William G. Lowrie Department of Chemical and Biomolecular Engineering, The Ohio State University, Columbus, OH, 43210, USA.
Comprehensive Cancer Center, The Ohio State University, Columbus, OH, 43210, USA.
Sci Rep. 2021 Apr 13;11(1):8034. doi: 10.1038/s41598-021-86910-y.
Extracellular vesicles (EVs) derived from tumor cells have the potential to provide a much-needed source of non-invasive molecular biomarkers for liquid biopsies. However, current methods for EV isolation have limited specificity towards tumor-derived EVs that limit their clinical use. Here, we present an approach called immunomagnetic sequential ultrafiltration (iSUF) that consists of sequential stages of purification and enrichment of EVs in approximately 2 h. In iSUF, EVs present in different volumes of biofluids (0.5-100 mL) can be significantly enriched (up to 1000 times), with up to 99% removal of contaminating proteins (e.g., albumin). The EV recovery rate by iSUF for cell culture media (CCM), serum, and urine corresponded to 98.0% ± 3.6%, 96.0% ± 2.0% and 94.0% ± 1.9%, respectively (p > 0.05). The final step of iSUF enables the separation of tumor-specific EVs by incorporating immunomagnetic beads to target EV subpopulations. Serum from a cohort of clinical samples from metastatic breast cancer (BC) patients and healthy donors were processed by the iSUF platform and the isolated EVs from patients showed significantly higher expression levels of BC biomarkers (i.e., HER2, CD24, and miR21).
细胞外囊泡 (EVs) 来源于肿瘤细胞,有可能为液体活检提供急需的非侵入性分子生物标志物来源。然而,目前 EV 分离方法对肿瘤衍生 EV 的特异性有限,限制了它们的临床应用。在这里,我们提出了一种称为免疫磁序超滤 (iSUF) 的方法,该方法包括 EV 纯化和富集的连续阶段,大约需要 2 小时。在 iSUF 中,可以显著富集(最多 1000 倍)不同体积生物体液(0.5-100mL)中的 EV,同时去除多达 99%的污染蛋白(例如白蛋白)。iSUF 对细胞培养基 (CCM)、血清和尿液的 EV 回收率分别为 98.0%±3.6%、96.0%±2.0%和 94.0%±1.9%(p>0.05)。iSUF 的最后一步通过加入免疫磁珠来分离肿瘤特异性 EV,从而靶向 EV 亚群。对转移性乳腺癌 (BC) 患者和健康供体的临床样本队列的血清进行 iSUF 平台处理,患者分离的 EV 显示出明显更高水平的 BC 生物标志物(即 HER2、CD24 和 miR21)。