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◆ Acta pharmaceutica Sinica. B2026-08-01

Metal-drug coordinated nanozymes for ROS scavenging and Kupffer cell polarization to alleviate drug-induced liver injury.

Xiayun Chen, Ziqi Liang, Lichong Lu, Zhouchuan Shao, Wenhui Tang, Yiqi Liu, Jianqiao Li, Baizhong Chen, Enping Lai, Guodong Zheng, Minyan Wei, Shiying Li

原始摘要(英文原文)· Original abstract
Drug-induced liver injury (DILI) is a predominant cause of acute liver failure, intricately associated with excessive reactive oxygen species (ROS) production and the activation of inflammatory cascades. In this study, a metal-drug coordinated nanozyme (M-dCNs) is rationally designed to simultaneously scavenge ROS and polarize Kupffer cells to alleviate DILI. Specifically, the coordination between ferric ions (Fe3+) and the complementary therapeutic agents of hesperetin (HST) and KPLH (KPLH1130) facilitates the formation of M-dCNs with uniform particle distribution and enhances structural stability. Notably, M-dCNs exhibits intrinsic antioxidant enzyme-mimetic activity, efficiently neutralizing intracellular ROS in damaged hepatocytes and thereby disrupting apoptosis-related signaling pathways. In parallel, M-dCNs synergistically reprograms hepatic macrophages toward an anti-inflammatory phenotype, leading to a marked reduction in pro-inflammatory cytokines such as tumor necrosis factor α (TNF-α) and interleukin 1β (IL-1β), and ultimately suppressing inflammatory cascades. In vivo studies demonstrate the hepatoprotective potential and therapeutic efficacy of M-dCNs in attenuating oxidative stress, reducing inflammatory cell infiltration, and restoring liver function. Collectively, this work presents a promising strategy for the treatment of DILI via the concurrent modulation of redox homeostasis and inflammatory microenvironment.
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Metal-drug coordinated nanozymes for ROS scavenging and Kupffer cell polarization to alleviate drug-induced liver injury. — 科研速览 Science Skim