Department of Anesthesiology, Third Hospital of Shanxi Medical University, Shanxi Bethune Hospital, Shanxi Academy of Medical Sciences, Tongji Shanxi Hospital, Taiyuan, 030032, China.
Key Laboratory of Cellular Physiology at Shanxi Medical University, Ministry of Education, Taiyuan, Shanxi Province, 030001, China.
Adv Sci (Weinh). 2024 Apr;11(15):e2308241. doi: 10.1002/advs.202308241. Epub 2024 Feb 11.
Current management of anesthesia-associated complications falls short in terms of both efficacy and safety. Nanomaterials with versatile properties and unique nano-bio interactions hold substantial promise as therapeutics for addressing these complications. This review conducts a thorough examination of the existing nanotherapeutics and highlights the strategies for developing prospective nanomedicines to mitigate anesthetics-related toxicity. Initially, general, regional, and local anesthesia along with the commonly used anesthetics and related prevalent side effects are introduced. Furthermore, employing nanotechnology to prevent and alleviate the complications of anesthetics is systematically demonstrated from three aspects, that is, developing 1) safe nano-formulization for anesthetics; 2) nano-antidotes to sequester overdosed anesthetics and alter their pharmacokinetics; 3) nanomedicines with pharmacodynamic activities to treat anesthetics toxicity. Finally, the prospects and challenges facing the clinical translation of nanotherapeutics for anesthesia-related complications are discussed. This work provides a comprehensive roadmap for developing effective nanotherapeutics to prevent and mitigate anesthesia-associated toxicity, which can potentially revolutionize the management of anesthesia complications.
当前麻醉相关并发症的管理在疗效和安全性方面都存在不足。具有多功能特性和独特纳米生物相互作用的纳米材料有望成为治疗这些并发症的有效手段。本综述对现有的纳米治疗方法进行了全面的考察,并强调了开发有前途的纳米药物以减轻与麻醉剂相关的毒性的策略。首先,介绍了全身麻醉、区域麻醉和局部麻醉以及常用的麻醉剂和相关的常见副作用。此外,还从三个方面系统地展示了纳米技术在预防和减轻麻醉剂并发症方面的应用,即开发 1)用于麻醉剂的安全纳米制剂;2)纳米解毒剂以隔离过量的麻醉剂并改变其药代动力学;3)具有治疗麻醉剂毒性的药效学活性的纳米药物。最后,讨论了纳米治疗剂在治疗与麻醉相关的并发症的临床转化方面所面临的前景和挑战。这项工作为开发预防和减轻麻醉相关毒性的有效纳米治疗剂提供了全面的路线图,有望彻底改变麻醉并发症的管理。