Literature DB >> 17223012

Growth and differentiation of mouse osteoblasts on chitosan-collagen sponges.

P Arpornmaeklong1, N Suwatwirote, P Pripatnanont, K Oungbho.   

Abstract

The aim of this study was to investigate the effects of collagen on the microstructure and biocompatibility of chitosan-collagen composite sponges fabricated by a freezing and drying technique. The study was categorized into four groups: Group I: collagen; Group II: chitosan; Group III: 1:1 (by wt) chitosan-collagen and Group IV: 1:2 (by wt) chitosan-collagen sponges. A mouse osteoblast cell line, MC3T3-E1, was cultivated on the sponges in a mineralized culture medium for 21 days. Microstructure of scaffolds and growth of cells on the sponges were examined using scanning electron and confocal laser scanning electron microscopes. Pore size was analysed from scanning electron microscope images using Image-Pro Plus image analysis software. Cell viability (MTT assay), alkaline phosphatase activity and levels of osteocalcin and calcium were monitored every 3 days and on days 15 and 21, respectively. It was found that the sponges were porous with average pore sizes of 80-100 microm. A combination of chitosan and collagen matrixes created a well defined porous microstructure and biocompatible scaffolds. Chitosan-collagen composite sponges promoted growth and differentiation of osteoblasts into the mature stage. To optimize application of the composite sponges in bone regeneration, the fabrication process must be improved to increase the pore size of the scaffolds.

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Year:  2007        PMID: 17223012     DOI: 10.1016/j.ijom.2006.09.023

Source DB:  PubMed          Journal:  Int J Oral Maxillofac Surg        ISSN: 0901-5027            Impact factor:   2.789


  15 in total

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4.  Nano and micro mechanical properties of uncross-linked and cross-linked chitosan films.

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8.  Effect of nanoparticulate bioactive glass particles on bioactivity and cytocompatibility of poly(3-hydroxybutyrate) composites.

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9.  Assembly of discrete collagen-chitosan microenvironments into multiphase tissue constructs.

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10.  Osteogenic differentiation of human periosteal-derived cells in a three-dimensional collagen scaffold.

Authors:  Young-Mo Ryu; Young-Sool Hah; Bong-Wook Park; Deok Ryong Kim; Gu Seob Roh; Jong-Ryoul Kim; Uk-Kyu Kim; Gyu-Jin Rho; Geun-Ho Maeng; June-Ho Byun
Journal:  Mol Biol Rep       Date:  2010-01-28       Impact factor: 2.316

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