Characterisation of PCL and PCL/PLA Scaffolds for Tissue Engineering
Tài liệu tham khảo
Lebourg, M., Suay Antón, J., Ribelles, J., 2012. Hybrid structure in PCL-HAp scaffold resulting from biomimetic apatite growth, Journal of Materials Science 21, p. 33.
Melchels, F.P.W., Domingos, M.A.N., Klein, T.J., Malda, J., Bártolo, P.J., Hutmacher, D.W., 2012. Additive Manufacturing of Tissues and Organs, Progress in Polymer Science 37, p. 1079.
Bártolo, P.J., Kruth, J.P., Silva, J., Levy, G., Malshe, A., Rajurkar, K., Mitsuishi, M., Ciurana, J., Leu, M., 2012. Biomedical production of implants by additive electro-chemical and physical processes, CIRP Annals – Manufacturing Technology 61, p. 635.
Bártolo, P.J., Chua, C.K., Almeida, H.A., Chou, S.M., Lim, A.S.C., 2009. Biomanufacturing for tissue engineering: present and future trends, Virtual and Physical Prototyping 4, p. 203.
Domingos, M., Chiellini, F., Gloria, A., Ambrosio, L., Bártolo, P., Chiellini, E., 2012. Effect of process parameters on the morphological and mechanical properties of 3D Bioextruded poly(ɛ-caprolactone) scaffolds, Rapid Prototyping Journal 18, p. 56.
Santis, R., Gloria, A., Russo, T., D’Amora, U., Zeppetelli, S., Tampieri, A., Herrmannsdorfer, T., Ambrosio, L., 2011. A route toward the development of 3D magnetic scaffolds with tailored mechanical and morphological properties for hard tissue regeneration: preliminary study, Virtual and Physical Prototyping 6, p. 189.
Liao, H.T., Chang, K.H., Jiang, Y., Chen, J.P., Lee, M.Y., 2011. Fabrication of tissue engineered PCL scaffold by selective laser- sintered machine for osteogeneisis of adipose-derived stem cells, Virtual and Physical Prototyping 6, p. 57.
Tan, J.Y., Chua, C.K., Leong, K.F., 2010. Indirect fabrication of gelatin scaffolds using rapid prototyping technology, Virtual and Physical Prototyping 5, p. 45.
Domingos, M., Chiellini, F., Cometa, S., Giglio, E., Grillo-Fernandes, E., Bartolo, P.J., Chiellini, E., 2010. Evaluation of in vitro degradation of PCL scaffolds fabricated via Bioextrusion. Part 1: Influence of the degradation environment, Virtual and Physical Prototyping 5, p. 65.
Domingos, M., Chiellini, F., Cometa, S., Giglio, E., Grillo- Fernandes, E., Bartolo, P.J., Chiellini, E., 2011. Evaluation of in vitro degradation of PCL scaffolds fabricated via Bioextrusion. Part 2: Influence of pore size and geometry, Virtual and Physical Prototyping 6, p. 157.
Chen, F., Yoo, J., Atala, A., 1999. Acellular collagen matrix as a possible off the shelf biomaterial for urethral repair, Urology 54, p. 407.
Bártolo, P., Domingos, M., Gloria, A., Gay, J., 2011. BioCell Printing: Integrated Automated Assembly System for Tissue Engineering Constructs, CIRP Annals-Manufacturing Technology 60, p. 271.
Woodruff, M.A., Hutmacher, D.W., 2010. The return of a forgotten polymer - Polycaprolactone in the 21st century, Progress in Polymer Science 35, pp. 1217-1256.
Garlotta, D., 2001. A literature review of Poly(Lactic Acid), Journal of Polymers and the Environment 9, p. 63.
Hamid, R., Rotshteyn, Rabadi, L., Parikh, R., Bullock, P., 2004. Comparison of alamar blue and MTT assays for high through-put screening, Toxicology in Vitro 18, p. 703.
O’Brien, J., Wilson, I., Orton, T., Pognan, F., 2000. Investigation of the alamar blue (resazurin) fluorescent dye for the assessment of mammalian cell toxicity, European Journal of Biochemistry 267, p. 5421.
Gonzalez, R.J., Tarloff, J.B., 2001. Evaluation of hepatic subcellular fractions for alamar blue and MTT reductase activity, Toxicology in Vitro 15, p. 257.
Orimo, H., Shimada, T., 2005. Regulation of the human tissue- nonspecific alkaline phosphatase gene expression by all-trans-retinoic acid in SaOS-2 osteosarcoma cell line, Bone 36, p. 866.
Cjo, Y.E., Alcantara, E., Kumaran, S., Son, K.H., Sohn, H.Y., Lee, J.H., Choi, C.S., Ha, T.Y., Kwun, I.S., 2010. Red yeast stimulates osteoblast proliferation and increases alkaline phosphatase activity in MC3T3-E1 cells, Nutrition Research 30, p. 501.