Nanofiber generation of gelatin-hydroxyapatite biomimetics for guided tissue regeneration

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Abstract

The development of biomimetic bone matrices is one of the major goals in the bone-regeneration and tissue-engineering fields. Nanocomposites consisting of a natural polymer and hydroxyapatite (HA) nanocrystals, which mimic the human bone matrix, are thus regarded as promising bone regenerative materials. Herein, we developed a biomimetic nanocomposite with a novel nanofibrous structure by employing an electrospinning (ES) method. The HA precipitate/gelatin matrix nanocomposites are lyophilized and dissolved in an organic solvent, and then electrospun under controlled conditions. With this process, we can successfully generate a continuous fiber with a diameter of the order of hundreds of nanometers. The internal structure of the nanofiber features a typical nanocomposite, i.e., HA nanocrystals well distributed within a gelatin matrix. These nanocomposite fibers improve the bone-derived cellular activity significantly when compared to the pure gelatin equivalent. This method of generating a nanofiber of the biomimetic nanocomposite was effective in producing a biomedical membrane with a composition gradient, which is potentially applicable in the field of guided tissue regeneration (GTR). © 2005 WILEY-VCH Verlag GmbH &. Co. KGaA.

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Kim, H. W., Song, J. H., & Kim, H. E. (2005). Nanofiber generation of gelatin-hydroxyapatite biomimetics for guided tissue regeneration. Advanced Functional Materials, 15(12), 1988–1994. https://doi.org/10.1002/adfm.200500116

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