Department of Laboratory Medicine Nanfang Hospital, Southern Medical University, Guangzhou, 510515, China.
Adv Sci (Weinh). 2024 May;11(20):e2305823. doi: 10.1002/advs.202305823. Epub 2024 Mar 9.
Pathogenic bacteria are the main cause of bacterial infectious diseases, which have posed a grave threat to public health. Single-atom nanozymes have emerged as promising candidates for antibacterial applications, but their activities need to be further improved. Considering diatomic nanozymes exhibit superior metal loading capacities and enhanced catalytic performance, a new interlayer coupling diatomic nanozyme (IC-DAN) is constructed by modulating the coordination environment in an atomic-level engineering. It is well demonstrated that IC-DAN exhibited superior peroxidase-mimetic activity in the presence of HO to yield abundant ∙OH and possessed high photothermal conversion ability, which synergistically achieves efficient antibacterial therapy. Therefore, IC-DAN shows great potential used as antibacterial agent in clinic and this study open a new route to developing high-performance artificial enzymes.
致病细菌是细菌性传染病的主要原因,对公众健康构成了严重威胁。单原子纳米酶作为一种有前途的抗菌应用候选物已经出现,但它们的活性需要进一步提高。考虑到双原子纳米酶具有更高的金属负载能力和增强的催化性能,通过原子级工程调节配位环境构建了一种新型的层间耦合双原子纳米酶(IC-DAN)。实验证明,IC-DAN 在 HO 的存在下表现出优异的过氧化物酶模拟活性,产生丰富的 ∙OH,并具有高的光热转换能力,协同实现了高效的抗菌治疗。因此,IC-DAN 有望在临床上用作抗菌剂,本研究为开发高性能人工酶开辟了新途径。