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我的甜心:利用共轭聚合物实现顽固病原体的光热和光动力灭活。

Sweet light o' mine: Photothermal and photodynamic inactivation of tenacious pathogens using conjugated polymers.

机构信息

Instituto de Investigaciones en Tecnologías Energéticas y Materiales Avanzados (IITEMA), Universidad Nacional de Río Cuarto (UNRC), Consejo Nacional de Investigaciones Científicas y Tecnológicas (CONICET), Río Cuarto X5804BYA, Córdoba, Argentina; Departamento de Física, Facultad de Ciencias Exactas, Fisicoquímicas y Naturales, UNRC, Río Cuarto X5804BYA, Córdoba, Argentina.

Instituto de Biotecnología Ambiental y Salud (INBIAS), UNRC y CONICET, Río Cuarto X5804BYA, Córdoba, Argentina; Departamento de Biología Molecular, Facultad de Ciencias Exactas, Fisicoquímicas y Naturales, UNRC, Río Cuarto X5804BYA, Córdoba, Argentina.

出版信息

J Photochem Photobiol B. 2022 Sep;234:112510. doi: 10.1016/j.jphotobiol.2022.112510. Epub 2022 Jul 6.

Abstract

Each year a rising number of infections can not be successfully treated owing to the increasing pandemic of antibiotic resistant pathogens. The global shortage of innovative antibiotics fuels the emergence and spread of drug resistant microbes. Basic research, development, and applications of alternative therapies are urgently needed. Since the 90´s, light-mediated therapies have promised to be the next frontier combating multidrug-resistance microbes. These platforms have demonstrated to be a reliable, rapid, and efficient alternative to eliminate tenacious pathogens while avoiding the emergence of resistance mechanisms. Among the materials showing antimicrobial activity triggered by light, conjugated polymers (CPs) have risen as the most promising option to tackle this complex situation. These materials present outstanding characteristics such as high absorption coefficients, great photostability, easy processability, low cytotoxicity, among others, turning them into a powerful class of photosensitizer (PS)/photothermal agent (PTA) materials. Herein, we summarize and discuss the advances in the field of CPs with applications in photodynamic inactivation and photothermal therapy towards bacteria elimination. Additionally, a section of current challenges and needs in terms of well-defined benchmark experiments and conditions to evaluate the efficiency of phototherapies is presented.

摘要

由于抗生素耐药病原体的日益流行,每年有越来越多的感染无法成功治疗。全球创新抗生素短缺助长了耐药微生物的出现和传播。迫切需要开展替代疗法的基础研究、开发和应用。自 90 年代以来,光介导疗法有望成为对抗多药耐药微生物的下一个前沿领域。这些平台已被证明是一种可靠、快速和有效的替代方法,可以在避免耐药机制出现的情况下消除顽强的病原体。在被光触发具有抗菌活性的材料中,共轭聚合物 (CP) 已成为解决这一复杂情况的最有前途的选择。这些材料具有高吸收系数、极好的光稳定性、易于加工、低细胞毒性等突出特点,使它们成为一类强大的光敏剂 (PS)/光热剂 (PTA) 材料。在此,我们总结和讨论了在光动力失活和光热疗法应用于细菌消除方面的 CP 进展。此外,还介绍了目前在定义明确的基准实验和条件方面的挑战和需求,以评估光疗的效率。

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