Laboratory for Biomedical Photonics, Institute of Laser Engineering, Faculty of Materials and Manufacturing, Beijing University of Technology, Beijing 100124, China.
Department of Biomedical Engineering, James Watt School of Engineering, University of Glasgow, Glasgow G12 8LT, United Kingdom.
Anal Chem. 2024 Feb 6;96(5):1965-1976. doi: 10.1021/acs.analchem.3c04187. Epub 2024 Jan 24.
Exosomes have been established as a valuable tool for clinical applications for the purpose of liquid biopsy and therapy. However, the clinical practice of exosomes as cancer biopsy markers is still to a very low extent. Active mode optical microcavity with microlaser emission has aroused as a versatile approach for chemical and biological sensing due to its benefits of larger photon population, increased effective -factor, decreased line width, and improved sensitivity. Herein, we report a label-free and precise quantification of exosome vesicles and surface protein profiling of breast cancer exosomes using functionalized active whispering gallery mode (WGM) microlaser probes. A detection limit of 40 exosomes per microresonator was achieved. The proposed system enabled a pilot assay of quantitative exosome analysis in cancer patients' blood with only a few microliters of sample consumption, holding good potential for large-scale cancer liquid biopsy. Multiplexed functionalization of the optical microresonator allowed us to profile cancer exosomal surface markers and distinct subclasses of breast cancer-associated exosomes and monitor drug treatment outcomes. Our findings speak volumes about the advantages of the WGM microlaser sensor, including very small sample consumption, low detection limit, high specificity, and ease of operation, offering a promising means for precious clinical sample analysis.
外泌体已被确立为一种有价值的临床应用工具,用于液体活检和治疗。然而,外泌体作为癌症活检标志物的临床实践仍然处于很低的水平。具有微激光发射的主动模式光学微腔因其具有更大的光子数、增加的有效因子、减小的线宽和提高的灵敏度等优点,已成为化学和生物传感的一种多功能方法。在此,我们报告了使用功能化的主动 whispering gallery mode (WGM) 微激光探针对外泌体囊泡进行无标记和精确定量以及对外泌体表面蛋白进行分析。每个微谐振器的检测限达到了 40 个外泌体。该系统仅使用几微升的样本即可实现对癌症患者血液中外泌体的定量分析,具有大规模癌症液体活检的良好潜力。光学微谐振器的多重功能化使我们能够对外泌体表面标志物和乳腺癌相关外泌体的不同亚类进行分析,并监测药物治疗效果。我们的研究结果充分说明了 WGM 微激光传感器的优势,包括非常小的样本消耗、低检测限、高特异性和操作简便,为珍贵的临床样本分析提供了一种有前途的手段。