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纳米材料在酶疗法中的应用机遇。

Opportunities for nanomaterials in enzyme therapy.

机构信息

Instituto de Nanociencia y Materiales de Aragón (INMA), CSIC/Universidad de Zaragoza, c/ Edificio I+D, Mariano Esquillor Gómez, 50018 Zaragoza, Spain.

Laboratorio de Biotecnología, Facultad de Ingeniería, Universidad ORT Uruguay, Mercedes 1237, 11100 Montevideo, Uruguay.

出版信息

J Control Release. 2024 Aug;372:619-647. doi: 10.1016/j.jconrel.2024.06.035. Epub 2024 Jun 29.

Abstract

In recent years, enzyme therapy strategies have rapidly evolved to catalyze essential biochemical reactions with therapeutic potential. These approaches hold particular promise in addressing rare genetic disorders, cancer treatment, neurodegenerative conditions, wound healing, inflammation management, and infectious disease control, among others. There are several primary reasons for the utilization of enzymes as therapeutics: their substrate specificity, their biological compatibility, and their ability to generate a high number of product molecules per enzyme unit. These features have encouraged their application in enzyme replacement therapy where the enzyme serves as the therapeutic agent to rectify abnormal metabolic and physiological processes, enzyme prodrug therapy where the enzyme initiates a clinical effect by activating prodrugs, and enzyme dynamic or starving therapy where the enzyme acts upon host substrate molecules. Currently, there are >20 commercialized products based on therapeutic enzymes, but approval rates are considerably lower than other biologicals. This has stimulated nanobiotechnology in the last years to develop nanoparticle-based solutions that integrate therapeutic enzymes. This approach aims to enhance stability, prevent rapid clearance, reduce immunogenicity, and even enable spatio-temporal activation of the therapeutic catalyst. This comprehensive review delves into emerging trends in the application of therapeutic enzymes, with a particular emphasis on the synergistic opportunities presented by incorporating enzymes into nanomaterials. Such integration holds the promise of enhancing existing therapies or even paving the way for innovative nanotherapeutic approaches.

摘要

近年来,酶治疗策略迅速发展,能够催化具有治疗潜力的重要生化反应。这些方法在解决罕见遗传疾病、癌症治疗、神经退行性疾病、伤口愈合、炎症管理和传染病控制等方面具有特殊的应用前景。将酶用作治疗剂有几个主要原因:它们的底物特异性、生物相容性以及每个酶单位能够产生大量产物分子的能力。这些特性鼓励了它们在酶替代治疗中的应用,其中酶作为治疗剂来纠正异常代谢和生理过程;酶前药治疗中,酶通过激活前药来引发临床效果;以及酶动态或饥饿治疗中,酶作用于宿主底物分子。目前,已有超过 20 种基于治疗性酶的商业化产品,但批准率远低于其他生物制剂。这在过去几年中刺激了纳米生物技术的发展,以开发整合治疗性酶的基于纳米颗粒的解决方案。这种方法旨在提高稳定性、防止快速清除、降低免疫原性,甚至能够实现治疗催化剂的时空激活。本综述深入探讨了治疗性酶应用的新兴趋势,特别强调了将酶纳入纳米材料所带来的协同机会。这种整合有望增强现有治疗方法,甚至为创新的纳米治疗方法铺平道路。

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