Tissue-engineered cartilage using an injectable and in situ gelable thermoresponsive gelatin: fabrication and in vitro performance
Ibusuki S., Fujii Y., Iwamoto Y. Tissue-engineered cartilage using an injectable and in situ gelable thermoresponsive gelatin: fabrication and in vitro performance. Tissue Engineering 2003, 9:371-384.
Nanocomposite hydrogels: a unique organic-inorganic network structure with extraordinary mechanical and swelling/deswelling properties
Haraguchi K., Takehisa T. Nanocomposite hydrogels: a unique organic-inorganic network structure with extraordinary mechanical and swelling/deswelling properties. Advanced Materials 2002, 14:1120-1124.
Effects of clay on the properties of nanocomposite hydrogels composed of poly (N-isopropylacrylamide) and clay
Haraguchi K., Takehisa T., Fan S. Effects of clay on the properties of nanocomposite hydrogels composed of poly (N-isopropylacrylamide) and clay. Macromolecules 2002, 35:10162-10171.
Compositional effects of mechanical properties of nanocomposite hydrogels composed of poly (N,N'-dimethylacrylamide) and clay
Haraguchi K., Farnworth R., Ohbayashi A. Compositional effects of mechanical properties of nanocomposite hydrogels composed of poly (N,N'-dimethylacrylamide) and clay. Macromolecules 2003, 36:5732-5741.
Mechanism of forming organic/inorganic network structures during in-situ free-radical polymerization in PNIPA-Clay nanocomposite hydrogels
Haraguchi K., Huan J.L., Matsuda K. Mechanism of forming organic/inorganic network structures during in-situ free-radical polymerization in PNIPA-Clay nanocomposite hydrogels. Macromolecules 2005, 38:3482-3490.