Crump Institute for Molecular Imaging, University of California, Los Angeles, Los Angeles, CA, USA.
Lab Chip. 2012 Sep 21;12(18):3331-40. doi: 10.1039/c2lc40244k. Epub 2012 Jul 23.
Digital microfluidic chips provide a new platform for manipulating chemicals for multi-step chemical synthesis or assays at the microscale. The organic solvents and reagents needed for these applications are often volatile, sensitive to contamination, and wetting, i.e. have contact angles of <90° even on the highly hydrophobic surfaces (e.g., Teflon® or Cytop®) typically used on digital microfluidic chips. Furthermore, often the applications dictate that the processes are performed in a gas environment, not allowing the use of a filler liquid (e.g., oil). These properties pose challenges for delivering controlled volumes of liquid to the chip. An automated, simple, accurate and reliable method of delivering reagents from sealed, off-chip reservoirs is presented here. This platform overcomes the issues of evaporative losses of volatile solvents, cross-contamination, and flooding of the chip by combining a syringe pump, a simple on-chip liquid detector and a robust interface design. The impedance-based liquid detection requires only minimal added hardware to provide a feedback signal to ensure accurate volumes of volatile solvents are introduced to the chip, independent of time delays between dispensing operations. On-demand dispensing of multiple droplets of acetonitrile, a frequently used but difficult to handle solvent due to its wetting properties and volatility, was demonstrated and used to synthesize the positron emission tomography (PET) probe [(18)F]FDG reliably.
数字微流控芯片为在微尺度上进行多步化学合成或分析提供了一个新的平台,用于操控化学品。这些应用所需的有机溶剂和试剂通常是挥发性的、易受污染的,且具有润湿性,即在高度疏水性表面(例如,通常用于数字微流控芯片的特氟龙或 Cytop)上接触角<90°。此外,通常应用要求在气体环境中进行这些过程,不允许使用填充液体(例如油)。这些性质给向芯片输送受控体积的液体带来了挑战。本文提出了一种从密封的、离片的储液器中自动、简单、准确和可靠地输送试剂的方法。该平台通过结合注射器泵、简单的片上液体检测器和稳健的接口设计,克服了挥发性溶剂蒸发损失、交叉污染和芯片淹没的问题。基于阻抗的液体检测仅需要最小的附加硬件即可提供反馈信号,以确保将挥发性溶剂的准确体积引入芯片,而与分配操作之间的时间延迟无关。按需分配乙腈的多个液滴,乙腈是一种常用但难以处理的溶剂,由于其润湿性和挥发性,展示并用于可靠地合成正电子发射断层扫描 (PET) 探针 [(18)F]FDG。