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Isolation of biologically active and morphologically intact exosomes from plasma of patients with cancer

机译:从癌症患者血浆中分离生物活性和形态完整的外来体

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Objective Isolation from human plasma of exosomes that retain functional and morphological integrity for probing their protein, lipid and nucleic acid content is a priority for the future use of exosomes as biomarkers. A method that meets these criteria and can be scaled up for patient monitoring is thus desirable. Methods Plasma specimens (1 mL) of patients with acute myeloid leukaemia (AML) or a head and neck squamous cell carcinoma (HNSCC) were differentially centrifuged, ultrafiltered and fractionated by size exclusion chromatography in small disposable columns (mini-SEC). Exosomes were eluted in phosphate-buffered saline and were evaluated by qNano for particle size and counts, morphology by transmission electron microscopy, protein content, molecular profiles by western blots, and for ability to modify functions of immune cells. Results Exosomes eluting in fractions #3–5 had a diameter ranging from 50 to 200 nm by qNano, with the fraction #4 containing the bulk of clean, unaggregated exosomes. The exosome elution profiles remained constant for repeated runs of the same plasma. Larger plasma volumes could be fractionated running multiple mini-SEC columns in parallel. Particle concentrations per millilitre of plasma in #4 fractions of AML and HNSCC were comparable and were higher (p<0.003) than those in normal controls. Isolated AML exosomes co-incubated with normal human NK cells inhibited NKG2D expression levels (p<0.004), and HNSCC exosomes suppressed activation (p<0.01) and proliferation of activated T lymphocytes (p<0.03). Conclusions Mini-SEC allows for simple and reproducible isolation from human plasma of exosomes retaining structural integrity and functional activity. It enables molecular/functional analysis of the exosome content in serial specimens of human plasma for clinical applications.
机译:客观地从人血浆中分离保持其功能和形态完整性以探测其蛋白质,脂质和核酸含量的外泌体,是将来将外泌体用作生物标记物的优先事项。因此,期望一种满足这些标准并且可以扩大规模以用于患者监测的方法。方法对急性髓细胞性白血病(AML)或头颈部鳞状细胞癌(HNSCC)患者的血浆标本(1 mL)在小型一次性色谱柱(mini-SEC)中进行大小离心分离,超滤和分级分离。将外泌体在磷酸盐缓冲液中洗脱,并通过qNano评估其粒径和计数,通过透射电子显微镜的形态,蛋白质含量,通过Western印迹的分子谱以及修饰免疫细胞功能的能力。结果用qNano洗脱在级分3-5中洗脱的外泌体的直径范围为50至200 nm,级分#4包含大量干净的未聚集外泌体。对于相同血浆的重复运行,外泌体洗脱曲线保持恒定。可以并行运行多个mini-SEC色谱柱来分离较大的血浆体积。 AML和HNSCC的#4馏分中每毫升血浆的颗粒浓度相当,并且比正常对照组更高(p <0.003)。与正常人NK细胞共孵育的分离AML外泌体抑制了NKG2D表达水平(p <0.004),而HNSCC外泌体抑制了活化(p <0.01)和活化T淋巴细胞的增殖(p <0.03)。结论Mini-SEC允许从人血浆中简单且可重现地分离外泌体,从而保留其结构完整性和功能活性。它可以对人血浆系列标本中的外泌体含量进行分子/功能分析,以用于临床应用。

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