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工程化小细胞外囊泡作为一种通用平台以有效负载阿魏酸——一种“酯酶响应性主动负载”策略。

Engineered small extracellular vesicles as a versatile platform to efficiently load ferulic acid an "esterase-responsive active loading" strategy.

作者信息

Man Fulong, Xing Huaran, Wang Haoran, Wang Junfeng, Lu Rong

机构信息

Marine College, Shandong University, Weihai, China.

Weihai Neoland Biosciences Co.,Ltd., Weihai, China.

出版信息

Front Bioeng Biotechnol. 2022 Nov 9;10:1043130. doi: 10.3389/fbioe.2022.1043130. eCollection 2022.

Abstract

As nano-drug carriers, small extracellular vesicles (sEVs) have shown unique advantages, but their drug loading and encapsulation efficiency are far from being satisfied, especially for the loading of hydrophilic small-molecule drugs. Inspired by the strategies of active loading of liposomal nanomedicines, pre-drug design and immobilization enzyme, here we developed a new platform, named "Esterase-responsive Active Loading" (EAL), for the efficient and stable drug encapsulation of sEVs. Widely used ferulic acid ester derivatives were chosen as prodrugs based on the EAL of engineered sEVs to establish a continuous transmembrane ion gradient for achieving efficient loading of active molecule ferulic acid into sEVs. The EAL showed that the drug loading and encapsulation efficiency were around 6-fold and 5-fold higher than passive loading, respectively. Moreover, characterization by nano-flow cytometry and Malvern particle size analyzer showed that differential ultracentrifugation combined with multiple types of membrane filtration methods can achieve large-scale and high-quality production of sEVs. Finally, extracellular and intracellular assessments further confirmed the superior performance of the EAL-prepared sEVs-loaded ferulic acid preparation in terms of slow release and low toxicity. Taken together, these findings will provide an instructive insight into the development of sEV-based delivery systems.

摘要

作为纳米药物载体,小细胞外囊泡(sEVs)已显示出独特优势,但其载药量和包封效率远不能令人满意,尤其是对于亲水性小分子药物的装载。受脂质体纳米药物主动装载、前药设计和固定化酶策略的启发,我们在此开发了一个名为“酯酶响应性主动装载”(EAL)的新平台,用于sEVs的高效稳定药物包封。基于工程化sEVs的EAL,选择广泛使用的阿魏酸酯衍生物作为前药,以建立连续的跨膜离子梯度,从而实现活性分子阿魏酸高效装载到sEVs中。EAL表明,载药量和包封效率分别比被动装载高约6倍和5倍。此外,通过纳米流式细胞术和马尔文粒度分析仪表征表明,差速超速离心结合多种膜过滤方法可实现sEVs的大规模高质量生产。最后,细胞外和细胞内评估进一步证实了EAL制备的载阿魏酸sEVs制剂在缓释和低毒性方面的优越性能。综上所述,这些发现将为基于sEVs的递送系统的开发提供有指导意义的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/182c/9682128/16a0f65fc414/fbioe-10-1043130-g001.jpg

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