CD81号
微泡
四斯潘宁
CD63
神经酰胺
膜
化学
肽
磷脂酰丝氨酸
细胞生物学
生物物理学
小泡
生物
生物化学
细胞
磷脂
细胞凋亡
小RNA
基因
丙型肝炎病毒
病毒
病毒学
作者
Alessandro Gori,Alessandro Romanato,Greta Bergamaschi,Alessandro Strada,Paola Gagni,Roberto Frigerio,Dario Brambilla,Riccardo Vago,Silvia Galbiati,Silvia Picciolini,Marzia Bedoni,George G. Daaboul,Marcella Chiari,Marina Cretich
标识
DOI:10.1080/20013078.2020.1751428
摘要
ABSTRACT Small extracellular vesicles (sEVs) present fairly distinctive lipid membrane features in the extracellular environment. These include high curvature, lipid‐packing defects and a relative abundance in lipids such as phosphatidylserine and ceramide. sEV membrane could be then considered as a “universal” marker, alternative or complementary to traditional, characteristic, surface‐associated proteins. Here, we introduce the use of membrane‐sensing peptides as new, highly efficient ligands to directly integrate sEV capturing and analysis on a microarray platform. Samples were analysed by label‐free, single‐particle counting and sizing, and by fluorescence co‐localisation immune staining with fluorescent anti‐CD9/anti‐CD63/anti‐CD81 antibodies. Peptides performed as selective yet general sEV baits and showed a binding capacity higher than anti‐tetraspanins antibodies. Insights into surface chemistry for optimal peptide performances are also discussed, as capturing efficiency is strictly bound to probes surface orientation effects. We anticipate that this new class of ligands, also due to the versatility and limited costs of synthetic peptides, may greatly enrich the molecular toolbox for EV analysis.
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