Literature DB >> 14870943

Contact angle, protein adsorption and osteoblast precursor cell attachment to chitosan coatings bonded to titanium.

J D Bumgardner1, R Wiser, S H Elder, R Jouett, Y Yang, J L Ong.   

Abstract

Chitosan, a derivative of the bio-polysaccharide chitin, has shown promise as a bioactive material for implant, tissue engineering and drug-delivery applications. The aim of this study was to evaluate the contact angle, protein adsorption and osteoblast precursor cell attachment to chitosan coatings bonded to titanium. Rough ground titanium (Ti) coupons were solution cast and bonded to 91.2% de-acetylated chitosan (1 wt% chitosan in 0.2% acetic acid) coatings via silane reactions. Non-coated Ti was used as controls. Samples were sterilized by ethylene oxide gas prior to experiments. Contact angles on all surfaces were measured using water. 5 x 10(4) cells/ml of ATCC CRL 1486 human embryonic palatal mesenchyme (HEPM) cells, an osteoblast precursor cell line, were used for the cell attachment study. SEM evaluations were performed on cells attached to all surfaces. Contact angles and cell attachment on all surfaces were statistically analyzed using ANOVA. The chitosan-coated surfaces (76.4 +/- 5.1 degrees) exhibited a significantly greater contact angle compared to control Ti surfaces (32.2 +/- 6.1 degrees). Similarly, chitosan-coated surfaces exhibited significantly greater (P < 0.001) albumin adsorption, fibronectin adsorption and cell attachment, as compared to the control Ti surfaces. Coating chitosan on Ti surfaces decreased the wettability of the Ti, but increased protein adsorption and cell attachment. Increased protein absorption and cell attachment on the chitosan-coated Ti may be of benefit in enhancing osseointegration of implant devices.

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Year:  2003        PMID: 14870943     DOI: 10.1163/156856203322599734

Source DB:  PubMed          Journal:  J Biomater Sci Polym Ed        ISSN: 0920-5063            Impact factor:   3.517


  26 in total

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5.  Lytic Bacteriophage as a Biomaterial to Prevent Biofilm Formation and Promote Neural Growth.

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7.  Chitosan-coated stainless steel screws for fixation in contaminated fractures.

Authors:  Alex H Greene; Joel D Bumgardner; Yunzhi Yang; Jon Moseley; Warren O Haggard
Journal:  Clin Orthop Relat Res       Date:  2008-04-29       Impact factor: 4.176

8.  Surface properties and early murine pre-osteoblastic cell responses of phosphoric acid modified titanium surface.

Authors:  Thanaphum Osathanon; Chenphop Sawangmake; Nanticha Ruangchainicom; Pavitra Wutikornwipak; Panisa Kantukiti; Nunthawan Nowwarote; Prasit Pavasant
Journal:  J Oral Biol Craniofac Res       Date:  2015-12-24

9.  Surface modification of titanium thin film with chitosan via electrostatic self-assembly technique and its influence on osteoblast growth behavior.

Authors:  Kaiyong Cai; Yan Hu; Klaus D Jandt; Yuanliang Wang
Journal:  J Mater Sci Mater Med       Date:  2007-07-10       Impact factor: 3.896

10.  Significance of nano- and microtopography for cell-surface interactions in orthopaedic implants.

Authors:  M Jäger; C Zilkens; K Zanger; R Krauspe
Journal:  J Biomed Biotechnol       Date:  2007
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