Robert Bosch GmbH, Robert-Bosch-Platz 1, 70839 Gerlingen, Germany.
Lab Chip. 2015 Jul 7;15(13):2887-95. doi: 10.1039/c5lc00510h. Epub 2015 Jun 3.
Liquids on-chip describes a reagent storage concept for disposable pressure driven Lab-on-Chip (LoC) devices, which enables liquid storage in reservoirs without additional packaging. On-chip storage of liquids can be considered as one of the major challenges for the commercial break through of polymer-based LoC devices. Especially the ability for long-term storage and reagent release on demand are the most important aspects for a fully developed technology. On-chip storage not only replaces manual pipetting, it creates numerous advantages: fully automated processing, ease of use, reduction of contamination and transportation risks. Previous concepts for on-chip storage are based on liquid packaging solutions (e.g. stick packs, blisters, glass ampoules), which implicate manufacturing complexity and additional pick and place processes. That is why we prefer on-chip storage of liquids directly in reservoirs. The liquids are collected in reservoirs, which are made of high barrier polymers or coated by selected barrier layers. Therefore, commonly used polymers for LoC applications as cyclic olefin polymer (COP) and polycarbonate (PC) were investigated in the context of novel polymer composites. To ensure long-term stability the reservoirs are sealed with a commercially available barrier film by hot embossing. The barrier film is structured by pulsed laser ablation, which installs rated break points without affecting the barrier properties. A flexible membrane is actuated through pneumatic pressure for reagent release on demand. The membrane deflection breaks the barrier film and leads to efficient cleaning of the reservoirs in order to provide the liquids for further processing.
芯片上的液体描述了一种用于一次性压力驱动的微流控芯片 (LoC) 设备的试剂储存概念,它允许在没有额外包装的情况下在储液器中储存液体。芯片上的液体储存可以被认为是聚合物基 LoC 设备实现商业突破的主要挑战之一。特别是长期储存和按需释放试剂的能力是完全开发技术的最重要方面。芯片上的存储不仅取代了手动移液,还创造了许多优势:全自动处理、易于使用、减少污染和运输风险。以前的芯片上存储概念基于液体包装解决方案(例如,棒状包装、泡罩包装、玻璃安瓿),这涉及到制造复杂性和额外的拾取和放置工艺。这就是为什么我们更喜欢直接在储液器中储存芯片上的液体。液体被收集在储液器中,储液器由高阻隔聚合物制成或用选定的阻隔层进行涂层。因此,在新型聚合物复合材料的背景下,研究了常用于 LoC 应用的聚合物,如环状烯烃聚合物 (COP) 和聚碳酸酯 (PC)。为了确保长期稳定性,储液器通过热压印用市售阻隔膜密封。阻隔膜通过脉冲激光烧蚀进行结构化,这在不影响阻隔性能的情况下安装额定断点。通过气动压力致动柔性膜,按需释放试剂。膜的偏转让阻隔膜破裂,并有效地清洁储液器,以为进一步处理提供液体。