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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Tissue-engineered mitral valve chordae tendineae: Biomechanical and biological characterization of decellularized porcine chordae
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Tissue-engineered mitral valve chordae tendineae: Biomechanical and biological characterization of decellularized porcine chordae

机译:组织工程二尖瓣腱索肌腱:去细胞猪腱索的生物力学和生物学特性

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摘要

Chordae tendineae are essential for maintaining mitral valve function. Chordae replacement is one of the valve repair procedures commonly used to treat mitral valve regurgitation. But current chordae alternatives (polytetrafluoroethylene, ePTFE) do not have the elastic and self-regenerative properties. Moreover, the ePTFE sutures sometimes fail due to degeneration, calcification and rupture. Tissue-engineered chordae tendineae may overcome these problems. The utility of xenogeneic chordae for tissue-engineered chordae tendineae has not yet been adequately explored. In this study, polyelectrolyte multilayers (PEM) film modified decellularized porcine mitral valve chordae (PEM-DPC) were developed to explore tissue-engineered chordae tendineae as neochordae substitutes. Fresh porcine mitral chordae were decellularized and reserved the major elastic fiber and collagen components. Decellularized chordae with a PEM film were produced with chitosan-heparin by a lay-by-lay technique. Mesenchymal stem cells and vascular endothelial cells could grow well on the surface of the PEM-DPC. The superior biomechanical properties of PEM-DPC were proved with good flexibility and strength both in vitro and in vivo. PEM-DPC can be developed for potential alternative mitral valve chordae graft. (C) 2015 Elsevier Ltd. All rights reserved.
机译:腱索对维持二尖瓣功能至关重要。腱索置换术是通常用于治疗二尖瓣返流的瓣膜修复手术之一。但是目前的腱索替代品(聚四氟乙烯,ePTFE)不具有弹性和自再生特性。此外,ePTFE缝合线有时会由于变性,钙化和破裂而失效。组织工程化的腱索可以克服这些问题。异种腱索在组织工程性腱索中的用途尚未得到充分研究。在这项研究中,聚电解质多层(PEM)膜修饰的脱细胞猪二尖瓣腱索(PEM-DPC)被开发来探索组织工程化的腱索腱索作为新腱索的替代物。新鲜猪二尖瓣腱索脱细胞并保留了主要的弹性纤维和胶原成分。用壳聚糖-肝素通过逐层技术产生带有PEM膜的脱细胞腱索。间充质干细胞和血管内皮细胞可以在PEM-DPC的表面上良好生长。 PEM-DPC具有优异的生物力学性能,在体内和体外均具有良好的柔韧性和强度。 PEM-DPC可用于潜在的替代性二尖瓣腱索移植。 (C)2015 Elsevier Ltd.保留所有权利。

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