Journal of Biomedical Materials Research - Part A, volume 105, issue 9, pages 2572-2581
Mechanical properties, structure, bioadhesion, and biocompatibility of pectin hydrogels
Pavel Markov
1
,
Nikita S Krachkovsky
1
,
Eugene A Durnev
2
,
Ekaterina A Martinson
2
,
Sergey G Litvinets
2
,
Sergey Popov
1
Publication type: Journal Article
Publication date: 2017-06-15
scimago Q1
SJR: 0.807
CiteScore: 10.4
Impact factor: 3.9
ISSN: 15493296, 15524965
PubMed ID:
28544261
Metals and Alloys
Ceramics and Composites
Biomaterials
Biomedical Engineering
Abstract
The surface structure, biocompatibility, textural, and adhesive properties of calcium hydrogels derived from 1, 2, and 4% solutions of apple pectin were examined in this study. An increase in the pectin concentration in hydrogels was shown to improve their stability toward elastic and plastic deformation. The elasticity of pectin hydrogels, measured as Young's modulus, ranged from 6 to 100 kPa. The mechanical properties of the pectin hydrogels were shown to correspond to those of soft tissues. The characterization of surface roughness in terms of the roughness profile (Ra) and the root-mean-square deviation of the roughness profile (Rq) indicated an increased roughness profile for hydrogels depending on their pectin concentration. The adhesion of AU2% and AU4% hydrogels to the serosa abdominal wall, liver, and colon was higher than that of the AU1% hydrogel. The adhesion of macrophages and the non-specific adsorption of blood plasma proteins were found to increase as the pectin concentration in the hydrogels increased. The rate of degradation of all hydrogels was higher in phosphate buffered saline (PBS) than that in DMEM and a fibroblast cell monolayer. The pectin hydrogel was also found to have a low cytotoxicity. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 2572-2581, 2017.
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