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Acrylic acid plasma coated 3D Scaffolds for Cartilage tissue engineering applications

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MESENCHYMAL STEM-CELLS, IN-VITRO, CHONDROGENIC DIFFERENTIATION, SURFACE-CHEMISTRY, MEDIUM PRESSURE, BONE, FILMS, POLYMERIZATION, POLYACTIVE(R), POLYURETHANE

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Chicago
Cools, Pieter, Carlos Mota, Ivan Lorenzo-Moldero, Rouba Ghobeira, Nathalie De Geyter, Lorenzo Moroni, and Rino Morent. 2018. “Acrylic Acid Plasma Coated 3D Scaffolds for Cartilage Tissue Engineering Applications.” Scientific Reports 8 (1).
APA
Cools, P., Mota, C., Lorenzo-Moldero, I., Ghobeira, R., De Geyter, N., Moroni, L., & Morent, R. (2018). Acrylic acid plasma coated 3D Scaffolds for Cartilage tissue engineering applications. SCIENTIFIC REPORTS, 8(1).
Vancouver
1.
Cools P, Mota C, Lorenzo-Moldero I, Ghobeira R, De Geyter N, Moroni L, et al. Acrylic acid plasma coated 3D Scaffolds for Cartilage tissue engineering applications. SCIENTIFIC REPORTS. Springer Nature; 2018;8(1).
MLA
Cools, Pieter et al. “Acrylic Acid Plasma Coated 3D Scaffolds for Cartilage Tissue Engineering Applications.” SCIENTIFIC REPORTS 8.1 (2018): n. pag. Print.
@article{8559783,
  articleno    = {3830},
  author       = {Cools, Pieter and Mota, Carlos and Lorenzo-Moldero, Ivan and Ghobeira, Rouba and De Geyter, Nathalie and Moroni, Lorenzo and Morent, Rino},
  issn         = {2045-2322},
  journal      = {SCIENTIFIC REPORTS},
  language     = {eng},
  number       = {1},
  publisher    = {Springer Nature},
  title        = {Acrylic acid plasma coated 3D Scaffolds for Cartilage tissue engineering applications},
  url          = {http://dx.doi.org/10.1038/s41598-018-22301-0},
  volume       = {8},
  year         = {2018},
}

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