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冻干心脏瓣膜支架。

Freeze-dried heart valve scaffolds.

机构信息

Institute of Multiphase Processes, Leibniz Universität Hannover, Hannover, Germany.

出版信息

Tissue Eng Part C Methods. 2012 Jul;18(7):517-25. doi: 10.1089/ten.TEC.2011.0398. Epub 2012 Feb 24.

Abstract

In this study, structure and biomechanical properties of freeze-dried decellularized porcine pulmonary heart valves were investigated. Heart valves were dissected from porcine hearts. The tissues were decellularized and separated in three groups: (1) without lyoprotectant, (2) with 5% sucrose, and (3) with a mixture of 2.5% sucrose and 2.5% hydroxyl ethylene starch (HES), and then underwent freeze-drying. Freeze-drying in the absence of lyoprotectants caused an overall more disintegrated appearance of the histological architecture of the porcine valves, especially between the fibrosa and the ventricularis layers. Freeze-dried tissues with lyoprotectants have a looser network of collagen and elastic fibers with bigger pore sizes. Tissue freeze-dried in the absence of lyoprotecants had the largest pore sizes, whereas the tissue freeze-dried in the presence of protectants showed pores of intermediate sizes between the decellularized tissue and the unprotected freeze-dried samples. Tissue freeze-dried with sucrose alone displayed less porosity than tissue freeze-dried with the sucrose/HES mixture, whereas no significant differences in biomechanical properties were observed. Decellularization decreased the elastic modulus of artery tissue. The elastic modulus of freeze-dried tissue without protectants resembled that of decellularized tissue. The elastic modulus values of freeze-dried tissue stabilized by lyoprotectants were greater than those of decellularized tissue, but similar to those of native tissue.

摘要

本研究旨在探讨冻干脱细胞猪肺动脉瓣的结构和生物力学特性。心脏瓣膜从猪心分离出来。组织经过脱细胞处理并分为三组:(1)无冷冻保护剂,(2)含 5%蔗糖,(3)含 2.5%蔗糖和 2.5%羟乙基淀粉(HES)的混合物,然后进行冻干。在没有冷冻保护剂的情况下进行冻干会导致猪瓣膜的组织学结构整体上更加破碎,尤其是纤维层和心室层之间。含有冷冻保护剂的冻干组织具有更疏松的胶原和弹性纤维网络,孔径更大。无冷冻保护剂冻干的组织具有最大的孔径,而含有保护剂冻干的组织则显示出介于脱细胞组织和未保护冻干样品之间的中等孔径。单独使用蔗糖冻干的组织比使用蔗糖/HES 混合物冻干的组织具有更少的孔隙率,但在生物力学性能方面没有观察到显著差异。脱细胞化降低了动脉组织的弹性模量。无保护剂冻干组织的弹性模量类似于脱细胞组织。经冷冻保护剂稳定的冻干组织的弹性模量值大于脱细胞组织,但与天然组织相似。

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