Department of Biomedical Engineering, University of California, Davis, CA, USA.
Lab Chip. 2011 Feb 21;11(4):727-32. doi: 10.1039/c0lc00384k. Epub 2010 Nov 25.
World-to-chip (macro-to-micro) interface continues to be one of the most complicated, ineffective, and unreliable components in the development of emerging lab-on-a-chip systems involving integrated microfluidic operations. A number of irreversible (e.g., adhesive gluing) and reversible techniques (e.g., press fitting) have attempted to provide dedicated fluidic passage from standard tubing to miniature on-chip devices, none of which completely addresses the above concerns. In this paper, we present standardized adhesive-free microfluidic adaptors, referred to as Fit-to-Flow (F2F) Interconnects, to achieve reliable hermetic seal, high-density tube packing, self-aligned plug-in, reworkable connectivity, straightforward scalability and expandability, and applicability to broad lab-on-a-chip platforms; analogous to the modular plug-and-play USB architecture employed in modern electronics. Specifically, two distinct physical packaging mechanisms are applied, with one utilizing induced tensile stress in elastomeric socket to establish reversible seal and the other using negative pressure to provide on demand vacuum shield, both of which can be adapted to a variety of experimental configurations. The non-leaking performance (up to 336 kPa) along with high tube-packing density (of 1 tube/mm(2)) and accurate self-guided alignment (of 10 μm) have been characterized. In addition, a 3D microfluidic mixer and a 6-level chemical gradient generator paired with the corresponding F2F Interconnects have been devised to illustrate the applicability of the universal fluidic connections to classic lab-on-a-chip operations.
从世界到芯片(宏到微)的接口仍然是涉及集成微流控操作的新兴微流控系统开发中最复杂、最无效和最不可靠的组件之一。许多不可逆转(例如,粘性胶合)和可逆技术(例如,压配合)试图从标准管提供专用的流体通道到微型芯片设备,但都没有完全解决上述问题。在本文中,我们提出了标准化的无胶微流适配器,称为适配流(F2F)接口,以实现可靠的密封、高密度管包装、自对准插件、可重新连接、简单的可扩展性和可扩展性,以及适用于广泛的微流控平台;类似于现代电子产品中使用的模块化即插即用 USB 架构。具体来说,应用了两种不同的物理封装机制,一种利用弹性插座中的拉伸应力来建立可逆密封,另一种利用负压提供按需真空屏蔽,这两种方法都可以适应各种实验配置。非泄漏性能(高达 336kPa)以及高密度管包装(1 管/mm²)和精确的自对准(10μm)已经得到了表征。此外,设计了一个 3D 微流混合器和一个 6 级化学梯度发生器,以及相应的 F2F 接口,以说明通用流体连接对经典微流控操作的适用性。