IET Nanobiotechnol. 2014 Mar;8(1):2-9. doi: 10.1049/iet-nbt.2013.0028.
Isolation of cells from heterogeneous biological samples is critical in both basic biological research and clinical diagnostics. Affinity-based methods, such as those that recognise cells by binding antibodies to cell membrane biomarkers, can be used to achieve specific cell isolation. Microfluidic techniques have been employed to achieve more efficient and effective cell isolation. By employing aptamers as surface-immobilised ligands, cells can be easily released and collected after specific capture. However, these methods still have limitations in cell release efficiency and spatial selectivity. This study presents an aptamer-based microfluidic device that not only achieves specific affinity cell capture, but also enables spatially selective temperature-mediated release and retrieval of cells without detectable damage. The specific cell capture is realised by using surface-patterned aptamers in a microchamber on a temperature-control chip. Spatially selective cell release is achieved by utilising a group of microheater and temperature sensor that restricts temperature changes, and therefore the disruption of cell-aptamer interactions, to a design-specified region. Experimental results with CCRF-CEM cells and sgc8c aptamers have demonstrated the specific cell capture and temperature-mediated release of selected groups of cells with negligible disruption to their viability.
从异质生物样本中分离细胞在基础生物学研究和临床诊断中都至关重要。基于亲和性的方法,例如通过将抗体结合到细胞膜生物标志物上来识别细胞的方法,可以用于实现特定细胞的分离。微流控技术已被用于实现更高效和有效的细胞分离。通过将适体作为表面固定化配体,在特定捕获后可以轻松释放和收集细胞。然而,这些方法在细胞释放效率和空间选择性方面仍然存在局限性。本研究提出了一种基于适体的微流控装置,不仅可以实现特定的亲和性细胞捕获,还可以实现空间选择性的温度介导的释放和细胞的回收,而不会对细胞造成可检测的损伤。通过在温度控制芯片上的微室中的表面图案化适体实现特定细胞的捕获。通过利用一组微加热器和温度传感器来实现空间选择性的细胞释放,该组微加热器和温度传感器限制了温度变化,从而限制了细胞-适体相互作用的破坏,使其局限于设计指定的区域。使用 CCRF-CEM 细胞和 sgc8c 适体的实验结果表明,可以实现特定细胞的捕获和温度介导的选定细胞群的释放,而对其活力几乎没有破坏。