Optical-based microbubble for on-demand droplet release from static droplet array (SDA) for dispensing one droplet into one tube

微流控 氧化铟锡 纳米技术 移液管 材料科学 毛细管作用 微通道 管(容器) 按需 化学 图层(电子) 计算机科学 多媒体 物理化学 复合材料
作者
Zhidian Diao,Xixian Wang,Ping Zhang,Anle Ge,Teng Xu,Lingyan Kan,Yuandong Li,Yuetong Ji,Xiaoyan Jing,Jian Xu,Bo Ma
出处
期刊:Biosensors and Bioelectronics [Elsevier BV]
卷期号:240: 115639-115639
标识
DOI:10.1016/j.bios.2023.115639
摘要

Static droplet array (SDA) is a pivotal tool for high-capacity screening assays, yet extraction and collection the target droplets that contain unique analytes or cells from the SDA remains one major technical bottleneck that limits its broader application. Here we present an optical-based on-demand droplet release (OODR) system by incorporating a 1064 nm laser-responsive indium tin oxide (ITO) layer into a chamber array-based droplet microfluidic chip. By focusing the 1064 nm laser onto the ITO layer, microbubbles can be created via local heating to selectively push-out the droplets from the chamber. Then the released droplet is readily exported in a one-droplet-one-tube (ODOT) manner by the inherent capillary force into pipette tip. Releasing of the droplets containing fluorescein sodium demonstrated ∼100% successful rate (9 out of 6400 droplets were successfully released) and low residual (only ∼5% of the droplet volume remains in the chamber). White or fluorescence image-based releasing of single-cell-droplets directly after cell loading or multi-cells-droplets derived from on-chip single-cell cultivation for both E. coli and yeast cells further demonstrated the wide applicability of OODR. The present system is user-friendly and has the potential to be applied in various high-throughput screening assays, including single molecule/cell analysis, drug screening, and phenotype-based cell sorting.
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