Roles of Hydroxyapatite Allocation and Microgroove Dimension in Promoting Preosteoblastic Cell Functions on Photocured Polymer Nanocomposites through Nuclear Distribution and Alignment

Author:

Henry Michael G.1,Cai Lei1,Liu Xifeng1,Zhang Li2,Dong Jingyan2,Chen Liang3,Wang Zaiqin3,Wang Shanfeng1

Affiliation:

1. Department of Materials Science and Engineering, The University of Tennessee, Knoxville, Tennessee 37996, United States

2. Edward P. Fitts Department of Industrial and Systems Engineering, North Carolina State University, Raleigh, North Carolina 27695, United States

3. Materials and Structural Department, Changjiang River Scientific Research Institute, Wuhan 430010, China

Funder

Division of Materials Research

Ministry of Science and Technology of the People's Republic of China

Changjiang River Scientific Research Institute

Publisher

American Chemical Society (ACS)

Subject

Electrochemistry,Spectroscopy,Surfaces and Interfaces,Condensed Matter Physics,General Materials Science

Reference29 articles.

1. Harbers, G. M.; Grainger, D. W.InIntroduction to Biomaterials;Guelcher, S. A., Hollinger, J. O., Eds.CRC Press:Boca Raton, FL, 2006; pp15–45.

2. Saltzman, W. M.; Kyriakides, T. R.InPrinciples of Tissue Engineering,3rd ed.Lanza, R., Langer, R., Vacanti, J., Eds.Elsevier Academic Press:San Diego, CA, 2007; pp279–296.

3. Parabolic dependence of material properties and cell behavior on the composition of polymer networks via simultaneously controlling crosslinking density and crystallinity

4. Poly(ɛ-caprolactone) acrylates synthesized using a facile method for fabricating networks to achieve controllable physicochemical properties and tunable cell responses

5. Photocured Biodegradable Polymer Substrates of Varying Stiffness and Microgroove Dimensions for Promoting Nerve Cell Guidance and Differentiation

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