Calorimetry of extracellular vesicles fusion to single phospholipid membrane.

Q2 Biochemistry, Genetics and Molecular Biology
Miriam Grava, Sally Helmy, Mario Gimona, Pietro Parisse, Loredana Casalis, Paola Brocca, Valeria Rondelli
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引用次数: 2

Abstract

Extracellular vesicles (EVs)-mediated communication relies not only on the delivery of complex molecular cargoes as lipids, proteins, genetic material, and metabolites to their target cells but also on the modification of the cell surface local properties induced by the eventual fusion of EVs' membranes with the cells' plasma membrane. Here we applied scanning calorimetry to study the phase transition of single phospholipid (DMPC) monolamellar vesicles, investigating the thermodynamical effects caused by the fusion of doping amounts of mesenchymal stem cells-derived EVs. Specifically, we studied EVs-induced consequences on the lipids distributed in the differently curved membrane leaflets, having different density and order. The effect of EV components was found to be not homogeneous in the two leaflets, the inner (more disordered one) being mainly affected. Fusion resulted in phospholipid membrane flattening associated with lipid ordering, while the transition cooperativity, linked to membrane domains' coexistence during the transition process, was decreased. Our results open new horizons for the investigation of the peculiar effects of EVs of different origins on target cell membrane properties and functionality.

细胞外囊泡与单磷脂膜融合的量热法。
细胞外囊泡(EVs)介导的通讯不仅依赖于将复杂的分子货物(如脂质、蛋白质、遗传物质和代谢物)递送到靶细胞,而且还依赖于由EVs膜与细胞质膜最终融合引起的细胞表面局部特性的修饰。本文应用扫描量热法研究了单磷脂(DMPC)单层囊泡的相变,研究了掺杂量间充质干细胞衍生的ev融合所引起的热力学效应。具体而言,我们研究了ev诱导的脂质分布在不同弯曲的膜小叶中,具有不同的密度和顺序。结果表明,在两个叶片中,各组分的作用并不均匀,主要影响的是叶片内部(较混乱的叶片)。融合导致与脂质有序相关的磷脂膜变平,而与过渡过程中膜结构域共存相关的过渡协同性降低。我们的研究结果为研究不同来源的电动汽车对靶细胞膜特性和功能的特殊影响开辟了新的视野。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biomolecular Concepts
Biomolecular Concepts Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (all)
CiteScore
5.30
自引率
0.00%
发文量
27
审稿时长
12 weeks
期刊介绍: BioMolecular Concepts is a peer-reviewed open access journal fostering the integration of different fields of biomolecular research. The journal aims to provide expert summaries from prominent researchers, and conclusive extensions of research data leading to new and original, testable hypotheses. Aspects of research that can promote related fields, and lead to novel insight into biological mechanisms or potential medical applications are of special interest. Original research articles reporting new data of broad significance are also welcome. Topics: -cellular and molecular biology- genetics and epigenetics- biochemistry- structural biology- neurosciences- developmental biology- molecular medicine- pharmacology- microbiology- plant biology and biotechnology.
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