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用于近红外光热-光动力抗菌治疗的正交共轭酞菁-卟啉低聚物

Orthogonally conjugated phthalocyanine-porphyrin oligomer for NIR photothermal-photodynamic antibacterial treatment.

作者信息

Lian Guixue, Zhao Wanru, Ma Gaoqiang, Zhang Sen, Wu Ailin, Wang Lin, Zhang Dongjiao, Liu Wei, Jiang Jianzhuang

机构信息

School of Crystal Materials, State Key Laboratory of Crystal Materials, Shandong University, Jinan, 250100, China.

Department of Implantology, School and Hospital of Stomatology, Cheeloo College of Medicine, Shandong University, Jinan, 250100, China.

出版信息

Commun Chem. 2025 Mar 14;8(1):80. doi: 10.1038/s42004-025-01470-w.

Abstract

With the increase of antibiotic resistance worldwide, there is an urgent demand to develop new fungicides and approaches to address the threat to human health posed by the ineffectiveness of traditional antibiotics. In this work, an orthogonal conjugated uniform oligomer bactericide of SiPc-ddCPP was constructed between silicon phthalocyanine and porphyrin, which can effectively treat infection through photodynamic-photothermal combined therapy without considering drug resistance. Compared with organic photothermal agents induced by unstable H-aggregation with blue-shifted absorption and fluorescence/ROS quenching, this orthogonal-structured uniform SiPc-ddCPP nanoparticle shows remarkably stability and NIR photothermal effect (η = 31.15%) along with fluorescence and ROS generation. Antibacterial studies have shown that both Gram-positive and Gram-negative bacteria could be efficiently annihilated in a few minutes through synergistic PDT-PTT along with satisfactory bacterial targeting. These results suggest SiPc-ddCPP is a multifunctional NIR bactericide, which afford a new approach of synergistic PDT-PTT sterilization to conquer the crisis of antibiotic resistance.

摘要

随着全球抗生素耐药性的增加,迫切需要开发新的杀菌剂和方法,以应对传统抗生素失效对人类健康造成的威胁。在这项工作中,在硅酞菁和卟啉之间构建了一种正交共轭均匀低聚物杀菌剂SiPc-ddCPP,它可以通过光动力-光热联合疗法有效治疗感染,而无需考虑耐药性。与由不稳定的H-聚集诱导的具有蓝移吸收和荧光/ROS猝灭的有机光热剂相比,这种正交结构的均匀SiPc-ddCPP纳米颗粒具有显著的稳定性和近红外光热效应(η = 31.15%),同时还能产生荧光和ROS。抗菌研究表明,革兰氏阳性菌和革兰氏阴性菌都可以通过协同光动力疗法-光热疗法在几分钟内被有效消灭,并且具有令人满意的细菌靶向性。这些结果表明SiPc-ddCPP是一种多功能近红外杀菌剂,为克服抗生素耐药性危机提供了一种协同光动力疗法-光热疗法杀菌的新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4de2/11909192/f8bb08aec2e5/42004_2025_1470_Fig1_HTML.jpg

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