertheless, the free hydropersulfides groups exhibit instability in blood circulation, potentially eliciting disproportionation reactions among themselves. To address this issue, a ROS‐responsive bovine serum albumin‐derived hydropersulfide nanomedicine (BSA‐SS‐PBAP NPs) was engineered by a thiol‐disulfide exchange strategy that employed BSA‐SH with multiple exposed thiol groups and phenylboronic acid pinacol ester‐SS‐pyridine (PBAP‐SS‐Py). Upon intravenous administration in ischemia/reperfusion‐induced acute liver injury (ALI) mice at 0 h post‐reperfusion, BSA‐SS‐PBAP NPs exhibited excellent colloidal stability in the blood circulation, rapidly targeted the damaged liver, and were internalized by hepatocytes. Under pathological conditions with elevated ROS levels, the responsively released hydropersulfides reshaped the redox equilibrium by eliminating free radicals, replenishing the thiol pool, and restoring the GSH/GSSG cycle, therefore reducing lipid peroxide accumulation. This process subsequently suppressed the Bcl‐2/Bax/Cyt‐C/cleaved caspase‐3/9/12 apoptotic pathways (apoptosis reduced by over 90%), thereby rescuing dying hepatocytes, alleviating the inflammatory cascade, and ultimately improving liver function (AST and ALT normalized within 12 h). The therapeutic administration, administered 3 h post‐reperfusion, emulated a clinical regimen and displayed comparable hepatoprotective benefits. This BSA‐derived hydropersulfides prodrug platform holds tremendous translational potential for ALI and other oxidative stress‐related disease therapies.
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