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Nanoliter-Scale Oil-Air-Droplet Chip-Based Single Cell Proteomic Analysis.

Zi-Yi LiMin HuangXiu-Kun WangYing ZhuJin-Song LiCatherine Chiulan WongQun Fang
Published in: Analytical chemistry (2018)
Single cell proteomic analysis provides crucial information on cellular heterogeneity in biological systems. Herein, we describe a nanoliter-scale oil-air-droplet (OAD) chip for achieving multistep complex sample pretreatment and injection for single cell proteomic analysis in the shotgun mode. By using miniaturized stationary droplet microreaction and manipulation techniques, our system allows all sample pretreatment and injection procedures to be performed in a nanoliter-scale droplet with minimum sample loss and a high sample injection efficiency (>99%), thus substantially increasing the analytical sensitivity for single cell samples. We applied the present system in the proteomic analysis of 100 ± 10, 50 ± 5, 10, and 1 HeLa cell(s), and protein IDs of 1360, 612, 192, and 51 were identified, respectively. The OAD chip-based system was further applied in single mouse oocyte analysis, with 355 protein IDs identified at the single oocyte level, which demonstrated its special advantages of high enrichment of sequence coverage, hydrophobic proteins, and enzymatic digestion efficiency over the traditional in-tube system.
Keyphrases
  • single cell
  • high throughput
  • rna seq
  • circulating tumor cells
  • ultrasound guided
  • stem cells
  • binding protein
  • hydrogen peroxide
  • protein protein
  • cell proliferation
  • mesenchymal stem cells
  • data analysis