Pharmaceutical Sciences Division, School of Pharmacy, Wisconsin Center for NanoBioSystems, Carbone Cancer Center, School of Medicine and Public Health, University of Wisconsin, Madison (UW-Madison), Madison, Wisconsin, 53705, USA.
Adv Mater. 2021 Sep;33(38):e2102580. doi: 10.1002/adma.202102580. Epub 2021 Aug 4.
Bacteria are one of the main groups of organisms, which dynamically and closely participate in human health and disease development. With the integration of chemical biotechnology, bacteria have been utilized as an emerging delivery system for various biomedical applications. Given the unique features of bacteria such as their intrinsic biocompatibility and motility, bacteria-based delivery systems have drawn wide interest in the diagnosis and treatment of various diseases, including cancer, infectious diseases, kidney failure, and hyperammonemia. Notably, at the interface of chemical biotechnology and bacteria, many research opportunities have been initiated, opening a promising frontier in biomedical application. Herein, the current synergy of chemical biotechnology and bacteria, the design principles for bacteria-based delivery systems, the microbial modulation, and the clinical translation are reviewed, with a special focus on the emerging advances in diagnosis and therapy.
细菌是主要的生物群体之一,它们在人类健康和疾病发展中动态且密切地参与其中。随着化学生物技术的融合,细菌已被用作各种生物医学应用的新兴递药系统。鉴于细菌具有内在的生物相容性和运动性等独特特征,基于细菌的递药系统在癌症、传染病、肾衰竭和血氨过多症等各种疾病的诊断和治疗中引起了广泛关注。值得注意的是,在化学生物技术和细菌的交叉点上,已经启动了许多研究机会,为生物医学应用开辟了一个充满希望的前沿领域。本文综述了化学生物技术和细菌的当前协同作用、基于细菌的递药系统的设计原则、微生物调节以及临床转化,特别关注诊断和治疗方面的新兴进展。