S. Vergez and . Md, PhD: study design, article review MD: article review

V. Planat-benard, PhD: study design, ASC preparation , article review; and Louis Casteilla

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S. Kanemaru, T. Nakamura, and K. Omori, Regeneration of the Vocal Fold Using Autologous Mesenchymal Stem Cells, Annals of Otology, Rhinology & Laryngology, vol.100, issue.11, pp.915-920, 2003.
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S. Hertegard, J. Cedervall, and B. Svensson, Viscoelastic and Histologic Properties in Scarred Rabbit Vocal Folds After Mesenchymal Stem Cell Injection, The Laryngoscope, vol.95, issue.7, pp.1248-1254, 2006.
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J. Cedervall, L. Ahrlund-richter, and B. Svensson, Injection of Embryonic Stem Cells Into Scarred Rabbit Vocal Folds Enhances Healing and Improves Viscoelasticity: Short-Term Results, The Laryngoscope, vol.342, issue.11, pp.2075-2081, 2007.
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P. Zuk, M. Zhu, and H. Mizuno, Multilineage Cells from Human Adipose Tissue: Implications for Cell-Based Therapies, Tissue Engineering, vol.7, issue.2, pp.211-228, 2001.
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J. Gimble and F. Guilak, Differentiation Potential of Adipose Derived Adult Stem (ADAS) Cells, Curr Top Dev Biol, vol.58, pp.137-160, 2003.
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T. Ebrahimian, F. Pouzoulet, and C. Squiban, Cell Therapy Based on Adipose Tissue-Derived Stromal Cells Promotes Physiological and Pathological Wound Healing, Arteriosclerosis, Thrombosis, and Vascular Biology, vol.29, issue.4, pp.503-510, 2009.
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URL : http://atvb.ahajournals.org/content/atvbaha/29/4/503.full.pdf

V. Planat-benard, J. Silvestre, and B. Cousin, Plasticity of Human Adipose Lineage Cells Toward Endothelial Cells: Physiological and Therapeutic Perspectives, Circulation, vol.109, issue.5, pp.656-663, 2004.
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URL : https://hal.archives-ouvertes.fr/hal-00409575

M. Mazo, V. Planat-benard, and G. Abizanda, Transplantation of adipose derived stromal cells is associated with functional improvement in a rat model of chronic myocardial infarction, European Journal of Heart Failure, vol.20, issue.5, pp.454-462, 2008.
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R. Yanez, M. Lamana, J. Garcia-castro, I. Colmenero, M. Ramirez et al., Adipose Tissue-Derived Mesenchymal Stem Cells Have In Vivo Immunosuppressive Properties Applicable for the Control of the Graft-Versus-Host Disease, Stem Cells, vol.101, issue.11, pp.2582-2591, 2006.
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B. Puissant, C. Barreau, and P. Bourin, Immunomodulatory effect of human adipose tissue-derived adult stem cells: comparison with bone marrow mesenchymal stem cells, British Journal of Haematology, vol.76, issue.2, pp.118-129, 2005.
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Y. Kumai, J. Kobler, and H. Park, Crosstalk between adipose-derived stem/stromal cells and vocal fold fibroblasts in vitro, The Laryngoscope, vol.33, issue.4, pp.799-805, 2009.
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N. Hiwatashi, S. Hirano, and M. Mizuta, Adipose-derived stem cells versus bone marrow-derived stem cells for vocal fold regeneration, The Laryngoscope, vol.119, issue.12, pp.461-469, 2014.
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H. Daugaard, B. Elmengaard, J. Bechtold, and K. Soballe, Bone growth enhancement in vivo on press-fit titanium alloy implants with acid etched microtexture, J Biomed Mater Res A, vol.87, pp.434-440, 2008.

P. Swider, G. Guerin, J. Baas, K. Soballe, and J. Bechtold, Characterization of bone-implant fixation using modal analysis: Application to a press-fit implant model, Journal of Biomechanics, vol.42, issue.11, pp.1643-1649, 2009.
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B. Svensson, S. Nagubothu, and J. Cedervall, Injection of human mesenchymal stem cells improves healing of vocal folds after scar excision-A xenograft analysis, The Laryngoscope, vol.115, issue.10, pp.2185-2190, 2011.
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B. Rousseau, S. Hirano, and T. Scheidt, Characterization of Vocal Fold Scarring in a Canine Model, The Laryngoscope, vol.101, issue.4, pp.620-627, 2003.
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Y. Kamada, Y. Yoshida, and Y. Saji, Transplantation of basic fibroblast growth factor-pretreated adipose tissue-derived stromal cells enhances regression of liver fibrosis in mice, AJP: Gastrointestinal and Liver Physiology, vol.296, issue.2, pp.157-167, 2009.
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H. Suga, H. Eto, and T. Shigeura, IFATS Collection: Fibroblast Growth Factor-2-Induced Hepatocyte Growth Factor Secretion by Adipose-Derived Stromal Cells Inhibits Postinjury Fibrogenesis Through a c-Jun N-Terminal Kinase-Dependent Mechanism, Stem Cells, vol.25, issue.1, pp.238-249, 2009.
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URL : http://onlinelibrary.wiley.com/doi/10.1634/stemcells.2008-0261/pdf

Y. Kumai, J. Kobler, V. Herrera, and S. Zeitels, Perspectives on Adipose-Derived Stem/Stromal Cells as Potential Treatment for Scarred Vocal Folds: Opportunity and Challenges, Current Stem Cell Research & Therapy, vol.5, issue.2, pp.175-181, 2010.
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S. Duflo, S. Thibeault, W. Li, X. Shu, and G. Prestwich, Using a Synthetic Extracellular Matrix, Tissue Engineering, vol.12, issue.8, pp.2171-2180, 2006.
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W. Xu, R. Hu, E. Fan, and D. Han, Adipose-Derived Mesenchymal Stem Cells in Collagen???Hyaluronic Acid Gel Composite Scaffolds for Vocal Fold Regeneration, Annals of Otology, Rhinology & Laryngology, vol.30, issue.2, pp.123-130, 2011.
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J. Choi, J. Park, and J. Chang, Small intestine submucosa and mesenchymal stem cells composite gel for scarless vocal fold regeneration, Biomaterials, vol.35, issue.18, pp.4911-4918, 2014.
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Q. Liang, S. Liu, and P. Han, Micronized acellular dermal matrix as an efficient expansion substrate and delivery vehicle of adipose-derived stem cells for vocal fold regeneration, The Laryngoscope, vol.118, issue.8, pp.1815-1825, 2012.
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