Department of Dermatology, University Medical Center Mainz, Mainz, Germany.
Max Planck Institute for Polymer Research, Mainz, Germany.
J Extracell Vesicles. 2023 Dec;12(12):e12399. doi: 10.1002/jev2.12399.
The influence of a protein corona on the uptake of nanoparticles in cells has been demonstrated in various publications over the last years. Extracellular vesicles (EVs), can be seen as natural nanoparticles. However, EVs are produced under different cell culture conditions and little is known about the protein corona forming on EVs and its influence on their uptake by target cells. Here, we use a proteomic approach in order to analyze the protein composition of the EVs themselves and the protein composition of a human blood plasma protein corona around EVs. Moreover, we analyze the influence of the protein corona on EV uptake into human monocytes and compare it with the influence on the uptake of engineered liposomes. We show that the presence of a protein corona increases the uptake of EVs in human monocytes. While for liposomes this seems to be triggered by the presence of immunoglobulins in the protein corona, for EVs blocking the Fc receptors on monocytes did not show an influence of uptake. Therefore, other mechanisms of docking to the cell membrane and uptake are most like involved, demonstrating a clear difference between EVs and liposomes as technically produced nanocarriers.
近年来,已有大量文献证明了蛋白质冠对纳米颗粒被细胞摄取的影响。细胞外囊泡(EVs)可被视为天然纳米颗粒。然而,EVs 是在不同的细胞培养条件下产生的,目前对于 EV 上形成的蛋白质冠及其对靶细胞摄取的影响知之甚少。在这里,我们使用蛋白质组学方法来分析 EV 本身的蛋白质组成以及 EV 周围人血浆蛋白质冠的蛋白质组成。此外,我们分析了蛋白质冠对 EV 进入人单核细胞摄取的影响,并将其与对工程脂质体摄取的影响进行了比较。我们发现蛋白质冠的存在会增加 EV 在人单核细胞中的摄取。而对于脂质体,这似乎是由蛋白质冠中的免疫球蛋白引起的,对于 EV,阻断单核细胞上的 Fc 受体并没有显示出摄取的影响。因此,其他与细胞膜对接和摄取的机制很可能涉及在内,这表明 EV 和脂质体作为技术生产的纳米载体之间存在明显的差异。