化学
微流控
纳米技术
污染
试剂
多路复用
荧光
荧光素
色谱法
有机化学
材料科学
生态学
生物信息学
量子力学
生物
物理
作者
Beiyu Hu,Shun Ye,Dongwei Chen,Bingliang Xie,Ran Hu,Yuxin Qiao,Yanghuan Yu,Hao Yu,Xu Zheng,Ying Lan,Wei Du
标识
DOI:10.1021/acs.analchem.1c02721
摘要
Droplet microfluidics with picoinjection provides significant advantages to multistep reactions and screenings. The T-junction design for picoinjection is convenient in adding picoliter reagents into passing droplets to initiate reactions. However, conventional picoinjectors face difficulties in eliminating cross-contamination between droplets, preventing them from widespread use in sensitive biological and molecular assays. Here, we introduce stepinjection, which uses a T-junction with a stepped channel design to elevate the diffusional buffer zone into the main channel and consequently increases the pressure difference between droplets and the inlet of the injection channel. To demonstrate the stepinjector's ability to perform contamination-sensitive enzymatic assays, we inject casein fluorescein isothiocyanate (FITC-casein) into a mixture of savinase and savinase-free (labeled with a red fluorescent dye) droplets. We observe no cross-contamination using stepinjection but find a severe cross-talk using an optimal picoinjection design. We envision that the simple, tunable, and reliable stepinjector can be easily integrated in various droplet processing devices, and facilitate various biomedical and biochemical applications including multiplex digital PCR, single-cell sequencing, and enzymatic screening.
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