State Key Laboratory of Medicinal Chemical Biology, Research Center for Analytical Sciences, and Tianjin Key Laboratory of Molecular Recognition and Biosensing, College of Chemistry, Nankai University, Tianjin, 300071, China.
Department of Colorectal Surgery, Tianjin Union Medical Center, Tianjin Institute of Coloproctology, Tianjin, 300000, China.
Small Methods. 2022 Feb;6(2):e2101234. doi: 10.1002/smtd.202101234. Epub 2021 Dec 19.
Exosomes, ranging from 30-150 nm in diameter, have emerged as promising non-invasive biomarkers for the diagnosis and prognosis of numerous diseases. However, current research on exosomes is largely restricted by the lack of an efficient method to isolate exosomes from real samples. Herein, the first stimuli-mediated enrichment and purification system to selectively and efficiently extract exosomes from clinical plasma for high-throughput profiling of exosomal mRNAs as cancer biomarkers is presented. This novel isolation system relies on specific installation of the stimuli-responsive copolymers onto exosomal phospholipid bilayers, by which the enrichment and purification are exclusively achieved for exosomes rather than the non-vesicle counterparts co-existing in real samples. The stimuli-mediated isolation system outperforms conventional methods such as ultracentrifugation and polyethylene glycol-based precipitation in terms of isolation yield, purity, and retained bioactivity. The high performance of the isolation system is demonstrated by enriching exosomes from 77 blood plasma samples and validated the clinical potentials in profiling exosomal mRNAs for cancer diagnosis and discrimination with high accuracy. This simple isolation system can boost the development of extracellular vesicle research, not limited to exosomes, in both basic and clinical settings.
外泌体的直径在 30-150nm 之间,它们已成为诊断和预测许多疾病的有前途的非侵入性生物标志物。然而,目前对外泌体的研究在很大程度上受到缺乏从实际样本中有效分离外泌体的方法的限制。在此,提出了第一个刺激介导的富集和纯化系统,用于从临床血浆中选择性和有效地提取外泌体,以高通量分析外泌体 mRNA 作为癌症生物标志物。这种新型分离系统依赖于将刺激响应性共聚物特异性地安装到外泌体磷脂双层上,通过这种方式,仅对外泌体进行富集和纯化,而不是对与真实样品中共同存在的非囊泡对应物进行富集和纯化。与超速离心和基于聚乙二醇的沉淀等传统方法相比,刺激介导的分离系统在分离效率、纯度和保留的生物活性方面表现出色。该分离系统的高性能通过从 77 个血浆样本中富集外泌体得到了证明,并通过高准确度的癌症诊断和区分对外泌体 mRNA 进行分析,验证了其临床潜力。这种简单的分离系统可以促进细胞外囊泡研究的发展,不仅限于外泌体,无论是在基础研究还是临床环境中。