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通过壳聚糖共轭打破卤代荧光素的光稳定性和pH限制

Breaking the Photostability and pH Limitation of Halo-Fluoresceins through Chitosan Conjugation.

作者信息

Wang Ying, Lang Yunhe, Yang Qin, Wu Peng

机构信息

Analytical and Testing Centre, State Key Laboratory of Hydraulics and Mountain River Engineering, Sichuan University, Chengdu, 610064, China.

College of Biomass Science and Engineering, Sichuan University, Chengdu, 610064, China.

出版信息

Adv Mater. 2023 Apr;35(14):e2210956. doi: 10.1002/adma.202210956. Epub 2023 Feb 23.

DOI:10.1002/adma.202210956
PMID:36738115
Abstract

Halo-fluoresceins are widely used in cell and tissue staining, intracellular sensing, and photodynamic therapy, but their notorious photo-instability and pH dependence restrict their applications, especially in long-term visible light exposure and acidic environments. To overcome these limitations, here a strategy is proposed of conjugating chitosan with the carboxyl group of halo-fluorescein (CS-halofluorescein). The cross-linked polymer chains and the hydrogen-bonding networks of chitosan help shielding out O from direct attacking the encapsulated halo-fluoresceins, leading to a two orders of magnitude lower photobleaching rate. Meanwhile, the condensation of primary amines of chitosan with the carboxyl group on halo-fluorescein blocks the pH-dependent intramolecular spirocyclization, leading to pH-inert fluorescein derivatives. The greatly improved photostability and pH inertness of CS-halofluoresceins can be harvested for aerobic photoredox synthesis and photodynamic bacteria inactivation in extremely acidic media. Moreover, food additive nature of chitosan and erythrosine (TIF) and excellent film-forming property of chitosan allow coating-based light-assisted preservation of perishable fruits, leading to appreciably extended shelf life of fruits (e.g., perishable strawberry, rt: > 3 days; 4 °C: > 5 days).

摘要

卤代荧光素广泛应用于细胞和组织染色、细胞内传感及光动力治疗,但它们众所周知的光不稳定和pH依赖性限制了其应用,尤其是在长期可见光照射和酸性环境中。为克服这些限制,本文提出了一种将壳聚糖与卤代荧光素的羧基共轭的策略(CS-卤代荧光素)。壳聚糖的交联聚合物链和氢键网络有助于屏蔽氧气直接攻击被包裹的卤代荧光素,从而使光漂白速率降低两个数量级。同时,壳聚糖的伯胺与卤代荧光素上的羧基缩合,阻断了pH依赖性分子内螺环化,产生了对pH不敏感的荧光素衍生物。CS-卤代荧光素大大提高的光稳定性和pH惰性可用于在极端酸性介质中的需氧光氧化还原合成和光动力细菌灭活。此外,壳聚糖和赤藓红(TIF)的食品添加剂性质以及壳聚糖优异的成膜性能使得基于涂层的易腐水果光辅助保鲜成为可能,从而显著延长水果的保质期(例如,易腐草莓,室温:>3天;4℃:>5天)。

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