Recent advances on biomedical applications of zirconium-based Nanozymes: A review

IF 13.3 1区 工程技术 Q1 ENGINEERING, CHEMICAL Chemical Engineering Journal Pub Date : 2025-01-10 DOI:10.1016/j.cej.2025.159464
Mostafa Ghafori-Gorab, Amir Kashtiaray, Mahdi karimi, Hooman Aghamirza Moghim Aliabadi, Fatemeh Bakhtiyar, Faegheh Daraei Ghadikolaei, Maryam Mohajeri, Ali Maleki
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Abstract

Traditional enzymes, while essential in various fields, face limitations such as high production costs and instability under extreme conditions. Nanozymes, a new class of nanomaterials with enzyme-like properties, offer a promising alternative. They are more stable, cost-effective, and versatile, maintaining catalytic activity under diverse conditions. Zirconium-based nanozymes, in particular, exhibit exceptional stability, biocompatibility, and catalytic efficiency, making them ideal for biomedical applications like cancer therapy and biosensing. This article reviews the synthesis methods, structural and catalytic roles, and applications of zirconium-based nanozymes. It highlights their potential in detection, biosensing, anticancer, antibacterial activities, and damage repair. Despite the advantages of zirconium-based nanozymes, their literature is fragmented, necessitating a comprehensive review to consolidate existing knowledge and guide future research. This review aims to bridge this gap, providing a valuable resource for researchers and fostering innovation in the rapidly evolving field of nanozymes.

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锆基纳米酶生物医学应用研究进展
传统酶虽然在各个领域都是必不可少的,但却面临着生产成本高和极端条件下不稳定等限制。纳米酶,一类具有酶样特性的新型纳米材料,提供了一个很有前途的选择。它们更稳定,成本效益高,用途广泛,在各种条件下保持催化活性。特别是锆基纳米酶,表现出卓越的稳定性、生物相容性和催化效率,使其成为癌症治疗和生物传感等生物医学应用的理想选择。本文综述了锆基纳米酶的合成方法、结构、催化作用及其应用。它突出了它们在检测、生物传感、抗癌、抗菌和损伤修复方面的潜力。尽管锆基纳米酶具有优势,但它们的文献是碎片化的,需要进行全面的综述,以巩固现有的知识和指导未来的研究。本文旨在弥补这一空白,为研究人员提供宝贵的资源,并促进纳米酶领域的创新。
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来源期刊
Chemical Engineering Journal
Chemical Engineering Journal 工程技术-工程:化工
CiteScore
21.70
自引率
9.30%
发文量
6781
审稿时长
2.4 months
期刊介绍: The Chemical Engineering Journal is an international research journal that invites contributions of original and novel fundamental research. It aims to provide an international platform for presenting original fundamental research, interpretative reviews, and discussions on new developments in chemical engineering. The journal welcomes papers that describe novel theory and its practical application, as well as those that demonstrate the transfer of techniques from other disciplines. It also welcomes reports on carefully conducted experimental work that is soundly interpreted. The main focus of the journal is on original and rigorous research results that have broad significance. The Catalysis section within the Chemical Engineering Journal focuses specifically on Experimental and Theoretical studies in the fields of heterogeneous catalysis, molecular catalysis, and biocatalysis. These studies have industrial impact on various sectors such as chemicals, energy, materials, foods, healthcare, and environmental protection.
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