Asawakarn Sariya, Pimpin Alongkorn, Jeamsaksiri Wutthinan, Sripumkhai Witsaroot, Jitsamai Wanarit, Taweethavonsawat Piyanan, Piyaviriyakul Prapruddee
Biochemistry Unit, Department of Veterinary Physiology, Faculty of Veterinary Science, Chulalongkorn University, Bangkok, Thailand.
Biomarkers in Animal Parasitology Research Group, Chulalongkorn University, Bangkok, Thailand.
Front Vet Sci. 2023 Jan 6;9:1048131. doi: 10.3389/fvets.2022.1048131. eCollection 2022.
The rectangular filtering microfluidic chip was invented using microfluidics device fabrication technology and can separate living microfilariae from blood samples without a syringe pump. The diagnostic results are highly effective. The device is based on the principle of separating millions of blood cells from microfilariae using a rectangular filter structure. It disperses fluid evenly into the flow-passage channel, and its rectangular filter structure is the key to success in reducing the pressure and separating blood cells from microfilariae effectively. The flow rate and blood cell concentration were optimized in our study. The chip is intended to be a point-of-care device that can reduce the use of superfluous instrumentation in the field. The technology is designed to be rapid, accurate, and easy-to-use for all users, especially those in remote areas.
矩形过滤微流控芯片是利用微流控设备制造技术发明的,无需注射泵就能从血样中分离出活的微丝蚴。诊断结果非常有效。该设备基于使用矩形过滤器结构从微丝蚴中分离数百万血细胞的原理。它将流体均匀地分散到流道中,其矩形过滤器结构是有效降低压力并从微丝蚴中分离血细胞成功的关键。在我们的研究中对流速和血细胞浓度进行了优化。该芯片旨在成为一种即时检测设备,可减少现场多余仪器的使用。该技术设计得快速、准确且对所有用户都易于使用,尤其是偏远地区的用户。