A microfluidic device for single cell isolation from rare samples

Chuan-Feng Yeh, Cheng-Kun He, Chia-Hsien Hsu
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Abstract

Increasing evidence has shown that heterogeneity in physiology and pathology have important implications for the treatment of human diseases. Single cell isolation and characterization studies are crucial for unlocking the complex regulation pathways underlying various diseases like cancer. However, to date single cell isolation still faces many challenges, especially in processing rare samples. Here, we present a novel microfluidic array chip for single cell isolation for rare samples. Our design exempts the use of long tubing, thus decreases cell loss from dead volume and allows for more accurate control of flow rate using syringe pumps during the cell capture process. Our data showed that the device significantly improved single cell capture efficiency (~ 60 %) from small numbers of (50-500) cells in a small volume (5-10 μL). The device could be used for isolating single cells from rare samples of clinical specimens, thus potentially benefit disease diagnosis and therapy.
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一种从稀有样品中分离单细胞的微流控装置
越来越多的证据表明,生理和病理的异质性对人类疾病的治疗具有重要意义。单细胞分离和表征研究对于揭示各种疾病(如癌症)背后的复杂调控途径至关重要。然而,迄今为止,单细胞分离仍然面临许多挑战,特别是在处理稀有样品方面。在这里,我们提出了一种新的微流控阵列芯片,用于罕见样品的单细胞分离。我们的设计免除了长管的使用,从而减少了死体积造成的细胞损失,并允许在细胞捕获过程中使用注射器泵更准确地控制流速。我们的数据表明,该装置显著提高了在小体积(5-10 μL)中对少量(50-500)细胞的单细胞捕获效率(~ 60%)。该装置可用于从罕见的临床标本中分离单细胞,从而潜在地有利于疾病的诊断和治疗。
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