微流控
微尺度化学
自愈水凝胶
纳米技术
单元格排序
细胞包封
微流控芯片
材料科学
吞吐量
实验室晶片
单细胞分析
化学
细胞
计算机科学
电信
数学教育
高分子化学
生物化学
无线
数学
作者
Lang Nan,Zhenyu Yang,Hao Lyu,Kitty Yu-Yeung Lau,Ho Cheung Shum
标识
DOI:10.1002/adbi.201900076
摘要
Single-cell analysis has shown great potential to fully quantify the distribution of cellular behaviors among a population of individuals. Through isolation and preservation of single cells in the aqueous phase, droplet encapsulation followed by gelation enables high-throughput analysis in biocompatible microgels. However, the lack of control over the number of cells encapsulated and complicated gelation processes significantly limit its efficiency. Here, a microfluidic system for one-chip harvesting of single-cell-laden microgels is presented. Through ultraviolet irradiation, an on-chip gelation technique is seamlessly combined with droplet generation to realize high-throughput fabrication of microscale hydrogels in microfluidic channel. Moreover, a sorting module is introduced to simultaneously complete cell-laden microgel selection and transfer into culture medium. To demonstrate the efficiency of this method, two types of single cells are respectively encapsulated and collected, showing desirable single-cell encapsulation and cell viability. This technique realizes integrated droplet gelation, microgel sorting, and transfer into culture medium, allowing high-throughput analysis of single cells and comprehensive understanding of the cellular specificity.
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