Download Nanocomposites for Musculoskeletal Tissue Regeneration by Huinan Liu PDF

By Huinan Liu

Nanocomposites for Musculoskeletal Tissue Regeneration discusses the complicated biomaterials scientists are exploring to be used as instruments to imitate the constitution of musculoskeletal tissues. Bone and different musculoskeletal tissues clearly have a nanocomposite constitution, for this reason nanocomposites are preferrred as a cloth for changing and regenerating those normal tissues. moreover, organic houses similar to biointegration and the facility to tailor and dope the fabrics cause them to hugely fascinating for musculoskeletal tissue regeneration.

  • Provides a complete dialogue at the layout and developments made within the use of nanocomposites for musculoskeletal tissue regeneration
  • Presents an In-depth insurance of fabric properties
  • Includes discussions on polymers, ceramics, and glass

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Extra info for Nanocomposites for Musculoskeletal Tissue Regeneration

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2012. Bio-composite scaffolds containing chitosan/nano-hydroxyapatite/ nano-copper-zinc for bone tissue engineering. International Journal of Biological Macromolecules 50 (1), 294–299. ). , 2012. Preparation and characterization of chitosan-carbon nanotube scaffolds for bone tissue engineering. International Journal of Biological Macromolecules 50 (2), 393–402. ). , 2000. Electron beam lithography: resolution limits and applications. Applied Surface Science 164 (1), 111–117. , 2010. Characterization of biodegradable and cytocompatible nano-hydroxyapatite/polycaprolactone porous scaffolds in degradation in vitro.

Wiley. x. , 2002. Bone formation on two-dimensional poly (DL-lactide-co-glycolide) (PLGA) films and three-dimensional PLGA tissue engineering scaffolds in vitro. Journal of Biomedical Materials Research 64, 388–396. , 2005. Stimulation of osteoblast responses to biomimetic nanocomposites of gelatin-hydroxyapatite for tissue engineering scaffolds. Biomaterials 26 (25), 5221–5230. ). , 2008. Chitosan and its derivatives for tissue engineering applications. Biotechnology Advances 26 (1), 1–21. ). , 2008.

The effect of surface nanotopography on cell behavior and tissue development has gained significant research interest in the field of tissue regeneration. , 2007). The structure of muscle tissue is composed of oriented muscle fibers that are formed by the fusion of myoblasts (Hawke and Garry, 2001). This orientation in fiber alignment enables an anisotropic organization of muscle tissue ECM for functional contraction. Accordingly, aligned fiber scaffolds have been developed to mimic skeletal muscle orientation and provide the necessary ECM cues to guide cellular organization.

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