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磁/声双重控制的微机器人克服耳内生物学屏障,按需递药治疗听力损失。

Magnetic/Acoustic Dual-Controlled Microrobot Overcoming Oto-Biological Barrier for On-Demand Multidrug Delivery against Hearing Loss.

机构信息

Guangdong Provincial Key Laboratory of Advanced Drug Delivery & Guangdong Provincial Engineering Center of Topical Precise Drug Delivery System, Center for Drug Research and Development, Guangdong Pharmaceutical University, Guangzhou, 510006, P. R. China.

School of Pharmacy, Guangdong Pharmaceutical University, Guangzhou, 510006, P. R. China.

出版信息

Small. 2024 Nov;20(44):e2401369. doi: 10.1002/smll.202401369. Epub 2024 Jul 17.

Abstract

Multidrug combination therapy in the inner ear faces diverse challenges due to the distinct physicochemical properties of drugs and the difficulties of overcoming the oto-biologic barrier. Although nanomedicine platforms offer potential solutions to multidrug delivery, the access of drugs to the inner ear remains limited. Micro/nanomachines, capable of delivering cargo actively, are promising tools for overcoming bio-barriers. Herein, a novel microrobot-based strategy to penetrate the round window membrane (RWM) is presented and multidrug in on-demand manner is delivered. The tube-type microrobot (TTMR) is constructed using the template-assisted layer-by-layer (LbL) assembly of chitosan/ferroferric oxide/silicon dioxide (CS/FeO/SiO) and loaded with anti-ototoxic drugs (curcumin, CUR and tanshinone IIA, TSA) and perfluorohexane (PFH). FeO provides magnetic actuation, while PFH ensures acoustic propulsion. Upon ultrasound stimulation, the vaporization of PFH enables a microshotgun-like behavior, propelling the drugs through barriers and driving them into the inner ear. Notably, the proportion of drugs entering the inner ear can be precisely controlled by varying the feeding ratios. Furthermore, in vivo studies demonstrate that the drug-loaded microrobot exhibits superior protective effects and excellent biosafety toward cisplatin (CDDP)-induced hearing loss. Overall, the microrobot-based strategy provides a promising direction for on-demand multidrug delivery for ear diseases.

摘要

内耳的多药物联合治疗由于药物的独特物理化学性质和克服耳内生物屏障的困难而面临多种挑战。尽管纳米医学平台为多药物输送提供了潜在的解决方案,但药物进入内耳的途径仍然有限。能够主动输送货物的微/纳米机器是克服生物屏障的有前途的工具。在此,提出了一种基于新型微机器人的穿透圆窗膜(RWM)的策略,并按需递送电机器器人(TTMR)是使用壳聚糖/四氧化三铁/二氧化硅(CS/FeO/SiO)的模板辅助层层(LbL)组装构建的,并负载有抗耳毒性药物(姜黄素、CUR 和丹参酮 IIA、TSA)和全氟己烷(PFH)。FeO 提供磁驱动,而 PFH 确保声推进。在超声刺激下,PFH 的蒸发实现了类似于微枪的行为,将药物推进到屏障中并将其驱入内耳。值得注意的是,通过改变进料比可以精确控制进入内耳的药物比例。此外,体内研究表明,负载药物的微机器人对顺铂(CDDP)诱导的听力损失表现出优异的保护作用和出色的生物安全性。总的来说,基于微机器人的策略为耳病的按需多药物输送提供了一个有前途的方向。

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