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Family General Practice

By Murugan Ramalingam, Seeram Ramakrishna, Serena Best

ISBN-10: 1439879257

ISBN-13: 9781439879252

''This booklet bridges the space in experimental techniques and knowing one of the key components of biomedical examine. It presents all-important features facing the fundamental technology taken with constitution and homes, suggestions and technological ideas in processing and characterizations, and functions of biomaterials and stem cells in tissue regeneration. The assurance levels from basic ideas to Read more...

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Extra resources for Biomaterials and stem cells in regenerative medicine

Sample text

An example 14 Biomaterials and Stem Cells in Regenerative Medicine of a solid scaffold is poly(glycolic acid) (PGA). PGA meshes have been successfully used to engineer cartilage both in vitro and in vivo (Freed et al. 1995). Recently, two solid scaffold systems, PCL and PGA, were used for the chondrogenesis of MSCs with some success (Huang et al. 2002). Several studies (Solchaga et al. 1999, 2002) have demonstrated that hyaluronicacid-based scaffolds also have positive tissue forming abilities using chondrocytes and MSCs.

Hristov M. and Weber C. 2004. Endothelial progenitor cells: Characterization, pathophysiology, and possible clinical relevance. J Cell Mol Med 8:498–508. H. 2002. In vivo mesenchymal cell recruitment by a scaffold loaded with transforming growth factor beta1 and the potential for in situ chondrogenesis. Tissue Eng 8:469–482. Q. L. 2009. Hybrid multicomponent hydrogels for tissue engineering. Macromol Biosci 9:140–156. Y. 2010. Current applications and future perspectives of artificial nerve conduits.

Et al. 2010. Generation of functional human hepatic endoderm from human iPS cells. Hepatology 51(1):329–335. , and Mottaghy K. 2009. The role of biodegradable engineered scaffolds seeded with Schwann cells for spinal cord regeneration. Neurochem Intern 54:73–83. C. 2009. A microarray approach to the identification of polyurethanes for the isolation of human skeletal progenitor cells and augmentation of skeletal cell growth. Biomaterials 30(6):1045–1055. A. 2007. Thermoplastic biodegradable polyurethanes: The effect of chain extender structure on properties and in-vitro degradation.

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