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聚乙二醇化卟啉修饰的银纳米颗粒作为潜在的诊疗和传感剂

Silver Nanoparticles Decorated with PEGylated Porphyrins as Potential Theranostic and Sensing Agents.

作者信息

Nicosia Angelo, Abbadessa Antonio, Vento Fabiana, Mazzaglia Antonino, Mineo Placido Giuseppe

机构信息

Department of Chemical Sciences and INSTM UdR of Catania, University of Catania, V.le A. Doria 6, 95125 Catania, Italy.

CNR-ISMN, Istituto per lo Studio dei Materiali Nanostrutturati, V. le F. Stagno d'Alcontres 31, 98166 Messina, Italy.

出版信息

Materials (Basel). 2021 May 23;14(11):2764. doi: 10.3390/ma14112764.

Abstract

Silver nanoparticles (AgNPs) stand out over other metal nanoparticles thanks to their peculiar bactericidal and spectroscopic properties. Tunability of the AgNPs chemical-physical properties could be provided through their organic covalent coating. On the other hand, PEGylated porphyrin derivatives are versatile heteromacrocycles investigated for uses in the biomedical field as cytotoxic and tracking agents, but also as sensors. In this work, an easy multi-step approach was employed to produce coated silver nanoparticles. Specifically, the AgNPs were functionalized with 5,10,15-[-(ω-methoxy-polyethyleneoxy)phenyl]-20-(-hydroxyphenyl)-porphyrin (P(PEG350)), using chloropropanethiol as a coupling agent. The P(PEG350) was structurally characterized through MALDI-TOF mass spectrometry, NMR spectroscopy and thermal analyses. The functionalization of AgNPs was monitored step-by-step employing UV-Vis spectroscopy, dynamic light scattering and thermogravimetric techniques. HRTEM and STEM measurements were used to investigate the morphology and the composition of the resulting nanostructured system (AgNP@P(PEG350)), observing a long-range alignment of the outer porphyrin layer. The AgNP@P(PEG350) combines the features of the P(PEG350) with those of AgNPs, producing a potential multifunctional theranostic tool. The nanosystem revealed itself suitable as a removable pH sensor in aqueous solutions and potentially feasible for biological environment applications.

摘要

由于其独特的杀菌和光谱特性,银纳米颗粒(AgNPs)比其他金属纳米颗粒更具优势。通过有机共价涂层可以实现AgNPs化学物理性质的可调性。另一方面,聚乙二醇化卟啉衍生物是多功能杂大环化合物,已被研究用于生物医学领域,作为细胞毒性和追踪剂,也用作传感器。在这项工作中,采用了一种简单的多步方法来制备包覆银纳米颗粒。具体而言,使用氯丙烷硫醇作为偶联剂,用5,10,15-[-(ω-甲氧基-聚乙氧基)苯基]-20-(-羟基苯基)-卟啉(P(PEG350))对AgNPs进行功能化。通过基质辅助激光解吸电离飞行时间质谱、核磁共振光谱和热分析对P(PEG350)进行了结构表征。采用紫外-可见光谱、动态光散射和热重技术逐步监测AgNPs的功能化过程。使用高分辨率透射电子显微镜和扫描透射电子显微镜测量来研究所得纳米结构系统(AgNP@P(PEG350))的形态和组成,观察到外层卟啉层的长程排列。AgNP@P(PEG350)将P(PEG350)的特性与AgNPs的特性结合起来,产生了一种潜在的多功能治疗诊断工具。该纳米系统显示出适合作为水溶液中可移除的pH传感器,并且在生物环境应用中可能是可行的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83bf/8197077/239a3a048cae/materials-14-02764-g001.jpg

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