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Molecules. 2024 May 21;29(11):2416. doi: 10.3390/molecules29112416.
2
Binding Mechanism and Surface-Enhanced Raman Scattering of the Antimicrobial Sulfathiazole on Gold Nanoparticles.抗菌药物磺胺噻唑在金纳米颗粒上的结合机制及表面增强拉曼散射
ACS Omega. 2023 Nov 7;8(46):43442-43453. doi: 10.1021/acsomega.3c01477. eCollection 2023 Nov 21.
3
Theoretical study of the binding mechanism between anticancerous drug mercaptopurine and gold nanoparticles using a cluster model.基于团簇模型的抗癌药物巯嘌呤与金纳米粒子结合机制的理论研究。
J Mol Model. 2023 Sep 8;29(10):307. doi: 10.1007/s00894-023-05716-z.
4
Density Functional Theory Computation and Machine Learning Studies of Interaction between Au Clusters and 20 Natural Amino Acid Molecules.金团簇与20种天然氨基酸分子相互作用的密度泛函理论计算及机器学习研究
ACS Omega. 2023 Jun 12;8(25):23024-23031. doi: 10.1021/acsomega.3c02195. eCollection 2023 Jun 27.
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Biomolecule-protected gold nanoclusters: synthesis and biomedical applications.生物分子保护的金纳米团簇:合成与生物医学应用。
J Mater Chem B. 2023 Jun 14;11(23):5051-5070. doi: 10.1039/d3tb00651d.
6
Ultrasmall Coinage Metal Nanoclusters as Promising Theranostic Probes for Biomedical Applications.超小金属纳米团簇作为有前途的用于生物医学应用的治疗诊断探针。
J Am Chem Soc. 2023 Jun 7;145(22):11879-11898. doi: 10.1021/jacs.3c02880. Epub 2023 May 18.
7
Binding mechanism and SERS spectra of 5-fluorouracil on gold clusters.5-氟尿嘧啶在金簇上的结合机制及表面增强拉曼光谱
Front Chem. 2022 Dec 5;10:1050423. doi: 10.3389/fchem.2022.1050423. eCollection 2022.
8
Biomarker sensing platforms based on fluorescent metal nanoclusters.基于荧光金属纳米团簇的生物标志物传感平台。
Nanoscale Adv. 2021 Jan 13;3(5):1331-1341. doi: 10.1039/d0na00796j. eCollection 2021 Mar 9.
9
Structure and luminescence of DNA-templated silver clusters.DNA模板化银簇的结构与发光
Nanoscale Adv. 2021 Jan 21;3(5):1230-1260. doi: 10.1039/d0na01005g. eCollection 2021 Mar 9.
10
Fluorescence Quenching of Tyrosine-Ag Nanoclusters by Metal Ions: Analytical and Physicochemical Assessment.金属离子对酪氨酸-Ag 纳米团簇的荧光猝灭:分析和物理化学评估。
Int J Mol Sci. 2022 Aug 29;23(17):9775. doi: 10.3390/ijms23179775.

硬币金属纳米团簇与低分子量生物化合物的相互作用。

Interactions of coinage metal nanoclusters with low-molecular-weight biocompounds.

作者信息

Buglak Andrey A, Nguyen Minh Tho

机构信息

Faculty of Physics, St. Petersburg State University, 199034 Saint-Petersburg, Russia.

Laboratory for Chemical Computation and Modeling, Institute for Computational Science and Artificial Intelligence, Van Lang University, Ho Chi Minh City, 70000 Vietnam.

出版信息

Biophys Rev. 2024 Jun 7;16(4):441-477. doi: 10.1007/s12551-024-01200-x. eCollection 2024 Aug.

DOI:10.1007/s12551-024-01200-x
PMID:39309127
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11415565/
Abstract

Nowadays, coinage metal nanoclusters (NCs) are largely presented in diagnostics, bioimaging, and biocatalysis due to their high biocompatibility, chemical stability, and sensitivity to surrounding biomolecules. Silver and gold NCs are usually characterized by intense luminescence and photostability, which is in great demand in the detection of organic compounds, ions, pH, temperature, etc. The experimental synthesis of metal NCs often occurs on biopolymer templates, mostly DNA and proteins. However, this review mainly focuses on the interactions with small biomolecules (SBMs) of a molecular weight less than 1000 Da: amino acids, nucleobases, thiolates, oligopeptides, etc. Such molecules can serve as the templates for an eco-friendly facile one-pot synthesis of biocompatible luminescent NCs. The latter aspect makes NCs suitable for diagnostics and intracellular bioimaging. Another important aspect is the interaction of clusters with biomarkers, which is largely exploited by nanosensors: biomarker detection often occurs through either fluorescence emission "turn-on" or "turn-off" mechanisms. Moreover, as theoretical studies show, electronic absorption spectra and Raman spectra of the metal-organic complexes allow efficient detection of various analytes. In this regard, both theoretical and experimental studies of SBM complexes with metal NCs are in great demand. Therefore, this review aims to summarize up-to-date studies on the interaction of small biomolecules with coinage metal NCs from both theoretical and experimental viewpoints.

摘要

如今,由于其高生物相容性、化学稳定性以及对周围生物分子的敏感性,硬币金属纳米团簇(NCs)在诊断、生物成像和生物催化领域得到了广泛应用。银和金纳米团簇通常具有强烈的发光和光稳定性,这在有机化合物、离子、pH值、温度等的检测中具有很大需求。金属纳米团簇的实验合成通常发生在生物聚合物模板上,主要是DNA和蛋白质。然而,本综述主要关注与分子量小于1000 Da的小生物分子(SBMs)的相互作用:氨基酸、核碱基、硫醇盐、寡肽等。这些分子可以作为模板,用于环保简便的一锅法合成生物相容性发光纳米团簇。后一个方面使得纳米团簇适用于诊断和细胞内生物成像。另一个重要方面是团簇与生物标志物的相互作用,纳米传感器在很大程度上利用了这一点:生物标志物的检测通常通过荧光发射“开启”或“关闭”机制进行。此外,正如理论研究所表明的,金属有机配合物的电子吸收光谱和拉曼光谱能够有效地检测各种分析物。在这方面,对SBM与金属纳米团簇配合物的理论和实验研究都有很大需求。因此,本综述旨在从理论和实验两个角度总结关于小生物分子与硬币金属纳米团簇相互作用的最新研究。