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成果及论文

发表文章

  1. Zhang, L., Burns, N., Ji, Z., Sun, S., Deutscher, S. L., Carson III, W. E., & Guo, P. (2023). Nipple fluid for breast cancer diagnosis using the nanopore of Phi29 DNA-packaging motor. Nanomedicine: Nanotechnology, Biology and Medicine, 48, 102642.
  2. Yu, M.; Si, W.; Zeng, T.; Chen, C.; Lin, X.; Ji, Z.; Guo, F., Li, Y., Sha, J., Dong, Y.. (2021) Unveiling the Microscopic Mechanism of Current Variation in the Sensing Region of MspA Nanopore for DNA Sequencing. The Journal of Physical Chemistry Letters. 12(37), 9132-9141.
  3. Xu, C., Zhang, K., Yin, H., Li, Z., Krasnoslobodtsev, A., Zheng, Z., Ji, Z.; Guo, S., Guo, P. (2020). 3D RNA nanocage for encapsulation and shielding of hydrophobic biomolecules to improve the in vivo biodistribution. Nano Research, 13(12), 3241-3247.
  4. Ji, Z., Jordan, M., Jayasinghe, L., & Guo, P. (2020). Insertion of channel of phi29 DNA packaging motor into polymer membrane for high-throughput sensing. Nanomedicine: Nanotechnology, Biology and Medicine, 25, 102170.
  5. Ji, Z., & Guo, P. (2019). Channel from bacterial virus T7 DNA packaging motor for the differentiation of peptides composed of a mixture of acidic and basic amino acids. Biomaterials, 214, 119222.
  6. Li, H., Wang, S., Ji, Z., Xu, C., Shlyakhtenko, L. S., & Guo, P. (2019). Construction of RNA nanotubes. Nano research, 12(8), 1952-1958.
  7. Ji, Z., Kang, X., Wang, S., & Guo, P. (2018). Nano-channel of viral DNA packaging motor as single pore to differentiate peptides with single amino acid difference. Biomaterials, 182, 227-233.
  8. Wang, S., Ji, Z., Yan, E., Haque, F., & Guo, P. (2017). Three-step channel conformational changes common to DNA packaging motors of bacterial viruses T3, T4, SPP1, and Phi29. Virology, 500, 285-291.
  9. Ji, Z., Wang, S., Zhao, Z., Zhou, Z., Haque, F., & Guo, P. (2016). Fingerprinting of peptides with a large channel of bacteriophage Phi29 DNA packaging motor. Small, 12(33), 4572-4578.
  10. Zhou, Z., Ji, Z., Wang, S., Haque, F., & Guo, P. (2016). Oriented single directional insertion of nanochannel of bacteriophage SPP1 DNA packaging motor into lipid bilayer via polar hydrophobicity. Biomaterials, 105, 222-227.
  11. 季州翔, 任君, 付浩然, 倪现朴, & 夏焕章. (2014). 四霉素 A 组分高含量基因工程菌的构建. 沈阳药科大学学报, 11.
  12. 倪现朴, 季州翔, & 夏焕章. (2014). 同源重组方法在制备 DNA 大片段中的应用 .沈阳药科大学学报
  13. Ni, X., Sun, Z., Zhang, H., He, H., Ji, Z., & Xia, H. (2014). Genetic engineering combined with random mutagenesis to enhance G418 production in Micromonospora echinospora. Journal of Industrial Microbiology and Biotechnology, 41(9), 1383-1390..Journal of Industrial Microbiology and Biotechnology

著作

1. 《Biomotors and their Nanobiotechnology Applications》,CRC Press

      Chapter 15: Three-Step Channel Conformational Changes Common to DNA Translocases of Bacterial Viruses T3, T4, SPP1, and phi29, By Shaoying Wang, Zhouxiang Ji, Erfu Yan, Farzin Haque, Peixuan Guo

      Chapter 26: Insertion of Channel of phi29 DNA Packaging Motor into Polymer Membrane for High-Throughput Sensing, ByZhouxiang Ji, Peixuan Guo

      Chapter 31: Channel from Bacterial Virus T7 DNA Packaging Motor for the Differentiation of Peptides Composed of a Mixture of Acidic and Basic Amino Acids. By Zhouxiang Ji, Peixuan Guo

      Chapter 32: Nano-channels of Viral DNA Packaging Motor as Single Pore to Differentiate Peptides with Single-Amino Acid Difference, by Zhouxiang Ji, Peixuan Guo