Alumni

Combined Masters and Doctoral course - 2016

Ji Young Ryu

류지영
Education / Career
Ph.D. in Physics, KAIST (2015)

Post-doc(2015-2016)
Current Position: OCI
Publications
  1. Ji young Ryu, Jihye Kim, Min Ju Shon, Jiashu Sun, Xingyu Jiang, Wonhee Lee and Tae-Young Yoon (2019). Profiling protein-protein interactions for single cancer cells with in situ lysis and co-immunoprecipitation. Lab on a Chip, 19(), 1922-1928.
  2. Hong-Won Lee, Byoungsan Choi, Han Na Kang, Hyunwoo Kim, Ahrum Min, Minkwon Cha, Ji Young Ryu, Sangwoo Park, Jinyoung Sohn, Kihyuk Shin, Mi Ran Yun, Joo Yeun Han, Min Ju Shon, Cherlhyun Jeong, Junho Chung, Seung-Hyo Lee, Seock-Ah Im*, Byoung Chul Cho* and Tae-Young Yoon* (2018). Profiling of protein–protein interactions via single-molecule techniques predicts the dependence of cancers on growth-factor receptors. Nature Biomedical Engineering, 2(4), 239.
  3. L. Zhang, Q. Feng, J. Wang, S. Zhang, B. Ding, Y. Wei, M. Dong, J.-Y. Ryu, T-.Y. Yoon, X. Shi, J. Sun, & X. Jiang (2015). Microfluidic Synthesis of Hybrid Nanoparticles with Controlled Lipid Layers: Understanding Flexibility-Regulated Cell-Nanoparticle Interaction. ACS Nano, 9(10), 9912-9921.
  4. J. Y. Ryu, I. T. Song, K.H.A. Lau, P. B. Messersmith, T.-Y. Yoon & H. Lee (2014). New Anti-fouling Platform Characterized by Single-molecule Imaging. ACS Appl. Mater. Interfaces, 6(5), 3353-3358.
  5. H.-W. Lee, J. Ryu, J. Yoo, B. Choi, K. Kim & T.-Y. Yoon (2013). Real-time single-molecule co-immunoprecipitation of weak protein-protein interactions (Invited contribution). Nat. Protoc., 8(10), 2045-2060.
  6. H.-W. Lee, T. Kyung, J. Yoo, T. Kim, C. Chung, J. Y. Ryu, H. Lee, K. Park, S. Lee, W. D. Jones, D.-S. Lim, C. Hyeon, W. D. Heo & T.-Y. Yoon (2013). Real-time single-molecule co-immunoprecipitation analyses reveal cancer-specific Ras signalling dynamics. Nat. Commun., 4(), 1515.
  7. Y. Yang, J. Y. Shin, J.-J. Oh, C. H. Jung, Y. Hwang, S. Kim, J.-S. Kim, K.-J. Yoon, J.-Y. Ryu, J. Shin, J. S. Hwang, T.-Y. Yoon, Y.-K. Shin & D.-H. Kweon (2010). Dissection of SNARE-driven membrane fusion and neuroexocytosis by wedging small hydrophobic molecules into the SNARE zipper. PNAS, 107(51), 22145-22150.