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用于研究脂质体-血清相互作用和蛋白质冠形成的多参数表面等离子体共振平台。

Multi-parametric surface plasmon resonance platform for studying liposome-serum interactions and protein corona formation.

作者信息

Kari Otto K, Rojalin Tatu, Salmaso Stefano, Barattin Michela, Jarva Hanna, Meri Seppo, Yliperttula Marjo, Viitala Tapani, Urtti Arto

机构信息

Centre for Drug Research and Division of Pharmaceutical Biosciences, Faculty of Pharmacy, University of Helsinki, Viikinkaari 5, P.O. Box 56, FI-00014, Helsinki, Finland.

Department of Pharmaceutical and Pharmacological Sciences, University of Padova, Via F. Marzolo 5, 35131, Padova, Italy.

出版信息

Drug Deliv Transl Res. 2017 Apr;7(2):228-240. doi: 10.1007/s13346-016-0320-0.

Abstract

When nanocarriers are administered into the blood circulation, a complex biomolecular layer known as the "protein corona" associates with their surface. Although the drivers of corona formation are not known, it is widely accepted that this layer mediates biological interactions of the nanocarrier with its surroundings. Label-free optical methods can be used to study protein corona formation without interfering with its dynamics. We demonstrate the proof-of-concept for a multi-parametric surface plasmon resonance (MP-SPR) technique in monitoring the formation of a protein corona on surface-immobilized liposomes subjected to flowing 100 % human serum. We observed the formation of formulation-dependent "hard" and "soft" coronas with distinct refractive indices, layer thicknesses, and surface mass densities. MP-SPR was also employed to determine the affinity (K ) of a complement system molecule (C3b) with cationic liposomes with and without polyethylene glycol. Tendency to create a thick corona correlated with a higher affinity of opsonin C3b for the surface. The label-free platform provides a fast and robust preclinical tool for tuning nanocarrier surface architecture and composition to control protein corona formation.

摘要

当纳米载体被注入血液循环时,一种被称为“蛋白质冠”的复杂生物分子层会与其表面结合。尽管尚不清楚冠形成的驱动因素,但人们普遍认为这一层介导了纳米载体与其周围环境的生物相互作用。无标记光学方法可用于研究蛋白质冠的形成,而不会干扰其动态过程。我们展示了一种多参数表面等离子体共振(MP-SPR)技术在监测表面固定脂质体上蛋白质冠形成的概念验证,该脂质体在流动的100%人血清中进行实验。我们观察到形成了具有不同折射率、层厚度和表面质量密度的依赖于制剂的“硬”冠和“软”冠。MP-SPR还用于确定补体系统分子(C3b)与有或没有聚乙二醇的阳离子脂质体的亲和力(K )。形成厚冠的趋势与调理素C3b对表面的更高亲和力相关。这个无标记平台为调整纳米载体表面结构和组成以控制蛋白质冠的形成提供了一种快速且可靠的临床前工具。

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