CAS Key Laboratory of Nanosystem and Hierarchical Fabrication CAS Center for Excellence in Nanoscience, National Center for Nanoscience and Technology, 11 BeiYiTiao, ZhongGuanCun, Beijing, 100190, China.
University of Chinese Academy of Sciences, 52 Sanlihe Rd., Beijing, 100864, China.
Chembiochem. 2020 Sep 1;21(17):2408-2418. doi: 10.1002/cbic.202000123. Epub 2020 Apr 22.
Nanomaterials with enzyme-mimicking behavior (nanozymes) have attracted a lot of research interest recently. In comparison to natural enzymes, nanozymes hold many advantages, such as good stability, ease of production and surface functionalization. As the catalytic mechanism of nanozymes is gradually revealed, the application fields of nanozymes are also broadly explored. Beyond traditional colorimetric detection assays, nanozymes have been found to hold great potential in a variety of biomedical fields, such as tumor theranostics, antibacterial, antioxidation and bioorthogonal reactions. In this review, we summarize nanozymes consisting of different nanomaterials. In addition, we focus on the catalytic performance of nanozymes in biomedical applications. The prospects and challenges in the practical use of nanozymes are discussed at the end of this Minireview.
近年来,具有酶模拟行为的纳米材料(纳米酶)引起了广泛的研究兴趣。与天然酶相比,纳米酶具有许多优点,如稳定性好、易于生产和表面功能化。随着纳米酶催化机制的逐渐揭示,纳米酶的应用领域也得到了广泛的探索。除了传统的比色检测方法外,纳米酶还在肿瘤治疗、抗菌、抗氧化和生物正交反应等多种生物医学领域显示出巨大的潜力。在这篇综述中,我们总结了由不同纳米材料组成的纳米酶。此外,我们还重点介绍了纳米酶在生物医学应用中的催化性能。最后,讨论了纳米酶实际应用中存在的问题和挑战。
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