School of Mechanical Engineering, Yonsei University, Seoul, 03722, Republic of Korea.
The DABOM Inc., Republic of Korea.
Analyst. 2022 Mar 14;147(6):1117-1127. doi: 10.1039/d1an02220b.
Extracellular vesicles (EVs) are recognized as promising biomarkers for several diseases. However, their conventional isolation methods have several drawbacks, such as poor yields, low purity, and time-consuming operations. Therefore, a simple, low-cost, and rapid microfluidic platform has been extensively developed to meet the requirement in biomedical applications. Herein, a modular microfluidic platform is demonstrated to isolate and enrich EVs directly from plasma, in a combination of continuous capture and purification of EVs. The EVs were selectively captured by target-specific antibody-coated beads in a horseshoe-shaped orifice micromixer (HOMM) chip within 2 min. A fish-trap-shaped microfilter unit was subsequently used to elute and purify the affinity-induced captured EVs from the microbeads. The ability of the modular chip to capture, enrich, and release EVs was demonstrated in 5 min (100 μL sample) at high throughput (100 μL min). The two chips can be modularized or individually operated, depending on the clinical applications such as diagnostics and therapeutics. For the diagnostic applications, the EVs on microbeads can be directly subjected to the molecular analysis whereas the pure EVs should be released from the microbeads for the therapeutic treatments. This study reveals that the fabricated modular chip can be appropriately employed as a platform for EV-related research tools.
细胞外囊泡 (EVs) 被认为是多种疾病有前途的生物标志物。然而,它们的常规分离方法存在几个缺点,例如产量低、纯度低和操作耗时。因此,已经广泛开发了一种简单、低成本和快速的微流控平台,以满足生物医学应用中的要求。本文展示了一种模块化微流控平台,用于直接从血浆中分离和富集 EVs,结合了 EVs 的连续捕获和纯化。在马蹄形孔微混合器 (HOMM) 芯片内,通过目标特异性抗体包被的珠在 2 分钟内选择性地捕获 EVs。随后使用鱼笼形微滤单元从微珠上洗脱和纯化亲和诱导捕获的 EVs。该模块化芯片能够在 5 分钟(100 μL 样品)内以高通量(100 μL min)捕获、富集和释放 EVs。两个芯片可以根据临床应用(如诊断和治疗)进行模块化或单独操作。对于诊断应用,微珠上的 EVs 可以直接进行分子分析,而对于治疗应用,则应从微珠上释放出纯净的 EVs。本研究表明,所制造的模块化芯片可作为 EV 相关研究工具的平台。