Samae Mahdee, Chatpun Surapong, Chirasatitsin Somyot
Department of Biomedical Sciences and Biomedical Engineering, Faculty of Medicine, Prince of Songkla University, Hat Yai 90110, Thailand.
Micromachines (Basel). 2021 Dec 9;12(12):1533. doi: 10.3390/mi12121533.
Hemagglutination is a critical reaction that occurs when antigens expressed on red blood cells (RBCs) react with the antibodies used for blood typing. Even though blood typing devices have been introduced to the market, they continue to face several limitations in terms of observation by the eye alone, blood manipulation difficulties, and the need for large-scale equipment, particularly process automated machines. Thus, this study aimed to design, fabricate, and test a novel hybrid passive microfluidic chip made of filter paper and polymer using a cost-effective xurography manufacturing technique. This chip is referred to as the microfluidic paper-plastic hybrid passive device (PPHD). A passive PPHD does not require external sources, such as a syringe pump. It is composed of a paper-based component that contains dried antibodies within its porous paper and a polymer component that serves as the detection zone. A single blood sample was injected into the chip's inlet, and classification was determined using the mean intensity image. The results indicated that embedded antibodies were capable of causing RBC agglutination without a saline washing step and that the results could be classified as obviously agglutination or nonagglutination for blood typing using both the naked eye and a mean intensity image. As a proof-of-concept, this study demonstrated efficiency in quantitative hemagglutination measurement within a passive PPHD for blood typing, which could be used to simplify blood biomarker analysis.
血凝反应是一种关键反应,当红细胞(RBC)上表达的抗原与用于血型鉴定的抗体发生反应时就会出现。尽管血型鉴定设备已投放市场,但仅靠肉眼观察、血液操作困难以及需要大型设备(特别是过程自动化机器)等方面,它们仍面临一些局限性。因此,本研究旨在使用具有成本效益的刻写制版制造技术,设计、制造并测试一种由滤纸和聚合物制成的新型混合无源微流控芯片。该芯片被称为微流控纸塑混合无源装置(PPHD)。无源PPHD不需要外部源,如注射泵。它由一个纸质部件和一个聚合物部件组成,纸质部件在其多孔纸内含有干燥的抗体,聚合物部件用作检测区。将单个血样注入芯片的入口,并使用平均强度图像进行分类。结果表明,嵌入的抗体能够在不进行盐水洗涤步骤的情况下引起红细胞凝集,并且使用肉眼和平均强度图像,结果都可以分类为明显凝集或非凝集以进行血型鉴定。作为概念验证,本研究证明了在用于血型鉴定的无源PPHD中进行定量血凝测量的效率,这可用于简化血液生物标志物分析。