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Google Scholar: https://scholar.google.com/citations?user=7c91ec4AAAAJ&hl=en

  1. X. Liu, C. Steiger, S. Lin, G.A. Parada, J. Liu, H.F. Chan, et al. “Ingestible hydrogel device”, Nature Communications, 10, 493 (2019).

  2. H. Meng, S. Deng, Y. You, H.F. Chan# “The role of microfluidics in protein formulations with pre-programmed functional characteristics”, Biologics: targets & therapy 12, 191 (2018) (# corresponding author)

  3. Z. Guo, L. Lin, H.F. Chan, et al. “Poly (ethylene glycol)-poly-l-glutamate complexed with polyethylenimine-polyglycine for high efficient gene delivery in vitro and in vivo” Biomaterials Science 6 (11), 3053-3062 (2018)

  4. H.F. Chan*, R. Zhao*, et al. “Folding artificial mucosa with cell-laden hydrogels guided by mechanics models” Proceedings of the National Academy of Sciences 115 (29), 7503-7508 (2018) (* these authors contributed equally)

  5. J. Zhang, X. Fang, Z. Li, H.F. Chan, et al. “Redox-sensitive micelles composed of disulfide-linked Pluronic-linoleic acid for enhanced anticancer efficiency of brusatol” International Journal of Nanomedicine 13, 939 (2018)

  6. J. Zhang, L. Wang, H.F. Chan, et al. “Co-delivery of paclitaxel and tetrandrine via iRGD peptide conjugated lipid-polymer hybrid nanoparticles overcome multidrug resistance in cancer cells” Scientific Reports 7 (46507) (2018)

  7. Y. Xu, S. Wang, H.F. Chan, et al. “Dihydromyricetin induces apoptosis and reverses drug resistance in ovarian cancer cells by p53-mediated downregulation of survivin” Scientific Reports 7 (46060) (2018)

  8. H.F. Chan*, S. Ma*, et al. “High-throughput screening of microchip-synthesized genes in programmable double-emulsion droplets” Nanoscale  9 (10), 3485-3495 (2017) (* these authors contributed equally)

  9. Y. Xu, S. Wang, H.F. Chan, et al. “Triphenylphosphonium-modified poly (ethylene glycol)-poly (ε-caprolactone) micelles for mitochondria-targeted gambogic acid delivery” International Journal of Pharmacuetics 522 (1), 21-33 (2017)

  10. S. Wang, Y. Xu, H.F. Chan, et al. “Nanoparticle-mediated inhibition of survivin to overcome drug resistance in cancer therapy” Journal of Controlled Release 240, 454-464 (2016)

  11. X. Fang, Y. Xu, H.F. Chan, et al. “A redox-sensitive and rage-targeting nanocarrier for hepatocellular carcinoma therapy” Molecular Pharmaceutics 13 (11), 3613-3625 (2016)

  12. H.F. Chan, et al. “Efficient one-step production of microencapsulated hepatocyte spheroids with enhanced functions” Small 12 (20), 2720-2730 (2016)

  13. J. Zhang, J. Hu, H.F. Chan, et al. “iRGD decorated lipid-polymer hybrid nanoparticles for targeted co-delivery of doxorubicin and sorafenib to enhance anti-hepatocellular carcinoma efficacy” Nanomedicine: Nanotechnology, Biology and Medicine 12 (5), 1303-1311 (2016)

  14. H.F. Chan, et al. “Can microfluidics address biomanufacturing challenges in drug/gene/cell therapies?” Regenerative Biomaterials 3 (2), 87-98 (2016)

  15. Y. Cai, Y. Xu, H. F. Chan, et al. “Glycyrrhetinic acid mediated drug delivery carriers for hepatocellular carcinoma therapy” Molecular Pharmaceutics 13 (3), 699-709 (2016)

  16. Y. Jung, H. Ji, Z. Chen, H.F. Chan, et al. “Scaffold-free, human mesenchymal stem cell-based tissue engineered blood vessels” Scientific Reports 5, 15116 (2015)

  17. S. Hong*, D. Sycks*, H.F. Chan*, et al. “Three-dimensional printing of highly stretchable and tough hydrogels into complex, cellularized structures” Advanced Materials 27 (27), 4035-4040 (2015) (* these authors contributed equally)

  18. Y. Chiu, H.F. Chan, et al. “Synthesis of fluorosurfactants for emulsion-based biological applications”. ACS Nano 8 (4), 3913-3920 (2014) 

  19. C. Cao, H.F. Chan, et al. “Harnessing localized ridges for high‐aspect‐ratio hierarchical patterns with dynamic tunability and multifunctionality” Advanced Materials 26 (11), 1763-1770 (2014)

  20. S. Hong, Y. Jung, R. Yen, H.F. Chan, et al. “Magnetoactive sponges for dynamic control of microfluidic flow patterns in microphysiological systems” Lab on a Chip 14 (3), 514-521 (2014)

  21. H.F. Chan, et al. “Rapid formation of multicellular spheroids in double-emulsion droplets with controllable microenvironment” Scientific Reports 3 (3462) (2013)

  22. G.A. Truskey, H.E. Achneck, N. Bursac, H.F. Chan, et al. “Design considerations for an integrated microphysiological muscle tissue for drug and tissue toxicity testing” Stem Cell Research & Therapy 4 (1) (2013)

  23. Y. Zhang, Y.P. Ho, Y.L. Chiu, H.F. Chan, et al. “A programmable microenvironment for cellular studies via microfluidics-generated double emulsions” Biomaterials 34 (19), 4564-4572 (2013)

  24. Y. Zhang, H.F. Chan, K.W. Leong. “Advanced materials and processing for drug delivery: the past and the future” Advanced Drug Delivery Reviews 65 (1), 104-120 (2013)

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