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在热塑芯片上进行快速且廉价的血型鉴定。

Rapid and inexpensive blood typing on thermoplastic chips.

机构信息

Graduate Institute of Biomedical Engineering, National Chung Hsing University, Taichung 402, Taiwan.

出版信息

Lab Chip. 2015 Dec 21;15(24):4533-41. doi: 10.1039/c5lc01172h. Epub 2015 Nov 4.

Abstract

A portable and cost-effective colorimetric diagnostic device was fabricated for rapid ABO and Rh blood typing. Using microfluidic construction on a thermoplastic chip, blood antibodies were preloaded into a reaction channel and exposed to blood samples to initiate a haemagglutination reaction. Downstream high-aspect ratio filters, composed of 2 μm high microslits, block agglutinated red blood cells (RBCs) to turn the reaction channel red, indicating the presence of the corresponding blood antigen. Users manually actuate the blood sample using a simple screw pump that drives the solution through serpentine reaction channels and chaotic micromixers for maximum interaction of the preloaded antibodies with the blood sample antigens. Mismatched RBCs and antibodies elute from the channel into an outlet reservoir based on the rheological properties of RBCs with no colorimetric change. As a result, unambiguous blood typing tests can be distinguished by the naked eye in as little as 1 min. Blood disorders, such as thalassemia, can also be distinguished using the device. The required blood volume for the test is just 1 μL, which can be obtained by the less invasive finger pricking method. The low reagent consumption, manual driving force, low-cost of parts, high yield, and robust fabrication process make this device sensitive, accurate, and simple enough to use without specialized training in resource constrained settings.

摘要

我们研发了一种便携式、低成本的比色诊断设备,可用于快速进行 ABO 和 Rh 血型鉴定。我们在热塑性芯片上采用微流控技术,将血液抗体预先载入反应通道,并与血液样本接触以引发血凝反应。下游的高纵横比过滤器由 2 μm 高的微狭缝组成,可阻挡凝集的红细胞(RBC),使反应通道变红,从而表明存在相应的血液抗原。用户使用简单的螺旋泵手动驱动溶液流经蛇形反应通道和混沌微混合器,使预先载入的抗体与血液样本抗原充分相互作用。根据 RBC 的流变特性,不匹配的 RBC 和抗体从通道中洗脱到出口储液器中,不会发生比色变化。因此,肉眼可以在不到 1 分钟的时间内区分明确的血型测试。该设备还可用于区分血液疾病,如地中海贫血。测试所需的血量仅为 1 μL,可通过创伤较小的指尖采血法获得。该设备具有低试剂消耗、手动驱动力、低成本部件、高产量和稳健的制造工艺,使其在资源有限的环境中使用时既灵敏、准确又简单,无需专门培训。

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