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Evaluation of biodegradation and biocompatibility of collagen/chitosan/alkaline phosphatase biopolymeric membranes
Authors:E BERTEANU  D IONITA  M SIMOIU  M PARASCHIV  R TATIA  A APATEAN  M SIDOROFF  L TCACENCO
Affiliation:1.National Institute of Research and Development for Biological Sciences,Bucharest,Romania;2.Faculty of Applied Chemistry and Material Science, Department of General Chemistry,Politehnica Bucharest University,Bucharest,Romania;3.National Institute of Infectious Diseases–Prof. Dr. Matei Bals,Bucharest,Romania
Abstract:The aim of this study was to develop a new variant of membranes based on collagen (COL), chitosan (CHI) and alkaline phosphatase (ALP) immobilized and cross-linking with glutaraldehyde (GA) at different concentrations. The biodegradation in the presence of collagenase was investigated. Biocompatibility was evaluated by MTT assay using a mouse fibroblast cell culture type NCTC (clone 929). Non-cross-linked samples were biocompatible and membranes cross-linked with low concentrations of GA (0.04, 0.08%) were also biocompatible. However, high concentrations of GA lead to a decreased biocompatibility. The adsorption behaviour of Ca2+ ions to all membranes were evaluated using the Freundlich isotherms. Haemolytic studies were performed in order to consider their applications in biomineralization process. By the addition of collagen and ALP to chitosan, the haemolytic index decreases, the COL–CHI–ALP membrane being in the non-haemolytic domain, while the COL–CHI–ALP–GA membrane has a haemolytic index greater than 2, and is slightly haemolytic.
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