微流控
吞吐量
纳米颗粒
浓度梯度
纳米技术
微流控芯片
人口
发电机(电路理论)
化学
生物系统
材料科学
计算机科学
色谱法
物理
生物
功率(物理)
量子力学
人口学
无线
社会学
电信
作者
Xiaoyan Liu,Yuexiao Jia,Ziwei Han,Qinghong Hou,Wei Zhang,Wenfu Zheng,Xingyu Jiang
标识
DOI:10.1002/anie.202101293
摘要
We herein develop a concentration gradient generator (CGG) on a microfluidic chip for diluting different nanoparticles. Specifically designed compact disk (CD)-shaped microchannels in the CGG module could thoroughly mix the flowing solutions and generate a linear concentration gradient of nanoparticles without aggregation. We combine the CGG with a single-cell trapper array (SCA) on microfluidics to evaluate the concentration-dependent bioeffects of the nanoparticles. The precise control of the spatiotemporal generation of nanoparticle concentration on the CGG module and the single-cell-level monitoring of the cell behaviors on the SCA module by a high-content system in real time, render the CGG-SCA system a highly precise platform, which can exclude the average effect of cell population and reflect the response of individual cells to the gradient concentrations accurately. In addition, the CGG-SCA system provides an automated platform for high-throughput screening of nanomedicines with high precision and low sample consumption.
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