Department of Pharmacy, Jinzhou Medical University, Jinzhou 121001, PR China; Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, QLD 4072, Australia.
Department of Pharmacy, Jinzhou Medical University, Jinzhou 121001, PR China.
Int J Biol Macromol. 2024 Apr;265(Pt 2):130960. doi: 10.1016/j.ijbiomac.2024.130960. Epub 2024 Mar 20.
Tumors remain one of the major threats to public health and there is an urgent need to design new pharmaceutical agents for their diagnosis and treatment. In recent years, due to the rapid development of nanotechnology, biotechnology, catalytic science, and theoretical computing, subtlety has gradually made great progress in research related to tumor diagnosis and treatment. Compared to conventional drugs, enzymes can improve drug distribution and enhance drug enrichment at the tumor site, thereby reducing drug side effects and enhancing drug efficacy. Nanozymes can also be used as tumor tracking imaging agents to reshape the tumor microenvironment, providing a versatile platform for the diagnosis and treatment of malignancies. In this paper, we review the current status of research on enzymes in oncology and analyze novel oncology therapeutic approaches and related mechanisms. To date, a large number of nanomaterials, such as noble metal nanomaterials, nonmetallic nanomaterials, and carbon-based nanomaterials, have been shown to be able to function like natural enzymes, particularly with significant advantages in tumor therapy. In light of this, the authors in this review have systematically summarized and evaluated the construction, enzymatic activity, and their characteristics of nanozymes with respect to current modalities of tumor treatment. In addition, the application and research progress of different types of nicknames and their features in recent years are summarized in detail. We conclude with a summary and outlook on the study of nanozymes in tumor diagnosis and treatment. It is hoped that this review will inspire researchers in the fields of nanotechnology, chemistry, biology, materials science and theoretical computing, and contribute to the development of nano-enzymology.
肿瘤仍然是威胁公众健康的主要因素之一,因此迫切需要设计新的药物制剂来诊断和治疗肿瘤。近年来,由于纳米技术、生物技术、催化科学和理论计算的快速发展,在肿瘤诊断和治疗相关研究方面逐渐取得了显著进展。与传统药物相比,酶可以改善药物的分布,并增强药物在肿瘤部位的富集,从而降低药物的副作用,提高药物的疗效。纳米酶还可以用作肿瘤跟踪成像剂,重塑肿瘤微环境,为恶性肿瘤的诊断和治疗提供了一个多功能平台。本文综述了酶在肿瘤学中的研究现状,并分析了新型肿瘤治疗方法及相关机制。迄今为止,大量的纳米材料,如贵金属纳米材料、非金属纳米材料和碳基纳米材料,已被证明能够像天然酶一样发挥作用,特别是在肿瘤治疗方面具有显著优势。有鉴于此,本文作者系统地总结和评估了纳米酶在肿瘤治疗中的构建、酶活性及其特性。此外,还详细总结了近年来不同类型纳米酶的应用和研究进展及其特点。最后对肿瘤诊断和治疗中纳米酶的研究进行了总结和展望。希望本综述能够为纳米技术、化学、生物学、材料科学和理论计算等领域的研究人员提供启示,促进纳米酶学的发展。