School of Natural Sciences, Faculty of Science and Engineering, Macquarie University, NSW 2109, Australia.
Lab Chip. 2023 Jun 28;23(13):2899-2921. doi: 10.1039/d3lc00156c.
Cancer-derived small extracellular vesicles (sEVs) are specific subgroups of lipid bilayer vesicles secreted from cancer cells to the extracellular environment. They carry distinct biomolecules (, proteins, lipids and nucleic acids) from their parent cancer cells. Therefore, the analysis of cancer-derived sEVs can provide valuable information for cancer diagnosis. However, the use of cancer-derived sEVs in clinics is still limited due to their small size, low amounts in circulating fluids, and heterogeneous molecular features, making their isolation and analysis challenging. Recently, microfluidic technology has gained great attention for its ability to isolate sEVs in minimal volume. In addition, microfluidics allows the isolation and detection of sEVs to be integrated into a single device, offering new opportunities for clinical application. Among various detection techniques, surface-enhanced Raman scattering (SERS) has emerged as a promising candidate for integrating with microfluidic devices due to its ultra-sensitivity, stability, rapid readout, and multiplexing capability. In this tutorial review, we start with the design of microfluidics devices for isolation of sEVs and introduce the key factors to be considered for the design, and then discuss the integration of SERS and microfluidic devices by providing descriptive examples of the currently developed platforms. Lastly, we discuss the current limitations and provide our insights for utilising integrated SERS-microfluidics to isolate and analyse cancer-derived sEVs in clinical settings.
肿瘤来源的小细胞外囊泡(sEVs)是肿瘤细胞分泌到细胞外环境的双层脂囊泡的特定亚群。它们携带与其亲代肿瘤细胞不同的生物分子(蛋白质、脂质和核酸)。因此,对肿瘤来源的 sEVs 的分析可为癌症诊断提供有价值的信息。然而,由于其体积小、在循环液中含量低以及分子特征异质性,肿瘤来源的 sEVs 在临床上的应用仍然有限,这使得它们的分离和分析具有挑战性。最近,微流控技术因其能够在最小体积中分离 sEVs 而受到极大关注。此外,微流控技术允许将 sEVs 的分离和检测集成到单个设备中,为临床应用提供了新的机会。在各种检测技术中,表面增强拉曼散射(SERS)由于其超灵敏性、稳定性、快速读出和多路复用能力,已成为与微流控器件集成的有前途的候选技术。在本教程综述中,我们首先介绍了用于分离 sEVs 的微流控器件的设计,并介绍了设计时需要考虑的关键因素,然后通过提供当前开发平台的描述性示例,讨论了 SERS 和微流控器件的集成。最后,我们讨论了当前的限制,并对利用集成的 SERS-微流控技术在临床环境中分离和分析肿瘤来源的 sEVs 提出了我们的见解。