首页> 外文会议>Conference on microfluidics, bioMEMS, and medical microsystems XII >Capturing CD4 Cells using a Functionalized Circular Microfluidic Device and Glutaraldehyde as Biolinker for Tuberculosis Detection and Diagnosis
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Capturing CD4 Cells using a Functionalized Circular Microfluidic Device and Glutaraldehyde as Biolinker for Tuberculosis Detection and Diagnosis

机译:使用官能化圆形微流体装置和戊二醛作为结核检测和诊断的Biolinker捕获CD4细胞

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It is estimated that about one-third of the world's population has already been infected by tuberculosis. Mycobacterium tuberculosis, in general, can result in an active case of tuberculosis in approximately 5%-10% of those who suffer from latent tuberculosis and the chance of becoming ill is the highest within one of year of getting the disease. Although a newly developed methods called interferon gamma release assay (IGRA) can monitor CD4 cells secreted cytokine to diagnose tuberculosis (TB) condition. However, it is difficult to count total numbers of cytokine secreted CD4 cells, which make the diagnosis less accurate. Therefore, we develop a functionalized polydimethylsiloxane (PDMS) device using glutaraldehyde to capture CD4 cells. To enhance the capture efficiency, we use COMSOL simulation to optimize the arrangement of PDMS micro pillars to make cells uniformly distributed in the device. Our preliminary data showed the microfluidic configuration in a circular shape with HCP patterned micro pillars turned 30 degrees offers the highest cell capture rate.
机译:据估计,世界上三分之一的人口已经感染了结核病。一般来说,结核分枝杆菌可以导致结核病的活动案例,约5%-10%的人患有潜在结核病,并且变得生病的机会是患有疾病的一年中的最高。虽然新开发的方法称为干扰素γ释放测定(IGRA)可以监测CD4细胞分泌细胞因子以诊断结核病(TB)病症。然而,难以计算细胞因子分泌的CD4细胞总数,这使得诊断不太准确。因此,我们使用戊二醛开发官能化的聚二甲基硅氧烷(PDMS)装置以捕获CD4细胞。为了提高捕获效率,我们使用COMSOL仿真来优化PDMS微柱的布置,使装置均匀地分布在装置中。我们的初步数据显示了圆形形状的微流体构造,带有HCP图案微柱30度提供最高的细胞捕获率。

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