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Hu Fang
hufang19@smu.edu.cn
Chinese, English
Guangdong
Southern Medical University
Biomedical Engineering
  • 2006.09-2010.07 Bachelor: Wuhan University, Chemistry
  • 2010.09-2015.07 Master and PhD: Institute of Chemistry, Chinese Academy of Sciences, Organic Chemistry
  • 2012.09-2015.07 PhD: Peking University, Organic Chemistry
  • 2015.08-2019.08 - National University of Singapore - Postdoctoral Researcher
  • 2019.09-Present - Southern Medical University, School of Biomedical Engineering - Professor
  • Overseas High-Level Talent Youth Project (2021): Detail
  • China Association for Instrumental Analysis Science and Technology Award Second Prize (2016): Detail
  • Japan Society for the Promotion of Science JSPS HOPE Fellow (2015): Detail
Organic Multifunctional Biomaterials
Photodynamic Therapy
Tumor Imaging Therapy, Bacterial Labeling and Killing
  • Visualization and in‐situ ablation of intracellular bacterial pathogen through metabolic labeling., Hu, F.; Qi, G.; Kenry, K.; Mao, D.; Zhou, S.; Wu, M.; Wu, W.; Liu, B., 2019
  • AIEgen‐Peptide Conjugate: Phototheranostics for Phagosome‐Entrapped Bacteria., Qi, G.+; Hu, F.+; Kenry, K.; Shi, L.; Wu, M.; Liu, B., 2019
  • Visualize Embryogenesis and Cell Fate Using Fluorescent Probes with Aggregation-Induced Emission., Hu, F.; Manghnani, P.; Kenry; Feng, G.; Wu, W.; Teh, C.; Liu, B., 2019
  • Photosensitizers with Aggregation-induced Emission: Materials and Biomedical Applications., Hu, F.; Xu, S.; Liu, B., 2018
  • Light-up Probe with Aggregation-Induced Emission for Real-Time Bio-orthogonal Tumor Labeling and Image-guided Photodynamic Therapy., Hu, F.; Mao, D.; Kenry; Cai, X.; Wu, W.; Kong, D.; Liu, B., 2018
  • Metal-organic framework-assisted in vivo bacterial metabolic labeling and precise antibacterial therapy., Mao, D.+; Hu, F.+; Kenry; Ji, S.; Wu, W.; Ding, D.; Kong, D.; Liu, B., 2018
  • Metal-organic framework as a simple and general inert nanocarrier for photosensitizers to implement activatable photodynamic therapy., Hu, F.; Mao, D.; Kenry; Wang, Y.; Wu, W.; Zhao, D.; Kong, D.; Liu, B., 2018
  • Dual-responsive Metabolic Precursor and Light-up AIEgen for Cancer Cell Bioorthogonal Labelling and Precise Ablation., Hu, F.; Yuan, Y.; Wu, W.; Mao, D.; Liu, B., 2018
  • Multicolor Monitoring of Cellular Organelles by Single Wavelength Excitation to Visualize Mitophagy Process., Hu, F.; Cai, X.; Manghnani, P. N.; Kenry, K.; Wu, W.; Liu, B., 2018
  • Smart activatable and traceable dual-prodrug for image-guided combination photodynamic and chemo-therapy., Hu, F.; Yuan, Y.; Mao, D.; Wu, W.; Liu, B., 2017
  • Immobilization of AIEgens into metal‐organic frameworks: Ligand design, emission behavior, and applications., Gui, B.; Yu, N.; Meng, Y.; Hu, F.*; Wang, C., 2017
  • Organelle-specific bioprobes based on fluorogens with aggregation-induced emission (AIE) characteristics., Hu, F.; Liu, B., 2016
  • Highly Solid-State Emissive Pyridinium-Substituted Tetraphenylethylene Salts: Emission Color-Tuning with Counter Anions and Application for Optical Waveguides., Hu, F.; Zhang, G. X.; Zhan, C.; Zhang, W.; Yan, Y. L.; Zhao, Y. S.; Fu, H. B.; Zhang, D. Q., 2015
  • Targeted Bioimaging and Photodynamic Therapy of Cancer Cells with an Activatable Red Fluorescent Bioprobe., Hu, F.; Huang, Y. Y.; Zhang, G. X.; Zhao, R.; Yang, H.; Zhang, D. Q., 2014
  • Tetraphenylethylene Conjugated with a Specific Peptide as a Fluorescence Turn-On Bioprobe for the Highly Specific Detection and Tracing of Tumor Markers in Live Cancer Cells., Huang, Y. Y.+; Hu, F.+; Zhao, R.; Zhang, G. X.; Yang, H.; Zhang, D. Q., 2014
  • A highly selective fluorescence turn-on detection of hydrogen peroxide and D-glucose based on the aggregation/deaggregation of a modified tetraphenylethylene., Hu, F.; Huang, Y. Y.; Zhang, G. X.; Zhao, R.; Zhang, D. Q., 2014
Biomaterials Organic Multifunctional Photodynamic Therapy Tumor Imaging Bacterial Labeling Killing

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