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单组分光响应荧光有机纳米粒子:用于改善生物医学和农用化学品应用的智能平台。

Single component photoresponsive fluorescent organic nanoparticles: a smart platform for improved biomedical and agrochemical applications.

机构信息

Department of Chemistry, Indian Institute of Technology Kharagpur, 721302 Kharagpur, West Bengal, India.

出版信息

Chem Commun (Camb). 2021 Feb 18;57(14):1715-1733. doi: 10.1039/d0cc07183h. Epub 2021 Jan 27.

Abstract

In the last two decades, light responsive nano drug delivery systems (DDSs) have gained considerable importance, particularly in the area of biology and medicine. In general, light responsive nano DDSs are bicomponent and constructed using two ingredients, namely a nanocarrier and a phototrigger. The synthesis of these bicomponent nano DDSs requires multiple steps, which limits their applications. Hence, we have reported single component light responsive nano DDSs using fluorescent organic nanoparticles (FONPs) which acted both as a nanocarrier and a phototrigger. This feature article provides an overview of recently developed light responsive single component FONPs and their applications in the regulated release of anticancer drugs, gasotransmitters, antibacterial agents, and pesticides, and also as efficient PDT agents. We have summarised the synthesis, characterisation, and photophysical, photochemical, and in vitro behaviours of these light responsive FONPs. In addition, we also discussed the advantages of using FONPs as a nano DDS for cellular studies like: excellent biocompatibility, efficient cellular internalisation, real time monitoring of the drug release ability inside the cells, and enhanced cytotoxicity due to regulated release of bioactive molecules inside the cells.

摘要

在过去的二十年中,光响应纳米药物递送系统(DDS)引起了相当大的重视,特别是在生物学和医学领域。一般来说,光响应纳米 DDS 是由两种成分组成的双组分,即纳米载体和光触发剂。这些双组分纳米 DDS 的合成需要多个步骤,这限制了它们的应用。因此,我们使用荧光有机纳米粒子(FONP)报道了单组分光响应纳米 DDS,这些 FONP 既可以作为纳米载体,也可以作为光触发剂。本文综述了最近开发的光响应单组分 FONP 及其在抗癌药物、气体递质、抗菌剂和杀虫剂的调控释放以及高效 PDT 剂中的应用。我们总结了这些光响应 FONP 的合成、表征以及光物理、光化学和体外行为。此外,我们还讨论了将 FONP 用作纳米 DDS 进行细胞研究的优点,例如:极好的生物相容性、高效的细胞内化、实时监测细胞内药物释放能力,以及由于细胞内生物活性分子的调控释放而增强的细胞毒性。

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