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Interfacial Nanoinjection-Based Nanoliter Single-Cell Analysis.

Juanli YunXiaowei ZhengPeng XuXu ZhengJingyue XuChen CaoYusi FuBingxue XuXin DaiYi WangHongtao LiuQiaolian YiYaxin ZhuJian WangLi WangZhiyang DongLi HuangYanyi HuangWenbin Du
Published in: Small (Weinheim an der Bergstrasse, Germany) (2019)
Single-cell analysis offers unprecedented resolution for the investigation of cellular heterogeneity and the capture of rare cells from large populations. Here, described is a simple method named interfacial nanoinjection (INJ), which can miniaturize various single-cell assays to be performed in nanoliter water-in-oil droplets on standard microwell plates. The INJ droplet handler can adjust droplet volumes for multistep reactions on demand with high precision and excellent monodispersity, and consequently enables a wide range of single-cell assays. Importantly, INJ can be coupled with fluorescence-activated cell sorting (FACS), which is currently the most effective and accurate single-cell sorting and isolation method. FACS-INJ pipelines for high-throughput plate well-based single-cell analyses, including single-cell proliferation, drug-resistance testing, polymerase chain reaction (PCR), reverse-transcription PCR, and whole-genome sequencing are introduced. This FACS-INJ pipeline is compatible with a wide range of samples and can be extended to various single-cell analysis applications in microbiology, cell biology, and biomedical diagnostics.
Keyphrases
  • single cell
  • high throughput
  • rna seq
  • cell proliferation
  • fatty acid
  • mass spectrometry
  • bone marrow
  • quantum dots