Jiang Shan, Zhang Chengfei, Zou Ting
School of Stomatology, Shenzhen University Health Science Center, Shenzhen 518060, China.
Restorative Dental Science, Faculty of Dentistry, The University of Hong Kong, Pokfulam, Hong Kong, China.
Nanomaterials (Basel). 2020 Dec 15;10(12):2518. doi: 10.3390/nano10122518.
Single-atom catalysts (SACs), as atomically dispersed metal active sites anchored or coordinated on suitable supports, demonstrate large potential for use in therapeutic applications. SACs have structural features similar to those of natural enzyme, while exhibiting remarkable catalytic activity, desirable stability, and excellent selectivity. This systematic review aims to synthesize evidence on SACs' biotherapy applications. Three databases (PubMed/MEDLINE, ISI Web of Science, and ScienceDirect) were searched to identify the studies that investigated the therapeutic efficacy of SACs. A total of 12 studies that fulfilled the inclusion criteria were included and reviewed, and the key findings were qualitatively synthesized. Overall, various SACs were investigated for biotherapy applications, including anticancer, anti-infection (antibacterial), and anti-inflammatory applications; brain trauma therapies, and oxidative-stress cytoprotection applications. All of the included studies showed that the synthesized SACs demonstrated superior therapeutic effects compared with their respective controls. Among the 12 studies reviewed, 11 studies showed satisfied biocompatibility of the applied SACs, whereas minimal cytotoxicity was reported in 1 study. Collectively, the reviewed studies indicated that SACs exhibited considerable promise in the field of biotherapy. Additional studies are needed for a better understanding of the effect of SACs in the treatment of various diseases.
单原子催化剂(SACs)作为锚定或配位在合适载体上的原子分散金属活性位点,在治疗应用中显示出巨大潜力。SACs具有与天然酶相似的结构特征,同时表现出卓越的催化活性、良好的稳定性和出色的选择性。本系统综述旨在综合关于SACs生物治疗应用的证据。检索了三个数据库(PubMed/MEDLINE、ISI Web of Science和ScienceDirect)以识别研究SACs治疗效果的研究。共纳入并审查了12项符合纳入标准的研究,并对关键发现进行了定性综合。总体而言,研究了各种SACs的生物治疗应用,包括抗癌、抗感染(抗菌)和抗炎应用;脑外伤治疗以及氧化应激细胞保护应用。所有纳入研究均表明,合成的SACs与其各自的对照相比显示出卓越的治疗效果。在审查的12项研究中,11项研究显示所应用的SACs具有良好的生物相容性,而1项研究报告了最小的细胞毒性。总体而言,综述研究表明SACs在生物治疗领域展现出可观的前景。需要更多研究以更好地了解SACs在治疗各种疾病中的作用。