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研究成果

2024

  • 1.  Ma, X. B.; Mao, M. C.; Liu, Z. Y.; Liang, C.; He, J. Q.; Qu, Y.; Xu, L. Z.; Cheng, R.; Zhuang, W.R.; Lei, Y.; Nie, W. D.; Yuan, L.; Pang, D. W.*; Xie, H. Y.*, AND-Gate Logic Förster Resonance Energy Transfer/Magnetic Resonance Tuning Nanoprobe for Programmable Antitumor Immunity Imaging. J. Am. Chem. Soc. 2024, 146(46), 31873-31884. DOI :10.1021/jacs.4c11072.

  • 2.  Li, X.; Wu, C. Q.; Tu, J. W.; Kong, J.; Yang, L. L.; Xie, Z. X.*; Pang, D. W.*, Thioredoxin Pathway Regulated Live-Cell Synthesis of CdSe Quantum Dots in Saccharomyces Cerevisiae. Sci. China Chem. 2024, 67(11): 351-3860. DOI: 10.1007/s11426-024-2261-x.


  • 3. Li, Z.; Xu, J.; Xie, W.; Zhao, D. B.; Liu, Z. Y.; Yang, X.; Fu, H. H.; Jiang, S. J.; Zhao, W.; Zhang, M. Y.; Liu, A. A.*; Pang, D. W.*, Interface Nucleophilic Substitution Reaction-Driven Precise Growth of Ag2Te Quantum Dots. Chem. Matter. 2024, 36(19): 9341-9355. DOI: 10.1021/acs.chemmater.4c00026.



  • 4. Li, J.; Shi, X. H.; Fu, D. D.; Du, L.; Tang, B.; Ao, J.; Ma, A. X.; Hou, Y. N.; Wang, Z. G.; Liu, S. L.*; Pang, D. W.*, An Inhalable Nanoshield for Effective Prevention of Influenza Virus Infections. ACS NANO. 2024, 18(40): 27327-27339. DOI: 10.1021/acsnano.4c04631.


  • 5. Liu, Z. Y.; Zhao, W.; Chen, L. M.; Chen, Y. Y.; Wang, Z. G.; Liu, A. A.*; Pang, D. W.*, Rational Design and Structural Regulation of Near-Infrared Silver Chalcogenide Quantum Dots. Nano Res. 2024, 17(12): 10585-10606. DOI: 10.1007/s12274-024-6958-x.


  • 6. Fu, D. D.; Zhang, L. J.; Tang, B.; Du, L.; Li, J.; Ao, J.; Zhang, Z. L.; Wang, Z. G.; Liu, S. L.; Pang, D. W.*, Quantitatively Dissecting Triple Roles of Dynactin in Dynein-Driven Transport of Influenza Virus by Quantum Dot-Based Single-Virus Tracking. ACS NANO. 2024, 18(37): 25893-25905. DOI: 10.1021/acsnano.4c10564.

  • 7. Du, L.; Hou, Y. N.; Fu, D. D.; Li, J.; Ao, J.; Ma, A. X.; Wan, Q. Q.; Wang, Z. G.; Liu, S. L.; Zhang, L. J.*; Pang, D. W.*, Revealing Different Pathways for Influenza A Virus To Reach Microtubules after Endocytosis by Quantum Dot-Based Single-Virus Tracking. ACS NANO. 2024, 18(34): 23090-23103. DOI: 10.1021/acsnano.4c05261.


  • 8. Feng, H. J.; Zeng, L ; Li, J. Y.; Lin, W. Y.; Qi, F.; Jiang, L. H.; Zhang, M. Y.; Zhao, Y.; Huang, L.*; Pang, D. W.*, Natural Protein Photon Upconversion Supramolecular Assemblies for Background-Free Biosensing. J. Am. Chem. Soc. 2024, 146(31), 21791-21805. DOI: 10.1021/jacs.4c06012.


  • 9. Lin, L. P.; Liu, A. A.; Zhao, W.; Yang, Y.; Zhu, D. L.; Dong, B. R.; Ding, F.; Ning, D.; Zhu, X. B,; Liu, D. B.; Pang, D. W.*, Multihierarchical Regulation To Achieve Quantum Dot Nanospheres with a Photoluminescence Quantum Yield Close to 100%. J. Am. Chem. Soc. 2024, 146(31), 21348-21356. DOI: 10.1021/jacs.4c03308.


  • 10. Jiang, L. H.; Miao, X. F.; Zhang, M. Y.; Li, J. Y.; Zeng, L.; Hu, W. B.; Huang, L.*; Pang, D. W.*, Near Infrared-II Excited Triplet Fusion Upconversion with Anti-Stokes Shift Approaching the Theoretical Limit. J. Am. Chem. Soc. 2024, 146(15): 10785-10797. DOI: 10.1021/jacs.4c00936.



  • 11. Wang, L; Chen, H. J.; Wang, Z.G.; Ning, D.; Zhao, W.; Rat, V.; Lamb, D. C.; Pang, D. W.*; Liu, S. L.*, Mapping Extracellular Space Features of Viral Encephalitis to Evaluate the Proficiency of Anti-Viral Drugs. Adv. Mater. 2024, 36(18): e2311457. DOI: 10.1002/adma.202311457.


  • 12. Hu, Y. S.; Wang, Z. G.; Fu, H. H.; Zhou, C. Z.; Cai, W. S.; Shao, X. G.; Liu, S. L.; Pang, D. W.*, In-Situ Synthesis of Quantum Dots in the Nucleus of Live Cells. Natl. Sci. Rev. 2024, 11(3). DOI: 10.1093/nsr/nwae021.

    Enhanced fluorescence in the nucleus after the addition of GSH. (a) The procedure for generating fluorescent cells by treatment with sodium selenite (Na2SeO3), cadmium chloride (CdCl2) and glutathione (GSH). (b) Time-lapse fluorescence images of Madin-Darby canine kidney (MDCK) cells treated with Se’ and Cd’ and different concentrations of GSH. (c) Fluorescence images of the treated cells stained with nucleus dye (the first column), and Hoechst 33342 (the second column). (d) The fluorescence and differential interference contrast (DIC) images of a nucleus extracted from treated cells. (e, f) The fluorescence intensity of the nucleus (e) and cytoplasm (f) of cells treated with Se’ and Cd’ and different concentrations of GSH. (g) A heat map of the fluorescence intensity of the nucleus and cytoplasm in (e) and (f). (h) Fluorescence images of Se’- and Cd’-treated, and Se’-, Cd’- and GSH-treated MDCK cells 6 h after the addition of CdCl2. The insets show the line profiles of the fluorescence intensity along the dashed lines showed in the images. All imaging data (b, e–g) represent means ± SD of triplicate measurements in multiple cells. n = 20 for (e) and (g) cells. Se’ stands for Na2SeO3; Cd’ stands for CdCl2.


  • 13. Liu, H. Y.; Hu, Y. S.; Yu, C.; Wang, Z. G.; Liu, S. L.*; Pang, D. W.*, Quantitative Single-Virus Tracking for Revealing the Dynamics of SARS-CoV-2 Fusion with Plasma Membrane. Sci. Bull. 2024, 69(4): 502-511. DOI: 10.1016/j.scib.2023.11.020.

  • 14. Ao, J.; Ma, A. X.; Li, J.; Wang, C. Y.; Fu, D. D.; Du, L.; Yu, C.; Liu, S. L.; Wang, Z. G.*; Pang, D. W.*, Real-Time Dissection of the Exosome Pathway for Influenza Virus Infection. ACS NANO. 2024, 18(5): 4507-4519. DOI: 10.1021/acsnano.3c11309.


  • 15. Wang, Z. W.; Yu, Y.; Tan, X.; Wu, Z. H.; Huang, T. Y.; Zhu, Y. Z.*; Pang, D. W.*; Wang, H. F.*, Urea Enzymolysis-Induced lons Replacing: A Promising Strategy for One-Pot Loading of Core-Shell Heterojunction on 1D Catalyst Support. Adv. Funct. Mater. 2024. DOI: 10.1002/adfm.202415502.

    Details are in the caption following the image


  • 16. Jiang, L. H.; Zeng, L.; Zhang, M. Y.; Huang, L*.; Pang, D. W.*, Highly Effective Near-Infrared Light-Activatable Triplet Fusion Upconversion with BODIPY Annihilators: Triplet Modulation via Non-Conjugated n-π Spatial Electron Coupling. Adv. Opt. Mater. 2024, 12(1). DOI: 10.1002/adom.202470002.



  • 17. Peng, Y.; Wang, Z. G.; Qi, B. P.; Liu, C.; Tang, B.; Zhang, Z. L.; Liu, S. L. ; Pang, D. W.*, Carboxyl Groups on Carbon Nanodots as Co-Reactant Sites for Anodic Electrochemiluminescence of Tris (2,2-bipyridine)ruthenium (II). J. Colloid Interface Sci. 2024, 653: 1256-1263. DOI: 10.1016/j.jcis.2023.09.122.

  • 18. Wu, C. Q.; Liu, A. A.; Li, X.; Tu, J. W.; Kong, J.; Yang, L. L.; Jia, J. H.; Wang, C.; Hu, B.; Xie, Z. X.*; Pang, D. W.*, Intracellular Redox Potential-Driven Live-Cell Synthesis Of CdSe Quantum Dots in Staphylococcus Aureus. Sci. China Chem. 2024, 67(3): 990-999. DOI:10.1007/s11426-023-1839-4.


  • 19. Ma, A.X.; Yu, C.; Zhang, M. Y.; Ao, J.; Liu, H. Y.; Zhang, M. Q.; Sun, Q. Q.; Fu, D. D.; Du, L.; Li, J.; Liu, S. L.; Wang, Z. G.*; Pang, D. W.*, One-Step Dual-Color Labeling of Viral Envelope and Intraviral Genome with Quantum Dots Harnessing Virus Infection. Nano Lett. 2024, 24(8): 2544-2552. DOI: 10.1021/acs.nanolett.3c04600.