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一种通过脂质体融合将酶递送至细胞的微流控装置。

A microfluidic device for the delivery of enzymes into cells by liposome fusion.

作者信息

Kuhn Phillip, Eyer Klaus, Dittrich Petra S

机构信息

Department of Chemistry and Applied Biosciences, Eth Zurich, Zurich, Switzerland.

Department of Biosystems Science and Engineering, ETH Zurich, Zurich, Switzerland.

出版信息

Eng Life Sci. 2018 Feb;18(2):149-156. doi: 10.1002/elsc.201600150. Epub 2017 Jan 13.

Abstract

Liposomes are versatile carriers of drugs or biomolecules and are ideally suited to transport molecules into cells. However, mechanistic studies to understand and improve the fusion of liposomes with cell membranes and endosomes are difficult. Here, we report a method that allows for stable coimmobilization of liposomes and living cells, thereby bringing the membranes into close contact, which is essential for membrane fusion. The small unilamellar liposomes are tethered to the surface by a linker so that no modification of the liposome membrane for cell binding is required. The cells are positioned above the liposomes by posts that are integrated into the microfluidic device, and a pH drop induces the fusion of the cell-liposome membranes. Both membrane fusion and release of molecules into the cytosol are visualized by fluorescence dequenching assays. Furthermore, we proved the efficient delivery of the enzyme -galactosidase into the cells when a fusogenic liposome composition was used. The device could be used for fusion studies but is also a versatile means for cell transfection.

摘要

脂质体是药物或生物分子的通用载体,非常适合将分子转运到细胞中。然而,理解和改善脂质体与细胞膜及内体融合的机制研究颇具难度。在此,我们报告一种方法,该方法能实现脂质体与活细胞的稳定共固定,从而使膜紧密接触,这对膜融合至关重要。小单层脂质体通过连接子 tethered 到表面,因此无需对脂质体膜进行用于细胞结合的修饰。细胞通过集成到微流控装置中的柱子定位在脂质体上方,pH 值下降会诱导细胞 - 脂质体膜的融合。膜融合以及分子释放到细胞质中都通过荧光猝灭测定法进行可视化。此外,当使用促融合脂质体组合物时,我们证明了将β - 半乳糖苷酶有效地递送至细胞中。该装置可用于融合研究,但也是细胞转染的通用手段。 (注:原文中“tethered”未准确翻译,可能是“拴系、束缚”之类意思,需结合专业知识进一步确定准确含义)

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本文引用的文献

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Single-cell analysis in biotechnology, systems biology, and biocatalysis.单细胞分析在生物技术、系统生物学和生物催化中的应用。
Annu Rev Chem Biomol Eng. 2012;3:129-55. doi: 10.1146/annurev-chembioeng-062011-081056. Epub 2012 Mar 8.
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High-throughput microfluidic single-cell RT-qPCR.高通量微流控单细胞 RT-qPCR。
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