Chitosan/Polyvinyl Alcohol/Tea Tree Essential Oil Composite Films for Biomedical Applications

被引:55
作者
Castro, Jorge Ivan [1 ]
Valencia-Llano, Carlos Humberto [2 ]
Valencia Zapata, Mayra Eliana [3 ]
Restrepo, Yilmar Joan [3 ]
Mina Hernandez, Jose Herminsul [3 ]
Navia-Porras, Diana Paola [4 ]
Valencia, Yamid [5 ]
Valencia, Cesar [5 ]
Grande-Tovar, Carlos David [6 ]
机构
[1] Univ Valle, Dept Quim, Grp Invest SIMERQO, Calle 13 100-00, Cali 76001, Colombia
[2] Univ Valle, Grp Biomat Dent, Escuela Odontol, Calle 4B 36-00, Cali 76001, Colombia
[3] Univ Valle, Fac Ingn, Escuela Ingn Mat, Grp Mat Compuestos, Calle 13 100-00, Santiago De Cali 760032, Colombia
[4] Univ San Buenaventura Cali, Fac Ingn, Grp Invest Biotecnol, Carrera 122 6-65, Cali 76001, Colombia
[5] Disproquin SAS, Area Invest Desarrollo & Innovac, Calle 93 7u-2a, Via Cali Juanchito 760021, Colombia
[6] Univ Atlantico, Fac Ciencias, Grp Invest Fotoquim & Fotobiol, Carrera 30 8-49, Puerto Colombia 081008, Colombia
关键词
biocompatibility; chitosan; tea tree essential oil; membrane; polyvinyl alcohol; tissue engineering; CHITOSAN FILMS; IN-VITRO; TEA TREE; MECHANICAL-PROPERTIES; PHYSICAL-PROPERTIES; PERMEABILITY; SCAFFOLDS; GROWTH; CHITIN; THYME;
D O I
10.3390/polym13213753
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 [高分子化学与物理];
摘要
Tissue engineering is crucial, since its early adoption focused on designing biocompatible materials that stimulate cell adhesion and proliferation. In this sense, scaffolds made of biocompatible and resistant materials became the researchers' focus on biomedical applications. Humans have used essential oils for a long time to take advantage of their antifungal, insecticide, antibacterial, and antioxidant properties. However, the literature demonstrating the use of essential oils for stimulating biocompatibility in new scaffold designs is scarce. For that reason, this work describes the synthesis of four different film composites of chitosan/polyvinyl alcohol/tea tree (Melaleuca alternifolia), essential oil (CS/PVA/TTEO), and the subdermal implantations after 90 days in Wistar rats. According to the Young modulus, DSC, TGA, mechanical studies, and thermal studies, there was a reinforcement effect with the addition of TTEO. Morphology and energy-dispersive (EDX) analysis after the immersion in simulated body fluid (SBF) exhibited a light layer of calcium chloride and sodium chloride generated on the material's surface, which is generally related to a bioactive material. Finally, the biocompatibility of the films was comparable with porcine collagen, showing better signs of resorption as the amount of TTEO was increased. These results indicate the potential application of the films in long-term biomedical needs.
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页数:21
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