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通过与pH响应性且生物相容的聚(烯丙基氯化铵)共价结合增强6-羧基蝶呤的光敏性质。

Enhancement of the Photosensitizing Properties of 6-Carboxypterin through Covalent Binding to the pH-Responsive and Biocompatible Poly(allylamine Hydrochloride).

作者信息

Armijos-Capa Gerardo, Tuninetti Jimena S, Thomas Andrés H, Serrano Mariana P

机构信息

Departamento de Química, Facultad de Ciencias Exactas, Universidad Nacional de La Plata, CCT La Plata-CONICET, Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas (INIFTA), La Plata B1904DPI, Argentina.

出版信息

ACS Appl Mater Interfaces. 2024 Jan 24;16(3):3922-3934. doi: 10.1021/acsami.3c13121. Epub 2023 Dec 7.

Abstract

A polymeric photosensitizer was synthesized through covalent attachment of the natural photosensitizer 6-carboxypterin (Cap) to a poly(allylamine hydrochloride) (PAH) polymer. The optimization of the functionalization steps and purification procedure is described. The overall yield of the functionalization reaction was 67% to generate the modified polymer (PAH-Cap), featuring a Cap substitution degree of approximately 1% and advantageous spectroscopic properties. Photosensitizing properties of PAH-Cap were observed to occur via both photooxidation mechanisms, i.e., type I and type II. This feature was demonstrated using a biologically relevant target molecule, 2'-deoxyguanosine (dG). The spectroscopic, photophysical, and photochemical behaviors in aqueous environments were studied and compared to Cap. To explore possible further relevant biological applications, experiments with PAH-Cap and dG were carried out at physiological pH. PAH-Cap can generate singlet molecular oxygen and initiate an electron transfer process at pH 7 in air-saturated solutions upon UVA irradiation. Moreover, based on its spectroscopic features, visible light can be used to initiate the photooxidation of biological compounds in water, with many interesting advantages compared to free Cap and other related pteridines. These advantages include an enhancement of the photosensitizing effect at physiological pH and the potential of PAH-Cap for its use as a building block in supramolecular assemblies. The functionalization strategy hereby described can be employed for the preparation of robust photoactive polymers with great potential for its application in photodynamic therapy (PDT) and disinfection technologies.

摘要

通过将天然光敏剂6-羧基蝶呤(Cap)共价连接到聚(烯丙胺盐酸盐)(PAH)聚合物上,合成了一种聚合物光敏剂。描述了功能化步骤和纯化程序的优化。功能化反应的总产率为67%,生成了改性聚合物(PAH-Cap),其Cap取代度约为1%,具有有利的光谱性质。观察到PAH-Cap的光敏性质通过两种光氧化机制发生,即I型和II型。使用生物相关靶分子2'-脱氧鸟苷(dG)证明了这一特征。研究了PAH-Cap在水环境中的光谱、光物理和光化学行为,并与Cap进行了比较。为了探索可能的进一步相关生物应用,在生理pH值下进行了PAH-Cap和dG的实验。PAH-Cap在UVA照射下,在空气饱和溶液中,在pH 7时可产生单线态分子氧并引发电子转移过程。此外,基于其光谱特征,可见光可用于引发水中生物化合物的光氧化,与游离Cap和其他相关蝶啶相比具有许多有趣的优势。这些优势包括在生理pH值下增强光敏效果以及PAH-Cap作为超分子组装体构建块的潜力。本文所述的功能化策略可用于制备具有巨大潜力的稳健光活性聚合物,用于光动力疗法(PDT)和消毒技术。

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