Tian Qingzhen, Li Shu, Tang Zheng, Zhang Ziyu, Du Dan, Zhang Xiao, Niu Xiangheng, Lin Yuehe
School of Public Health, Hengyang Medical School, University of South China, Hengyang, 421001, P. R. China.
School of Mechanical and Materials Engineering, Washington State University, Pullman, WA, 99164, USA.
Adv Healthc Mater. 2025 Mar;14(8):e2401630. doi: 10.1002/adhm.202401630. Epub 2024 Aug 13.
As nanoscale materials with the function of catalyzing substrates through enzymatic kinetics, nanozymes are regarded as potential alternatives to natural enzymes. Compared to protein-based enzymes, nanozymes exhibit attractive characteristics of low preparation cost, robust activity, flexible performance adjustment, and versatile functionalization. These advantages endow them with wide use from biochemical sensing and environmental remediation to medical theranostics. Especially in biomedical diagnosis, the feature of catalytic signal amplification provided by nanozymes makes them function as emerging labels for the detection of biomarkers and diseases, with rapid developments observed in recent years. To provide a comprehensive overview of recent progress made in this dynamic field, here an overview of biomedical diagnosis enabled by nanozymes is provided. This review first summarizes the synthesis of nanozyme materials and then discusses the main strategies applied to enhance their catalytic activity and specificity. Subsequently, representative utilization of nanozymes combined with biological elements in disease diagnosis is reviewed, including the detection of biomarkers related to metabolic, cardiovascular, nervous, and digestive diseases as well as cancers. Finally, some development trends in nanozyme-enabled biomedical diagnosis are highlighted, and corresponding challenges are also pointed out, aiming to inspire future efforts to further advance this promising field.
纳米酶作为一类能够通过酶促动力学催化底物的纳米级材料,被视为天然酶的潜在替代品。与基于蛋白质的酶相比,纳米酶具有制备成本低、活性稳健、性能调节灵活以及功能化多样等吸引人的特性。这些优势使其在从生化传感、环境修复到医学诊疗等领域都有广泛应用。特别是在生物医学诊断中,纳米酶提供的催化信号放大特性使其成为检测生物标志物和疾病的新兴标记物,近年来取得了快速发展。为全面概述这一动态领域的最新进展,本文提供了纳米酶在生物医学诊断方面的综述。本综述首先总结了纳米酶材料的合成,然后讨论了用于提高其催化活性和特异性的主要策略。随后,综述了纳米酶与生物元素结合在疾病诊断中的代表性应用,包括与代谢、心血管、神经和消化系统疾病以及癌症相关的生物标志物的检测。最后,强调了纳米酶介导的生物医学诊断的一些发展趋势,并指出了相应的挑战,旨在激发未来进一步推动这一有前景领域发展的努力。