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通过Förster 共振能量转移研究蛋白质功能化胶束和脂质体的交换动力学。

Exchange kinetics of protein-functionalized micelles and liposomes studied by Förster resonance energy transfer.

机构信息

Laboratory of Chemical Biology, Department of Biomedical Engineering, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.

出版信息

Bioconjug Chem. 2010 May 19;21(5):860-6. doi: 10.1021/bc900398p.

Abstract

Protein-functionalized micelles and liposomes are attractive delivery systems for applications ranging from targeted drug delivery to molecular imaging. In particular, systems that use pegylated phospholipids have become popular, but little is known about the stability of these lipid-functionalized proteins toward exchange. In this study, Förster resonance energy transfer (FRET) between the fluorescent proteins ECFP and EYFP was used to investigate the lipid exchange behavior of protein-functionalized liposomes and micelles. Native chemical ligation was used as an efficient method to site-specifically couple varying amounts of proteins to pegylated phospholipids. No exchange was observed between protein-functionalized phospholipids in sterically stabilized liposomes. In micelles, however, protein-functionalized lipids were found to exchange with a half-time of exchange ranging from almost 2 h at room temperature to 4 min at 37 degrees C. These pegylated micelles remained intact at lipid concentrations down to 0.15 microM, indicating that they are even more stable than previously assumed. The results obtained in this study provide a useful frame of reference for assessing the potential role of protein exchange in biomedical applications of these lipid-based nanoparticles.

摘要

蛋白功能化胶束和脂质体是一种有吸引力的递药系统,可应用于从靶向药物递送到分子成像等多个领域。特别是,使用聚乙二醇化磷脂的系统已经变得很流行,但对于这些脂质功能化蛋白的稳定性,人们对其交换知之甚少。在这项研究中,荧光蛋白 ECFP 和 EYFP 之间的Förster 共振能量转移(FRET)被用来研究蛋白功能化脂质体和胶束的脂质交换行为。天然化学连接被用作一种有效的方法,可将不同数量的蛋白质定点偶联到聚乙二醇化磷脂上。在空间稳定的脂质体中,没有观察到蛋白功能化磷脂之间的交换。然而,在胶束中,发现蛋白功能化脂质以半衰期为交换,在室温下从近 2 小时到 37°C 时的 4 分钟不等。这些聚乙二醇化胶束在脂质浓度低至 0.15μM 时仍然保持完整,这表明它们比之前认为的更加稳定。本研究的结果为评估这些基于脂质的纳米粒子在生物医学应用中蛋白质交换的潜在作用提供了一个有用的参考框架。

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