Preparation and characterisation of Punica granatum pericarp aqueous extract loaded chitosan-collagen-starch membrane: role in wound healing process

被引:0
作者
B. Amal
B. Veena
V. P. Jayachandran
Joy Shilpa
机构
[1] C.M.S College,Department of Biotechnology
[2] S.N College,Department of Zoology
[3] Pushpagiri Institute of Medical Science and Research Centre,Antibacterials and Microbial Technology Research Lab
[4] Pushpagiri Institute of Medical Sciences and Research Centre,Regenerative Medicine and Nanotechnology Lab
来源
Journal of Materials Science: Materials in Medicine | 2015年 / 26卷
关键词
Chitosan; Wound Healing; Disc Diffusion Method; Water Absorption Capacity; Gentamicin Sulphate;
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中图分类号
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摘要
Engineered scaffolds made from natural biomaterials are crucial elements in tissue engineering strategies. In this study, biological scaffold like chitosan-collagen-starch membrane (CCSM) loaded with the antibacterial agent, Punica granatum pericarp aqueous extract was explored for enhanced regeneration of epithelial tissue during wound healing. Collagen was extracted from Rachycentron canadum fish skin. Membranous scaffold was prepared by mixing collagen, starch and chitosan in a fixed proportion, loaded with aqueous extract of P. granatum and its anti-pseudomonal activity was studied. Morphological characterization by SEM and mechanical property like tensile strength of the membrane were studied. Excision wound of 2 cm2 size was induced in Guinea pig and the effect of P. granatum extract loaded CCSM in wound healing was studied. The SEM image showed deep pores in the membrane and also possessed good tensile strength. Wound surface area was reduced prominently in the experimental group with P. granatum extract loaded CCSM when compared to the group with unloaded membrane and the one with no membrane. Punica granatum extract loaded CCSM has antipseudomonal property and supported enhanced epithelial cell proliferation without leaving a scar after wound healing. This has significant therapeutic application in membranous scaffold mediated skin repair and regeneration.
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