Torrini Francesca, Frigerio Roberto, Garlipp Jonathan, Lenzen Philippe, Normak Karl, Paganini Carolina, Cretich Marina, Gori Alessandro, Arosio Paolo
Department of Chemistry and Applied Biosciences, Institute for Chemical and Bioengineering, ETH Zurich, Zurich, 8093, Switzerland.
Consiglio Nazionale delle Ricerche, Istituto di Scienze e Tecnologie Chimiche "Giulio Natta" (SCITEC), Milan, 20131, Italy.
Adv Sci (Weinh). 2025 May;12(20):e2411653. doi: 10.1002/advs.202411653. Epub 2025 Apr 15.
Extracellular vesicles (EVs) hold promise for liquid biopsy and drug delivery applications. However, their heterogeneous nature poses challenges for efficient and selective isolation from complex biofluids. Here, an isolation method based on phase-separated zwitterionic (ZW) coacervates is developed. These coacervates form over a wide range of pH values and ionic strengths, ensuring compatibility with all biofluids. They exhibit antifouling properties that minimize nonspecific binding, allowing for the selective isolation of EVs from biofluids upon functionalization of the polymer with a suitable affinity probe, as proved here with a membrane-sensing peptide. This strategy is applied to pull down, concentrate, and release EVs from urine samples with high yields while retaining their structural integrity. This approach effectively separates EVs from lipoproteins, a challenging task for conventional separation techniques. The power of the approach is demonstrated as a preparative step for downstream analysis and as a one-pot assay to profile EV biomarkers in complex fluids. The latter application, implemented here with flow cytometry, significantly streamlines pre-analytical workflows. Thus, functionalized ZW coacervates represent an effective strategy for the selective isolation and direct analysis of EVs from complex mixtures, paving the way for advances in large-scale manufacturing and diagnostics.
细胞外囊泡(EVs)在液体活检和药物递送应用方面具有广阔前景。然而,其异质性给从复杂生物流体中高效、选择性地分离带来了挑战。在此,开发了一种基于相分离两性离子(ZW)凝聚层的分离方法。这些凝聚层在广泛的pH值和离子强度范围内形成,确保与所有生物流体兼容。它们具有防污性能,可将非特异性结合降至最低,在用合适的亲和探针使聚合物功能化后,能够从生物流体中选择性分离出EVs,本文用一种膜传感肽对此进行了验证。该策略用于从尿液样本中高效下拉、浓缩和释放EVs,同时保持其结构完整性。这种方法有效地将EVs与脂蛋白分离,这对传统分离技术来说是一项具有挑战性的任务。该方法的强大功能体现在作为下游分析的制备步骤以及作为一种用于分析复杂流体中EV生物标志物的一锅法检测中。后一种应用(本文通过流式细胞术实现)显著简化了分析前的工作流程。因此,功能化的ZW凝聚层是从复杂混合物中选择性分离和直接分析EVs的有效策略,为大规模制造和诊断的进展铺平了道路。