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用于增强细菌感染化学动力学疗法的近期设计策略。

Recent design strategies for boosting chemodynamic therapy of bacterial infections.

作者信息

Zhang Junjie, Guo Haiyang, Liu Ming, Tang Kaiyuan, Li Shengke, Fang Qiang, Du Hengda, Zhou Xiaogang, Lin Xin, Yang Yanjun, Huang Bin, Yang Dongliang

机构信息

School of Fundamental Sciences Bengbu Medical College Bengbu China.

Macao Centre for Research and Development in Chinese Medicine Institute of Chinese Medical Sciences University of Macau Taipa Macau SAR China.

出版信息

Exploration (Beijing). 2023 Oct 17;4(2):20230087. doi: 10.1002/EXP.20230087. eCollection 2024 Apr.

Abstract

The emergence of drug-resistant bacteria poses a significant threat to people's lives and health as bacterial infections continue to persist. Currently, antibiotic therapy remains the primary approach for tackling bacterial infections. However, the escalating rates of drug resistance coupled with the lag in the development of novel drugs have led to diminishing effectiveness of conventional treatments. Therefore, the development of nonantibiotic-dependent therapeutic strategies has become imperative to impede the rise of bacterial resistance. The emergence of chemodynamic therapy (CDT) has opened up a new possibility due to the CDT can convert HO into •OH via Fenton/Fenton-like reaction for drug-resistant bacterial treatment. However, the efficacy of CDT is limited by a variety of practical factors. To overcome this limitation, the sterilization efficiency of CDT can be enhanced by introducing the therapeutics with inherent antimicrobial capability. In addition, researchers have explored CDT-based combined therapies to augment its antimicrobial effects and mitigate its potential toxic side effects toward normal tissues. This review examines the research progress of CDT in the antimicrobial field, explores various strategies to enhance CDT efficacy and presents the synergistic effects of CDT in combination with other modalities. And last, the current challenges faced by CDT and the future research directions are discussed.

摘要

随着细菌感染持续存在,耐药菌的出现对人们的生命和健康构成了重大威胁。目前,抗生素治疗仍然是应对细菌感染的主要方法。然而,耐药率不断上升以及新型药物研发滞后导致传统治疗的效果逐渐减弱。因此,开发不依赖抗生素的治疗策略对于阻止细菌耐药性的上升变得至关重要。化学动力疗法(CDT)的出现开辟了一种新的可能性,因为CDT可以通过芬顿/类芬顿反应将H₂O₂转化为•OH用于耐药菌治疗。然而,CDT的疗效受到多种实际因素的限制。为克服这一限制,可以通过引入具有固有抗菌能力的治疗剂来提高CDT的杀菌效率。此外,研究人员还探索了基于CDT的联合疗法以增强其抗菌效果并减轻其对正常组织的潜在毒副作用。本综述考察了CDT在抗菌领域的研究进展,探索了提高CDT疗效的各种策略,并介绍了CDT与其他方式联合的协同效应。最后,讨论了CDT目前面临的挑战和未来的研究方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba4e/11022619/8960edbde8ad/EXP2-4-20230087-g009.jpg

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