Molecular Sciences and Nanotechnology, Louisiana Tech University, Ruston, LA, USA.
Micro and Nanoscale Systems Engineering, Louisiana Tech University, Ruston, LA, USA.
Talanta. 2022 Jan 1;236:122870. doi: 10.1016/j.talanta.2021.122870. Epub 2021 Sep 11.
Exosomes encapsulate genomic and proteomic biomarkers for non-invasive diagnosis and disease monitoring. However, exosome surface-markers heterogeneity is a major drawback of current isolation methods. Here, we report a direct, one-step exosome sampling technology, ExoPRIME, for selective capture of CD63 exosome subpopulations using an immune-affinity protocol. Microneedles (300μm × 30 mm), functionalized with anti-CD63 antibodies, were incubated under various experimental conditions in conditioned astrocyte medium and astrocyte-derived exosome suspension. The probe's capture efficiency and specificity were validated using FluoroCet assay, immunofluorescent imaging, and OMICS analyses. Significantly higher exosomes were captured by probes incubated for 16 h at 4 C in enriched exosomal suspension (23 × 10 exosomes per probe) vis-à-vis 2 h at 4 0 C (12 × 10 ) and 16 h at 22 C (3 × 10 ) in conditioned cell media. Our results demonstrate the application of ExoPRIME over a broad dynamic range of temperature and incubation parameters, offering flexibility for any desired application. ExoPRIME permits the use and re-use of minimal sample volumes (≤200 μL), can be multiplexed in arrays, and integrated into a lab-on-a-chip platform to achieve parallel, high-throughput isolation of different exosome classes in a semi-automated workstation. This platform could provide direct exosomal analysis of biological fluids since it can elegantly interface with existing room-temperature, picomolar-range nucleic acid assays to provide a clinical diagnostic tool at the point of care.
外泌体封装了用于非侵入性诊断和疾病监测的基因组和蛋白质组生物标志物。然而,外泌体表面标志物的异质性是当前分离方法的主要缺点。在这里,我们报告了一种直接的、一步式的外泌体采样技术 ExoPRIME,该技术使用免疫亲和方案选择性捕获 CD63 外泌体亚群。用抗 CD63 抗体功能化的微针(300μm×30mm)在条件化星形胶质细胞培养基和星形胶质细胞衍生的外泌体悬浮液中,在各种实验条件下孵育。使用 FluoroCet 测定法、免疫荧光成像和 OMICS 分析验证了探针的捕获效率和特异性。在用富含外泌体的悬浮液在 4°C 孵育 16 小时的探针上,显著增加了外泌体的捕获量(每个探针 23×10 个外泌体),而在 4°C 孵育 2 小时(12×10 个)和 22°C 孵育 16 小时(3×10 个)则减少了(在条件化细胞培养基中)。我们的结果表明,ExoPRIME 可以在广泛的温度和孵育参数范围内应用,为任何所需的应用提供了灵活性。ExoPRIME 允许使用和重复使用最小的样本量(≤200μL),可以在阵列中进行多重化,并集成到芯片实验室平台中,以在半自动工作站中实现不同外泌体类别的平行、高通量分离。由于它可以与现有的室温、皮摩尔范围内的核酸测定法优雅地接口,为即时护理提供临床诊断工具,因此该平台可以提供对外泌体的直接分析。