School of Environmental and Chemical Engineering, Shanghai University, Shanghai, 200444, P. R. China.
Materdicine Lab, School of Life Sciences, Shanghai University, Shanghai, 200444, P. R. China.
Adv Healthc Mater. 2023 Jun;12(16):e2201607. doi: 10.1002/adhm.202201607. Epub 2022 Oct 17.
Catalytic therapy can concurrently enhance therapeutic efficacy and decrease side effects by converting less toxic or nontoxic endogenous substances into various highly toxic reactive species (e.g., toxic radicals) to induce cell apoptosis/necrosis, which has been exploited to combat different types of diseases. As material science and nanotechnology evolve for application in disease therapies, a variety of catalytic biomaterials and nanomedicines have been elaborately designed and synthesized to mediate catalytic reactions and/or enhance the corresponding catalytic treatment efficacy. This review systematically summarizes, outlines, and discusses the state-of-the-art advances in the development and use of catalytic biomaterials and nanomedicines in diverse biomedical applications, particularly concentrating on their endogenous activators, exogenous stimuli (e.g., light, heat, ultrasound, and magnetic field), and the integration of endogenous and exogenous triggers to improve the efficacy of biomaterial/nanomedicine-enabled catalytic treatments. The biosafety and biocompatibility of various catalytic biomaterials and nanomedicines for biomedical applications are also discussed. Finally, the current challenges and future opportunities for advancement of catalytic biomaterials and nanomedicines are highlighted, aiming to boost their early fulfillment of practical clinical applications.
催化疗法可以将毒性较小或无毒的内源性物质转化为各种高毒性的反应性物质(例如有毒自由基),以诱导细胞凋亡/坏死,从而同时增强治疗效果并降低副作用,这种方法已被用于治疗各种类型的疾病。随着材料科学和纳米技术的发展,已被用于疾病治疗,各种催化生物材料和纳米药物已被精心设计和合成,以介导催化反应和/或增强相应的催化治疗效果。本综述系统地总结、概述和讨论了催化生物材料和纳米药物在多种生物医学应用中的最新进展,特别是集中讨论了它们的内源性激活剂、外源性刺激(例如光、热、超声和磁场)以及内源性和外源性触发因素的整合,以提高基于生物材料/纳米药物的催化治疗效果。还讨论了各种催化生物材料和纳米药物用于生物医学应用的生物安全性和生物相容性。最后,强调了催化生物材料和纳米药物目前面临的挑战和未来的发展机遇,旨在推动它们早日实现实际的临床应用。