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EV Separation: Release of Intact Extracellular Vesicles Immunocaptured on Magnetic Particles

机译:EV分离:在磁性颗粒上释放完整的细胞外囊泡

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摘要

Extracellular vesicles (EVs) have attracted considerable interest due to their role in cell–cell communication, disease diagnosis, and drug delivery. Despite their potential in the medical field, there is no consensus on the best method for separating micro- and nanovesicles from cell culture supernatant and complex biological fluids. Obtaining a good recovery yield and preserving physical characteristics is critical for the diagnostic and therapeutic use of EVs. The separation of a single class of EVs, such as exosomes, is complex because blood and cell culture media contain many nanoparticles in the same size range. Methods that exploit immunoaffinity capture provide high-purity samples and overcome the issues of currently used separation methods. However, the release of captured nanovesicles usually requires harsh conditions that hinder their use in certain types of downstream analysis. A novel capture and release approach for small extracellular vesicles (sEVs) is presented based on DNA-directed immobilization of antiCD63 antibody. The flexible DNA linker increases the capture efficiency and allows for releasing EVs by exploiting the endonuclease activity of DNAse I. This separation protocol works under mild conditions, enabling the release of vesicles suitable for analysis by imaging techniques. In this study, sEVs recovered from plasma were characterized by established techniques for EV analysis, including nanoparticle tracking and transmission electron microscopy.
机译:细胞外小泡(Extracellular vesicles,EV)因其在细胞间通讯、疾病诊断和药物传递中的作用而引起了广泛关注。尽管它们在医学领域具有潜力,但从细胞培养上清液和复杂的生物液体中分离微泡和纳米泡的最佳方法尚未达成共识。获得良好的恢复率和保持物理特性对于EVs的诊断和治疗用途至关重要。由于血液和细胞培养基中含有许多大小相同的纳米颗粒,单个EV类(如外显体)的分离非常复杂。利用免疫亲和捕获的方法提供高纯度样品,并克服了目前使用的分离方法的问题。然而,释放捕获的纳米囊泡通常需要苛刻的条件,这阻碍了它们在某些类型的下游分析中的应用。基于DNA定向固定抗D63抗体,提出了一种新的细胞外小泡(SEV)捕获和释放方法。柔性DNA连接器提高了捕获效率,并允许通过利用DNA酶I的内切酶活性释放EV。该分离方案在温和条件下工作,能够释放适合通过成像技术分析的囊泡。在这项研究中,通过已建立的EV分析技术,包括纳米粒子追踪和透射电子显微镜,对从血浆中回收的SEV进行了表征。

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  • 来源
    《Analytical chemistry》 |2021年第13期|共8页
  • 作者单位

    Institute of Chemical Science and Technology “Giulio Natta” National Research Council of Italy (CNR-SCITEC) via Mario Bianco;

    Institute of Chemical Science and Technology “Giulio Natta” National Research Council of Italy (CNR-SCITEC) via Mario Bianco;

    Institute of Chemical Science and Technology “Giulio Natta” National Research Council of Italy (CNR-SCITEC);

    Institute of Chemical Science and Technology “Giulio Natta” National Research Council of Italy (CNR-SCITEC) via Mario Bianco;

    Exosomics Siena S.p.A;

    Exosomics Siena S.p.A;

    Exosomics Siena S.p.A;

    Department of Life Health and Environmental Sciences University of L’Aquila via Vetoio Coppito;

    Department of Life Health and Environmental Sciences University of L’Aquila via Vetoio Coppito;

    Urological Research Institute Division of Experimental Oncology IRCCS San Raffaele Scientific Institute;

    Department of Molecular Biology of Cancer Medical University of Lodz;

    Department of Bioorganic Chemistry Centre of Molecular and Macromolecular Studies Polish Academy of Sciences;

    Department of Bioorganic Chemistry Centre of Molecular and Macromolecular Studies Polish Academy of Sciences;

    Urological Research Institute Division of Experimental Oncology IRCCS San Raffaele Scientific Institute;

    Institute of Chemical Science and Technology “Giulio Natta” National Research Council of Italy (CNR-SCITEC) via Mario Bianco;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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