Southeast University, Key Laboratory of MEMS of Ministry of Education, Sipailou 2, Nanjing, 210096, China; ETH Zurich, Department of Biosystems Science and Engineering, Mattenstrasse 26, Basel, 4058, Switzerland.
Southeast University, Key Laboratory of MEMS of Ministry of Education, Sipailou 2, Nanjing, 210096, China.
Talanta. 2021 Aug 15;231:122401. doi: 10.1016/j.talanta.2021.122401. Epub 2021 Apr 20.
To facilitate in situ comparative culturing of budding yeast cells in a precisely controlled microenvironment, we developed a microfluidic single-cell array (MiSCA) with 96 traps (16 rows × 6 columns) for single-cell immobilization. Through optimization of the distances between neighboring traps and the applied flow rates by using a hydraulic equivalent circuit of the fluidic network, yeast cells were delivered to each column of the array by laminar focused flows and reliably captured at the traps by hydrodynamic forces with about 90% efficiency of cell immobilization. Immobilized cells in different columns within the same device can then be cultured in parallel while being exposed to different media and compounds delivered by laminar flows. For biological validation of the comparative cell-culturing device, we used budding yeast that can express yellow fluorescent protein upon the addition of β-estradiol in cell-culturing medium. Experimental results show successful induction of fluorescence in cells immobilized in desired columns that have been dosed with β-estradiol. The MiSCA system allows for performing sets of experiments and control experiments in parallel in the same device, or for executing comparative experiments under well-defined laminar-perfusion conditions with different media, as well as in situ monitoring of dynamic cellular responses upon different analytical compounds or reagents for single-cell analysis.
为了便于在精确控制的微环境中对出芽酵母细胞进行原位比较培养,我们开发了一种具有 96 个陷阱(16 行×6 列)的微流控单细胞阵列(MiSCA),用于单细胞固定。通过使用流体网络的液压等效电路优化相邻陷阱之间的距离和应用流速,酵母细胞通过层流聚焦流被递送到阵列的每一列,并通过流体动力可靠地捕获在陷阱中,细胞固定效率约为 90%。在同一装置中不同列中的固定细胞然后可以在暴露于不同培养基和化合物的情况下进行平行培养,这些化合物通过层流输送。为了对比较细胞培养装置进行生物学验证,我们使用了在细胞培养培养基中添加β-雌二醇后可以表达黄色荧光蛋白的出芽酵母。实验结果表明,在已添加β-雌二醇的期望列中固定的细胞中成功诱导了荧光。MiSCA 系统允许在同一装置中同时进行实验组和对照组实验,或者在具有不同培养基的明确定义的层流灌注条件下进行比较实验,以及对不同分析化合物或试剂进行原位监测单个细胞分析的动态细胞反应。