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Research Publications / Tissue Engineering

Three-dimensional simulated microgravity culture improves the proliferation and odontogenic differentiation of dental pulp stem cell in PLGA scaffolds implanted in mice.
Li Y, He L, Pan S, Zhang L, Zhang W, Yi H, Niu Y.
Mol Med Rep. 2017 Feb;15(2):873-878. doi: 10.3892/mmr.2016.6042. Epub 2016 Dec 14.
Thyroid Organoid Formation in Simulated Microgravity: Influence of Keratinocyte Growth Factor
Martin A, Zhou A, Gordon RE, Henderson SC, Schwartz AE, Friedman EW and Davies TF:
Thyroid 10: 481-487, 2000.
Tissue Engineering Bioreactors.
Freed LE and Vunjak-Novakovic G
Principles of Tissue Engineering, 2nd Edition, Chapter 13, pp. 143-156, 2000.
Tissue Engineering: The Challenges Ahead.
Langer RS and Vacanti JP
Scientific American. 280: 86-89, 1999.
Tissue growth in a rotating bioreactor. Part I: mechanical stability.
Waters SL, Cummins LJ, Shakesheff KM, Rose FR.
Math. Med. Biol. 23: 311-337, 2006
Tissue-Engineered Nerve Constructs Under a Microgravity System for Peripheral Nerve Regeneration
Luo H, Zhu B, Zhang Y, Jin Y
Tissue Eng Part A. 2014 Sep 16. (Epub ahead of print)
Uniform Embryoid Body Production and Enhanced Mesendoderm Differentiation with Murine Embryonic Stem Cells in a Rotary Suspension Bioreactor
Lei X, Deng Z, Duan E
Methods Mol Biol. 2016 Apr 27
Use of amniotic microparticles coated with fibroblasts overexpressing SDF-1a to create an environment conducive to neovascularization for repair of full-thickness skin defects
Zhang YQ, Ju SZ, Fang H, Zheng YJ, Luo PF, Wu HB, Wu MJ, Wang ZH, Xiao SC, Xia ZF
Cell Transplant. 2015 April 7; doi:10.3727/096368915X687930
Vessel graft fabricated by the on-site differentiation of human mesenchymal stem cells towards vascular cells on vascular extracellular matrix scaffold under mechanical stimulation in a rotary bioreactor
Li N, Rickel AP, Sanyour HJ, Hong Z
J Mater Chem B (2019) 7(16):2703-2713
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