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Int J Biol Macromol ; 176: 26-36, 2021 Apr 15.
Article in English | MEDLINE | ID: mdl-33529634

ABSTRACT

This study describes the development of scaffolds based on carboxyethyl chitosan (CEC) and different oxidized cashew gums (CGOx) for tissue engineering (TE) applications. After the physico-chemical characterizations of CEC and CGOx (oxidation degree of 20, 35 and 50%), these macromolecules were used for producing the CGOx-CEC hydrogels through a Schiff base reaction, in the absence of any crosslinking agent. The CGOx-CEC scaffolds obtained after a freeze-drying process were characterized for their morphology, mechanical properties, swelling ability, degradation, and porosity. Those revealed to be highly porous (25-65%), and showed a stable swelling behavior, as well as degradation properties in the absence of enzymes. The use of the cashew gum with higher degree of oxidation led to scaffolds with higher crosslinking densities and increased compressive modulus. None of the hydrogels show cytotoxicity during the 14 days of incubation. Considering all the properties mentioned, these scaffolds are excellent candidates for soft tissue regeneration, owing to the use of eco-friendly starting materials and the easy tuning of their properties.


Subject(s)
Chitosan/analogs & derivatives , Plant Gums/chemistry , Tissue Scaffolds/chemistry , Anacardium/chemistry , Animals , Biocompatible Materials/chemical synthesis , Biocompatible Materials/chemistry , Biocompatible Materials/toxicity , Biomechanical Phenomena , Cell Line , Chitosan/chemical synthesis , Chitosan/chemistry , Compressive Strength , Cross-Linking Reagents , Hydrogels , Materials Testing , Mice , Microscopy, Electron, Scanning , Molecular Structure , Oxidation-Reduction , Plant Gums/chemical synthesis , Plant Gums/toxicity , Porosity , Tissue Engineering , Tissue Scaffolds/adverse effects
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