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香港中文大学生物医学学院老师教授导师介绍简介-陈汉辉教授

本站小编 Free考研考试/2022-01-29

陈汉辉教授
组织工程与再生医学研究所助理教授
电话: 3943 3032
电邮:Email住址会使用灌水程式保护机制。你需要启动Javascript才能观看它
地址:
Room 423A, Lo Kwee-Seong Integrated Biomedical Sci. Bldg, Area 39, CUHK
Publons:https://publons.com/researcher/1384071/hon-fai-chan
ORCID:https://orcid.org/0000-0003-0573-1251

个人简介Prof. CHAN Hon Fai (陈汉辉) is an Assistant Professor at the Institute for Tissue Engineering and Regenerative Medicine and School of Biomedical Sciences at The Chinese University of Hong Kong (CUHK). He received his B.Eng. in 2010 from The University of Hong Kong. He then pursued his M.S. and Ph.D. degree at Duke University with the support of the Sir Edward Youde Memorial Fellowships for Overseas Studies. During his Ph.D. training, he focused on developing several microfluidic technologies to perform 3D spheroid culture of mesenchymal stem cells and hepatocytes, and investigated the effect of supplementing extracellular matrix cues on spheroid functions. After graduation in 2015, Hon Fai spent one year at Columbia University as a postdoctoral researcher. He performed high-throughput screening of synthetic genes for optimization of protein expression using microfluidic droplets. In 2016, Hon Fai joined Massachusetts Institute of Technology as a postdoctoral associate. There he conducted organ-on-a-chip research and develop biomechanics-guided folded hydrogel to recapitulate morphogenesis of mucosal folding which is observed in many hollow or tubular organs in human body.
研究兴趣
着作选录
研究资助
Microfabrication approach for liver tissue engineering.
Development of biomimetic biomaterial for tissue engineering and 3D microphysiological tissue model.
Biomechanics of organ/tissue development.
Zhu, Y., Ma, Z., Kong, L., He, Y., Chan, H.F.#, & Li, H.# (2020). Modulation of Macrophages by Bioactive Glass/Sodium Alginate Hydrogel is Crucial in Skin Regeneration Enhancement. Biomaterials, 256.
Liu, X., Steiger, C., Lin, S., Parada, G.A., Liu, J., Chan, H.F., Yuk, H., Phan, N.V., Collins, J., Tamang, S., & Traverso, G. (2019). Ingestible hydrogel device. Nature Communications, 10(1), 493.
Chan, H.F., Zhao, R., Parada, G. A., Meng, H., Leong, K. W., Griffith, L. G., & Zhao, X.# (2018). Folding Artificial Mucosa with Cell-Laden Hydrogels Guided by Mechanics Models. Proceedings Of The National Academy Of Sciences , 115 (29), 7503-7508.
Chan, H.F., Ma, S., Tian, J., & Leong, K.W. (2017). High-throughput screening of microchip-synthesized genes in programmable double-emulsion droplets. Nanoscale, 9(10), 3485-3495.
Chan, H.F., Ma, S., & Leong, K.W. (2016). Can microfluidics address biomanufacturing challenges in drug/gene/cell therapies? Regenerative Biomaterials, 3(2), 87-98.
Chan, H.F., Zhang, Y., & Leong, K.W. (2016). Efficient One-Step Production of Microencapsulated Hepatocyte Spheroids with Enhanced Functions. Small, 12(20), 2720-30.
Hong, S.#, Sycks, D.#, Chan, H.F.#, Lin, S., Lopez, G.P., Guilak, F., Leong, K.W., & Zhao, X. (2015). 3D Printing of Highly Stretchable and Tough Hydrogels into Complex, Cellularized Structures. Advanced Materials, 27(27), 4035-40.
Chiu, Y.L., Chan, H.F., Phua, K.K., Zhang, Y., Juul, S., Knudsen, B.R., Ho, Y.P., & Leong, K.W. (2014). Synthesis of fluorosurfactants for emulsion-based biological applications. ACS Nano, 8(4), 3913-20.
Cao, C., Chan, H.F., Zang, J., Leong, K.W., & Zhao, X. (2014). Harnessing localized ridges for high-aspect-ratio hierarchical patterns with dynamic tunability and multifunctionality. Advanced Materials, 26(11), 1763-70.
Chan, H.F., Zhang, Y., Chiu, Y. L., Ho, Y. P., Jung, Y., & Leong, K.W.# (2013). Rapid Formation of Multicellular Spheroids in Double-Emulsion Droplets with Controllable Microenvironment. Scientific Reports , 3: 3462 .

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Co-first author
National Key Research and Development Program of China 2019 [任务负责人; 01-Dec-19 to 30-Nov-23]: "智慧型生物材料持续诱导调控3D干细胞培养构建生物人工肝" (RMB$1,660,000).
National Key Research and Development Program of China 2018 [任务负责人; 01-Jul-19 to 30-Jun-24]: "高版本模式微生物底盘细胞" (RMB$1,270,000).
RGC - General Research Fund [PI; 01-Jan-20]: "Development of a microfluidic platform for biofabricating 3D spheroid entrapped in combinatorial microenvironment for optimized hepatocyte culture" (HK$343,034).
Shun Hing Institute of Advanced Engineering Project Fund [PI; 01-Jul-19]: "Development of a bilayer folded scaffold for intestinal tissue engineering" (HK$800,000).




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