Full Active Nanoplatform Restores ROS Homeostasis for Synergistic Therapy of Fatty Liver Disease via Dual Endogenous–Exogenous Pathways

活性氧 药理学 纳米载体 抗氧化剂 线粒体 线粒体ROS 脂肪性肝炎 脂肪肝 化学 内生 谷胱甘肽 平衡 脂质过氧化 氧化应激 生物化学 氧化磷酸化 细胞生物学 脂质代谢 肝功能 生物 胆固醇 槲皮素 细胞内 纤维化 癌症研究 脂质氧化 炎症 线粒体内膜 胞浆 脂肪变性
作者
Ziyi Lin,Peng Xu,Yan Xu,Yixin Zheng,Huimin Li,Zixin Chen,Zhe Wang,Shaochen Song,Yuhao Liu,Zhao Yang,Ju Cui,Heyun Shen
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:17 (42): 58018-58030 被引量:3
标识
DOI:10.1021/acsami.5c15203
摘要

The therapeutic potential of nanomaterials in metabolic dysfunction-associated steatohepatitis (MASH) management remains limited by suboptimal drug loading efficiency and insufficient modulation of the disease's multifactorial pathogenesis. To address these issues, we developed a fully active pharmaceutical ingredient (API)-based nanodrug designed for synergistic MASH therapy through three integrated mechanisms: dual modulation of reactive oxygen species (ROS) homeostasis via endogenous and exogenous pathways, mitigation of pathological lipid accumulation, and suppression of inflammatory cascades. The nanodrug (QRDP) system utilizes arginine-modified polydopamine as both a nanocarrier and intrinsic antioxidant and codelivery of quercetin and the mitochondrial uncoupler 2,4-dinitrophenol. QRDP eliminates more than 80% of ROS and increases hepatic glutathione levels by 1.5-fold through exogenous antioxidant delivery and endogenous ROS suppression via regulating mitochondrial proton channels. Additionally, QRDP-mediated mitochondrial uncoupling reduced intracellular lipid overload by 90% through inhibition of ATP synthesis, accompanied by significant decreases in serum total cholesterol (39%), triglycerides (30%), and free fatty acids (59%). Furthermore, QRDP significantly downregulated pro-inflammatory cytokines (TNF-α, IL-6, and IL-1β) in vitro and in vivo, while restoring anti-inflammatory markers (Arg-1 and IL-10) to over 78% of baseline levels. In high-fat diet (HFD)-induced MASH mice, QRDP treatment not only attenuated hepatic fibrosis and normalized liver function but also provided substantial protection against lipotoxicity. This full-API nanotherapeutic platform represents a safe and effective multitarget strategy for comprehensive MASH intervention.
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