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在牛奶衍生的细胞外囊泡中,通过微流控技术进行聚乙二醇脂质、KK 或 RGD 高功能和高质量脂质的后插入。

Microfluidic post-insertion of polyethylene glycol lipids and KK or RGD high functionality and quality lipids in milk-derived extracellular vesicles.

机构信息

Department of Pharmaceutical Informatics, Graduate School of Biomedical Sciences, Nagasaki University, 1-7-1 Sakamoto, Nagasaki-shi, Nagasaki 852-8588, Japan.

School of Pharmaceutical Sciences, Nagasaki University, 1-14 Bunkyo, Nagasaki-shi, Nagasaki 852-8521, Japan.

出版信息

Eur J Pharm Sci. 2024 Dec 1;203:106929. doi: 10.1016/j.ejps.2024.106929. Epub 2024 Oct 9.

Abstract

To achieve the desired delivery effect, extracellular vesicles (EVs) must bypass rapid clearance from circulation and exhibit affinity for target cells; however, it is difficult to simultaneously incorporate two materials into EVs. Post-insertion is a general modification method that can be performed by simply mixing different solutions. Previously, we have developed a microfluidic post-insertion method that supported fast and upscaled modification of EVs using KK-modified high-functionality and -quality (HFQ) lipids. Here, we used microfluidic post-insertion to achieve simultaneous incorporation of polyethylene glycol (PEG) lipids and KK or RGD-modified HFQ lipids into milk-derived EVs to avoid uptake from the reticuloendothelial system and increase the uptake into target cells. PEG lipid and HFQ lipids were formulated to produce micelles and subsequently mixed with EV solution using a microfluidic device. Compared to bulk mixing, microfluidic post-insertion showed higher cellular association. Altered cellular association capacities and endocytic pathways indicated simultaneous incorporation. The cellular association of modified EVs can be adjusted by altering the ratio of (EK)-KK in micelles with slight changes in physicochemical properties. Furthermore, microfluidic post-insertion is also suitable for (SG)-RGD, which is insoluble in phosphate-buffered saline (PBS). Our results may be valuable for the development and manufacture of functional EVs as drug delivery systems for clinical applications.

摘要

为了达到预期的递送效果,细胞外囊泡 (EVs) 必须避免在循环中迅速清除,并对靶细胞表现出亲和力;然而,同时将两种材料纳入 EVs 是很困难的。 后插入是一种通用的修饰方法,只需混合不同的溶液即可进行。 以前,我们开发了一种微流控后插入方法,该方法使用 KK 修饰的高功能和高质量 (HFQ) 脂质支持 EVs 的快速和规模化修饰。 在这里,我们使用微流控后插入技术将聚乙二醇 (PEG) 脂质和 KK 或 RGD 修饰的 HFQ 脂质同时纳入牛奶衍生的 EVs 中,以避免被网状内皮系统摄取,并增加对靶细胞的摄取。 PEG 脂质和 HFQ 脂质被配方制成胶束,然后使用微流控装置与 EV 溶液混合。 与批量混合相比,微流控后插入显示出更高的细胞相关性。 改变的细胞相关性和内吞途径表明了同时的纳入。 通过改变胶束中 (EK)-KK 的比例,可以轻微改变物理化学性质,从而调整修饰 EVs 的细胞相关性。 此外,微流控后插入也适用于(SG)-RGD,其在磷酸盐缓冲盐水(PBS)中不溶。 我们的结果对于作为临床应用的药物递送系统的功能性 EVs 的开发和制造可能是有价值的。

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