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谷胱甘肽:一种用于功能性金属纳米材料的天然存在的三肽。

Glutathione: a naturally occurring tripeptide for functional metal nanomaterials.

作者信息

Yang Zhucheng, Lyu Jingkuan, Qian Jing, Wang Yifan, Liu Zhenghan, Yao Qiaofeng, Chen Tiankai, Cao Yitao, Xie Jianping

机构信息

Joint School of National University of Singapore and Tianjin University, International Campus of Tianjin University Fuzhou 350207 P. R. China.

Department of Chemical and Biomolecular Engineering, National University of Singapore Singapore 117585 Singapore

出版信息

Chem Sci. 2025 Mar 13;16(16):6542-6572. doi: 10.1039/d4sc08599j. eCollection 2025 Apr 16.

Abstract

Glutathione (GSH), a naturally occurring tripeptide, plays an important role as an intracellular antioxidant in the physiological microenvironment and participates in redox balance, detoxification, and cellular and disease regulation. The unique structural features of GSH, including the reductive thiol and multiple coordination sites (carboxyl and amino group), make it a significant molecule not only in the physiological context but also as a ligand in the development of functional metal nanomaterials. In this context, GSH's role as a protective ligand and reducing agent in surface etching and ligand exchange reactions has been explored at the molecular level, expanding the diversity of GSH-protected metal nanomaterials. With photoluminescence (PL) as one of its most intriguing properties, investigations into GSH's influence on PL properties emphasize its multifaceted coordination capabilities in surface coating, charge transfer from electron-rich functional groups, chirality arising from its unique structure, and available conjugation sites. Moreover, the biocompatibility of GSH, combined with the synergistic effect of metal components, renders GSH-protected nanomaterials an "Inseparable Duo" highly suited for applications in bio-sensing, bio-imaging PL radiative decay and anti-cancer bio-therapies through photothermal therapy, photodynamic therapy, and radiotherapy. By exploring the multifaceted roles of GSH, this aims to highlight pathways including the encouragement of deeper synthetic exploration, innovative design at the bio-nano interface, and expanded nanobiomedical applications.

摘要

谷胱甘肽(GSH)是一种天然存在的三肽,在生理微环境中作为细胞内抗氧化剂发挥重要作用,并参与氧化还原平衡、解毒以及细胞和疾病调节。GSH独特的结构特征,包括还原性硫醇和多个配位位点(羧基和氨基),使其不仅在生理环境中是一种重要分子,而且在功能性金属纳米材料的开发中作为配体也具有重要意义。在此背景下,已在分子水平上探索了GSH在表面蚀刻和配体交换反应中作为保护配体和还原剂的作用,扩大了GSH保护的金属纳米材料的多样性。由于光致发光(PL)是其最引人入胜的特性之一,对GSH对PL特性影响的研究强调了其在表面涂层中的多方面配位能力、来自富电子官能团的电荷转移、因其独特结构产生的手性以及可用的共轭位点。此外,GSH的生物相容性与金属成分的协同效应相结合,使GSH保护的纳米材料成为一种“不可分割的组合”,非常适合通过光热疗法、光动力疗法和放射疗法应用于生物传感、生物成像、PL辐射衰减和抗癌生物治疗。通过探索GSH的多方面作用,本文旨在突出包括鼓励更深入的合成探索、生物纳米界面的创新设计以及扩大纳米生物医学应用在内的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e18c/12001903/3b64f699c61e/d4sc08599j-f1.jpg

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