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Impact of isolation methods on the biophysical heterogeneity of single extracellular vesicles

机译:隔离方法对单细胞外囊囊泡生物物理异质性的影响

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Extracellular vesicles (EVs) have raised high expectations as a novel class of diagnostics and therapeutics. However, variabilities in EV isolation methods and the unresolved structural complexity of these biological-nanoparticles (sub-100?nm) necessitate rigorous biophysical characterization of single EVs. Here, using atomic force microscopy (AFM) in conjunction with direct stochastic optical reconstruction microscopy (dSTORM), micro-fluidic resistive pore sizing (MRPS), and multi-angle light scattering (MALS) techniques, we compared the size, structure and unique surface properties of breast cancer cell-derived small EVs (sEV) obtained using four different isolation methods. AFM and dSTORM particle size distributions showed coherent unimodal and bimodal particle size populations isolated via centrifugation and immune-affinity methods respectively. More importantly, AFM imaging revealed striking differences in sEV nanoscale morphology, surface nano-roughness, and relative abundance of non-vesicles among different isolation methods. Precipitation-based isolation method exhibited the highest particle counts, yet nanoscale imaging revealed the additional presence of aggregates and polymeric residues. Together, our findings demonstrate the significance of orthogonal label-free surface characteristics of single sEVs, not discernable via conventional particle sizing and counts alone. Quantifying key nanoscale structural characteristics of sEVs, collectively termed ‘EV-nano-metrics’ enhances the understanding of the complexity and heterogeneity of sEV isolates, with broad implications for EV-analyte based research and clinical use.
机译:细胞外囊泡(EVS)提高了作为一种新型诊断和治疗剂的预期。然而,EV隔离方法中的变形性和这些生物纳米颗粒的未解决的结构复杂性(Sub-100?NM)需要对单eV的严格生物物理表征。这里,使用原子力显微镜(AFM)与直接随机光学重建显微镜(Dstorm),微流体电阻孔施胶(MRP)和多角度光散射(MALS)技术,我们比较尺寸,结构和独特使用四种不同的隔离方法获得的乳腺癌细胞衍生的小EVS(eV)的表面性质。 AFM和Dstorm粒度分布显示了通过离心和免疫亲和力方法分离隔离的连贯的单峰和双峰粒度群。更重要的是,AFM成像揭示了不同隔离方法中的SEV纳米级形态,表面纳米粗糙度和非囊泡的相对丰度的显着差异。沉淀的分离方法表现出最高的颗粒计数,但纳米级成像显示出聚集体和聚合物残留物的另外存在。我们的研究结果一起证明了单一SEV的无间隙无标记表面特性的重要性,不能通过常规颗粒尺寸和单独进行辨认。量化关键纳米级结构特征,统称为“EV-Nan-Metrics”增强了对SEV分离株的复杂性和异质性的理解,对基于EV-Analyte的研究和临床用途的广泛意义。

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