Institute of Special Environmental Medicine, Nantong University, Nantong 226019, China.
School of Public Health, Nantong University, Nantong 226019, China.
J Control Release. 2024 Sep;373:929-951. doi: 10.1016/j.jconrel.2024.07.073. Epub 2024 Aug 8.
Bioorthogonal nanozymes have emerged as a potent tool in biomedicine due to their unique ability to perform enzymatic reactions that do not interfere with native biochemical processes. The integration of stimuli-responsive mechanisms into these nanozymes has further expanded their potential, allowing for controlled activation and targeted delivery. As such, intelligent bioorthogonal nanozymes have received more and more attention in developing therapeutic approaches. This review provides a comprehensive overview of the recent advances in the development and application of stimuli-responsive bioorthogonal nanozymes. By summarizing the design outlines for anchoring bioorthogonal nanozymes with stimuli-responsive capability, this review seeks to offer valuable insights and guidance for the rational design of these remarkable materials. This review highlights the significant progress made in this exciting field with different types of stimuli and the various applications. Additionally, it also examines the current challenges and limitations in the design, synthesis, and application of these systems, and proposes potential solutions and research directions. This review aims to stimulate further research toward the development of more efficient and versatile stimuli-responsive bioorthogonal nanozymes for biomedical applications.
生物正交纳米酶因其能够进行不干扰天然生化过程的酶反应而成为生物医学领域的有力工具。将刺激响应机制整合到这些纳米酶中进一步扩展了它们的潜力,允许进行受控的激活和靶向递送。因此,智能生物正交纳米酶在开发治疗方法方面受到了越来越多的关注。本综述全面概述了刺激响应型生物正交纳米酶的开发和应用的最新进展。通过总结锚定具有刺激响应能力的生物正交纳米酶的设计要点,本综述旨在为这些卓越材料的合理设计提供有价值的见解和指导。本综述强调了不同类型刺激下该领域的重大进展以及各种应用。此外,还检查了这些系统的设计、合成和应用中当前的挑战和局限性,并提出了潜在的解决方案和研究方向。本综述旨在激发对开发更高效、多功能的刺激响应型生物正交纳米酶以用于生物医学应用的进一步研究。