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Heart valve bioprothesis; effect of different acellularizations methods on the biomechanical and morphological properties of porcine aortic and pulmonary valve

机译:心脏瓣膜生物假体;脱细胞方法对猪主动脉和肺动脉瓣生物力学和形态学特性的影响

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Tissue engineering is a promising tool for the creation of a new type of the heart valve bioprothesis. The biological scaffold composed of decellularized tissue has been successfully used for the constructions of the valve prosthesis. An analysis of the efficiency of the valve leaflet acellularization methods and the influence of those methods on the morphology and the biomechanical properties of the ECM (extra cellular matrix) was performed. Fresh porcine hearts obtained from a slaughterhouse were used in the experiments. The efficiency of the acellularization methods was dependent on the tissue type and the acellularoization methods used. The more effective were the enzymatic methods, both because of the cell removal efficiency and the effect on the biomechanical properties of the heart valve. The differences in the biomechanical and morphological properties of the porcine aortic and the pulmonary valve after different types of the acellularization process could influence the hemodynamic conditions of the heart after the valve replacement, which limited the range of the tissue types used for the creations of the tissue engineered heart valve.
机译:组织工程学是用于创建新型心脏瓣膜生物假体的有前途的工具。由脱细胞组织组成的生物支架已成功用于瓣膜假体的构造。分析了瓣膜小叶去细胞方法的效率以及这些方法对ECM(细胞外基质)的形态和生物力学性能的影响。从屠宰场获得的新鲜猪心用于实验。脱细胞方法的效率取决于所使用的组织类型和脱细胞方法。由于细胞去除效率和对心脏瓣膜生物力学特性的影响,酶促方法更为有效。在不同类型的脱细胞过程之后,猪主动脉和肺动脉瓣的生物力学和形态学特性的差异可能会影响瓣膜置换后心脏的血液动力学状况,从而限制了用于创建心脏的组织类型的范围。组织工程心脏瓣膜。

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