Yuan Huanxiang, Li Zelin, Wang Xiaoyu, Qi Ruilian
Department of Chemistry, College of Chemistry and Materials Engineering, Beijing Technology and Business University, Beijing 100048, China.
School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China.
Polymers (Basel). 2022 Sep 3;14(17):3657. doi: 10.3390/polym14173657.
Pathogenic microorganisms have been a serious threat to human life and have become a public health problem of global concern. However, in the actual treatment there is a lack of efficient antimicrobial strategies which do not easily develop drug resistance; this can lead to inaccurate drug treatment that worsens the infection and even threatens life. With the emergence of a variety of drug-resistant bacteria and fungi, photodynamic therapy has gradually become one of the most promising treatment methods for drug-resistant bacteria infection; this is because it is controllable, non-invasive, and not prone to cause the development of drug resistance. Organic conjugated polymers that possess high fluorescence intensity, a large molar extinction coefficient, excellent light stability, an adjustable energy band, easy modification, good biocompatibility, and the ability to photosensitize oxygen to produce reactive oxygen species have been widely used in the fields of solar cells, highly sensitive detection systems, biological imaging, and anti-cancer and anti-microbial treatment. Photodynamic therapy is non-invasive and has high temporal and spatial resolution and is a highly effective antimicrobial treatment that does not easily induce drug resistance; it has also stimulated the scientific research enthusiasm of researchers and has become a research hotspot in the antimicrobial field. In this review, the photodynamic antibacterial applications of conjugated polymers with different structure types are summarized, and their development directions are considered.
病原微生物一直是对人类生命的严重威胁,已成为全球关注的公共卫生问题。然而,在实际治疗中,缺乏不易产生耐药性的高效抗菌策略;这可能导致药物治疗不准确,使感染恶化甚至威胁生命。随着各种耐药细菌和真菌的出现,光动力疗法逐渐成为耐药细菌感染最有前景的治疗方法之一;这是因为它可控、非侵入性且不易导致耐药性的产生。具有高荧光强度、大摩尔消光系数、优异的光稳定性、可调节的能带、易于修饰、良好的生物相容性以及能够使氧光敏化产生活性氧的有机共轭聚合物已广泛应用于太阳能电池、高灵敏度检测系统、生物成像以及抗癌和抗菌治疗等领域。光动力疗法是非侵入性的,具有高时空分辨率,是一种不易诱导耐药性的高效抗菌治疗方法;它也激发了研究人员的科研热情,成为抗菌领域的研究热点。在本综述中,总结了不同结构类型共轭聚合物的光动力抗菌应用,并探讨了它们的发展方向。