Xinfeng Shi, Ph.D.

Affiliations: 
Rice University, Houston, TX 
Area:
biomaterials for use as scaffolds for tissue engineering, as carriers for controlled drug delivery, and as non-viral vectors for gene therapy
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"Xinfeng Shi"
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Parents

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James Wilton-Ely grad student Imperial College London
Antonios Georgios Mikos grad student 2007 Rice University
 (Development of injectable nanocomposite scaffolds of single -walled carbon nanotubes and biodegradable polymers for bone tissue engineering.)
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Publications

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Sitharaman B, Van Der Zande M, Ananta JS, et al. (2010) Magnetic resonance imaging studies on gadonanotube-reinforced biodegradable polymer nanocomposites. Journal of Biomedical Materials Research. Part A. 93: 1454-62
Sitharaman B, Shi X, Walboomers XF, et al. (2008) In vivo biocompatibility of ultra-short single-walled carbon nanotube/biodegradable polymer nanocomposites for bone tissue engineering. Bone. 43: 362-70
Shi X, Sitharaman B, Pham QP, et al. (2008) In vitro cytotoxicity of single-walled carbon nanotube/biodegradable polymer nanocomposites. Journal of Biomedical Materials Research. Part A. 86: 813-23
Sitharaman B, Shi X, Tran LA, et al. (2007) Injectable in situ cross-linkable nanocomposites of biodegradable polymers and carbon nanostructures for bone tissue engineering. Journal of Biomaterials Science. Polymer Edition. 18: 655-71
Shi X, Sitharaman B, Pham QP, et al. (2007) Fabrication of porous ultra-short single-walled carbon nanotube nanocomposite scaffolds for bone tissue engineering. Biomaterials. 28: 4078-90
Shi X, Hudson JL, Spicer PP, et al. (2006) Injectable nanocomposites of single-walled carbon nanotubes and biodegradable polymers for bone tissue engineering. Biomacromolecules. 7: 2237-42
Shi X, Hudson JL, Spicer PP, et al. (2005) Rheological behaviour and mechanical characterization of injectable poly(propylene fumarate)/single-walled carbon nanotube composites for bone tissue engineering. Nanotechnology. 16: S531-8
Lin CY, Schek RM, Mistry AS, et al. (2005) Functional bone engineering using ex vivo gene therapy and topology-optimized, biodegradable polymer composite scaffolds. Tissue Engineering. 11: 1589-98
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