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Bovine pericardium coated with biopolymeric films as an alternative to prevent calcification: In vitro calcification and cytotoxicity results
Authors:Grinia M Nogueira  Andrea CD Rodas  Raquel F Weska  Cassiano G Aimoli  Olga Z Higa  Marina Maizato  Adolfo A Leiner  Ronaldo NM Pitombo  Bronislaw Polakiewicz  Marisa M Beppu
Affiliation:1. Faculdade de Engenharia Química, Universidade Estadual de Campinas, CP: 6066, CEP: 13083-970, Campinas, SP, Brazil;2. Instituto de Pesquisas Energéticas e Nucleares (IPEN), São Paulo, SP, Brazil;3. Divisão de Bioengenharia do Instituto do Coração (InCor) HC-FMUSP, Brazil;4. Faculdade de Ciências Farmacêuticas, Universidade de São Paulo, São Paulo (SP), Brazil
Abstract:Bovine pericardium, for cardiac valve fabrication, was coated with either chitosan or silk fibroin film. In vitro calcification tests of coated and non coated bovine pericardium were performed in simulated body fluid solution in order to investigate potential alternatives to minimize calcification on implanted heart valves. Complementary, morphology was assessed by scanning electron microscopy — SEM; X-ray diffraction (XRD) and infrared spectroscopy (FTIR-ATR) were performed for structural characterization of coatings and biocompatibility of chitosan. Silk fibroin films were assayed by in vitro cytotoxicity and endothelial cell growth tests. Bovine pericardium coated with silk fibroin or chitosan did not present calcification during in vitro calcification tests, indicating that these biopolymeric coatings do not induce bovine pericardium calcification. Chitosan and silk fibroin films were characterized as non cytotoxic and silk fibroin films presented high affinity to endothelial cells. The results indicate that bovine pericardium coated with silk fibroin is a potential candidate for cardiac valve fabrication, since the affinity of silk fibroin to endothelial cells can be explored to induce the tissue endothelization and therefore, increase valve durability by increasing their mechanical resistance and protecting them against calcification.
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