Department of Biosciences and Bioengineering, Indian Institute of Technology Guwahati , Guwahati 781039, Assam, India.
Biomicrofluidics. 2015 Apr 17;9(2):026502. doi: 10.1063/1.4918641. eCollection 2015 Mar.
This article describes a fabrication process for the generation of a leak proof paper based microfluidic device and a new design strategy for convenient incorporation of externally prepared test zones. Briefly, a negative photolithographic method was used to prepare the device with a partial photoresist layer on the rear of the device to block the leakage of sample. Microscopy and Field Emission Scanning Electron Microscopy data validated the formation of the photoresist layer. The partial layer of photoresist on the device channel limits sample volume to 7 ± 0.2 μl as compared to devices without the partial photoresist layer which requires a larger sample volume of 10 ± 0.1 μl. The design prototype with a customized external test zone exploits the channel protrusions on the UV exposed photoresist treated paper to bridge the externally applied test zone to the sample and absorbent zones. The partially laminated device with an external test zone has a comparatively low wicking speed of 1.8 ± 0.9 mm/min compared to the completely laminated device with an inbuilt test zone (3.3 ± 1.2 mm/min) which extends the reaction time between the analyte and reagents. The efficacy of the prepared device was studied with colorimetric assays for the non-specific detection of protein by tetrabromophenol blue, acid/base with phenolphthalein indicator, and specific detection of proteins using the HRP-DAB chemistry. The prepared device has the potential for leak proof detection of analyte, requires low sample volume, involves reduced cost of production (∼$0.03, excluding reagent and lamination cost), and enables the integration of customized test zones.
本文描述了一种制造防漏纸基微流控装置的工艺,以及一种方便引入外部制备的测试区的新设计策略。简而言之,采用负光刻法制备该装置,在装置背面保留部分光刻胶层以阻挡样品泄漏。显微镜和场发射扫描电子显微镜数据验证了光刻胶层的形成。与没有部分光刻胶层的器件相比,器件通道上的部分光刻胶层将样品体积限制在 7±0.2μl,而没有部分光刻胶层的器件需要更大的样品体积 10±0.1μl。带有定制外部测试区的设计原型利用 UV 曝光处理过的纸上的通道凸起将外部施加的测试区与样品和吸收区连接起来。与具有内置测试区的完全层压器件相比,具有外部测试区的部分层压器件的吸液速度相对较低,为 1.8±0.9mm/min,这延长了分析物与试剂之间的反应时间。通过使用四溴苯酚蓝进行非特异性蛋白质检测、使用酚酞指示剂进行酸碱检测以及使用 HRP-DAB 化学进行特异性蛋白质检测,对制备的器件进行了评估。该制备的装置具有防漏检测分析物的潜力,需要的样品体积较小,生产成本降低(约 0.03 美元,不包括试剂和层压成本),并且能够集成定制的测试区。