纳米技术
计算机科学
生物安全
领域(数学)
医学研究
系统工程
纳米医学
风险分析(工程)
生化工程
临床实习
工程类
系统回顾
管理科学
评论文章
作者
Yijun Fang,Yao Liu,Zhibing Tang,Ziyu Zhang,Xiaojun Yang,Xiangyi Li,Li Zhao,Yu Chong
标识
DOI:10.1002/chem.202503589
摘要
Palladium (Pd)-based nanozymes have emerged as a prominent research focus in the field of noble metal nanozymes due to their tunable d-band centers, diverse facet structures, and exceptional biocompatibility. Despite the abundance of studies demonstrating the versatile utilities of Pd-based nanozymes with varied morphologies and catalytic activities in biomedical settings, the absence of a systematic and comprehensive summary of these research advances impedes their further development and clinical translation. In this review, we first briefly discuss the structural design principles and synthesis strategies of both elementary and composite Pd-based nanozymes. Subsequently, an in-depth analysis is conducted on their enzyme-like activities (e.g., peroxidase-like, oxidase-like, catalase-like) and corresponding modulation approaches (e.g., structural engineering, surface modification, composite construction). Building on this foundation, we highlight the cutting-edge biomedical applications across multiple scenarios, including medical diagnostics, disease treatment (e.g., cancer therapy, anti-inflammation) and radiation-related biomedical applications. Furthermore, the biosafety evaluation of Pd-based nanozymes, a critical prerequisite for clinical translation, is emphasized. Finally, this review summarizes the limitations of current research and identifies critical bottlenecks that need to be addressed to advance the future development and practical application of Pd-based nanozymes.
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