An Yiwei, Fang Xuankun, Cheng Jie, Yang Shuiyuan, Chen Zuanguang, Tong Yanli
School of Pharmacy, Guangdong Medical University Dongguan 523808 China
Guangdong Second Provincial General Hospital Guangzhou 510317 China.
RSC Med Chem. 2023 Dec 1;15(2):380-398. doi: 10.1039/d3md00581j. eCollection 2024 Feb 21.
The high efficiency and specificity of enzymes make them play an important role in life activities, but the high cost, low stability and high sensitivity of natural enzymes severely restrict their application. In recent years, nanozymes have become convincing alternatives to natural enzymes, finding utility across diverse domains, including biosensing, antibacterial interventions, cancer treatment, and environmental preservation. Nanozymes are characterized by their remarkable attributes, encompassing high stability, cost-effectiveness and robust catalytic activity. Within the contemporary scientific landscape, metal-organic frameworks (MOFs) have garnered considerable attention, primarily due to their versatile applications, spanning catalysis. Notably, MOFs serve as scaffolds for the development of nanozymes, particularly in the context of bacterial detection and treatment. This paper presents a comprehensive review of recent literature pertaining to MOFs and their pivotal role in bacterial detection and treatment. We explored the limitations and prospects for the development of MOF-based nanozymes as a platform for bacterial detection and therapy, and anticipate their great potential and broader clinical applications in addressing medical challenges.
酶的高效性和特异性使其在生命活动中发挥着重要作用,但天然酶的高成本、低稳定性和高敏感性严重限制了它们的应用。近年来,纳米酶已成为天然酶令人信服的替代品,在包括生物传感、抗菌干预、癌症治疗和环境保护在内的多个领域得到应用。纳米酶具有显著的特性,包括高稳定性、成本效益和强大的催化活性。在当代科学领域,金属有机框架(MOFs)因其广泛的应用,特别是在催化方面,而备受关注。值得注意的是,MOFs作为纳米酶开发的支架,特别是在细菌检测和治疗方面。本文对近期有关MOFs及其在细菌检测和治疗中的关键作用的文献进行了全面综述。我们探讨了基于MOF的纳米酶作为细菌检测和治疗平台开发的局限性和前景,并预期它们在应对医学挑战方面具有巨大潜力和更广泛的临床应用。