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一种可见光激活的偶氮荧光开关,用于成像引导和光控释放抗真菌药物。

A visible light-activated azo-fluorescent switch for imaging-guided and light-controlled release of antimycotics.

机构信息

State Key Laboratory of Green Pesticide, International Joint Research Center for Intelligent Biosensor Technology and Health, College of Chemistry, Central China Normal University, Wuhan, PR China.

出版信息

Nat Commun. 2024 Oct 7;15(1):8670. doi: 10.1038/s41467-024-52855-9.

Abstract

Azo switches are widely employed as essential components in light-responsive systems. Here, we develop an azo-fluorescent switch that is visible light-responsive and its light-responsive processes can be monitored using fluorescence imaging. Visible light irradiation promotes isomerization, accompanied by changes in fluorescence that enable the process to be monitored through fluorescence imaging. Furthermore, we document that the nanocavity size of liposome encapsulated nanoparticles containing azo changes in the isomerization process and show that this change enables construction of a light-responsive nanoplatform for optically controlled release of antimycotics. Also, natural light activation of nanoparticles of the switch loaded with an antimycotic agent causes death of Rhizoctonia solani. The results show that these nanoparticles can double the holding period in comparison to small molecule antimycotics. The strategy used to design the imaging-guided light-controlled nano-antimycotic release system can be applicable to protocols for controlled delivery of a wide variety of drugs.

摘要

偶氮开关被广泛用作光响应系统中的基本组成部分。在这里,我们开发了一种对可见光响应的偶氮荧光开关,其光响应过程可以通过荧光成像进行监测。可见光照射促进了顺反异构化,伴随着荧光的变化,使荧光成像能够监测这一过程。此外,我们记录了含有偶氮的脂质体包封纳米粒子的纳米腔大小在异构化过程中发生变化,并表明这种变化可以构建一个光响应的纳米平台,用于光控释放抗真菌药物。此外,负载抗真菌药物的开关纳米粒子在自然光的激活下导致立枯丝核菌的死亡。结果表明,与小分子抗真菌药物相比,这些纳米粒子可以将持效期延长一倍。用于设计成像引导的光控纳米抗真菌药物释放系统的策略可适用于各种药物的控制释放方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6ed/11458760/be97f2e405b2/41467_2024_52855_Fig1_HTML.jpg

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