首页> 外文期刊>Tissue engineering, Part A >Assembly and testing of stem cell-seeded layered collagen constructs for heart valve tissue engineering.
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Assembly and testing of stem cell-seeded layered collagen constructs for heart valve tissue engineering.

机译:用于心脏瓣膜组织工程干细胞播种层胶原构建体的组装和测试。

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摘要

Tissue engineering holds great promise for treatment of valvular diseases. Despite excellent progress in the field, current approaches do not fully take into account each patient's valve anatomical uniqueness, the presence of a middle spongiosa cushion that allows shearing of external fibrous layers (fibrosa and ventricularis), and the need for autologous valvular interstitial cells. In this study we propose a novel approach to heart valve tissue engineering based on bioreactor conditioning of mesenchymal stem cell-seeded, valve-shaped constructs assembled from layered collagenous scaffolds. Fibrous scaffolds were prepared by decellularization of porcine pericardium and spongiosa scaffolds by decellularization and elastase treatment of porcine pulmonary arteries. To create anatomically correct constructs, we created silicone molds from native porcine aortic valves, dried two identical fibrous scaffolds onto the molds, and stabilized them with penta-galloyl-glucose a reversible collagen-binding polyphenol that reduces biodegradation. The layers were fused with a protein/aldehyde scaffold bio-adhesive and neutralized to reduce cytotoxicity. Spongiosa scaffolds, seeded with human bone marrow-derived stem cells, were inserted within the valve-shaped layered scaffolds and sutured inside the original aortic root. The final product was mounted in a heart valve bioreactor and cycled in cell culture conditions. Most cells were alive after 8 days, elongated significantly, and stained positive for vimentin, similar to native human valvular interstitial cells, indicating feasibility of our approach.
机译:组织工程对瓣膜疾病的治疗具有很大的希望。尽管该领域的进展非常出色,但目前的方法不完全考虑每个患者的阀门解剖唯一性,中间弹簧垫的存在,允许剪切外部纤维层(纤维组和心室),以及对自体瓣膜间质细胞的需要。在这项研究中,我们提出了一种基于间充质干细胞播种的生物反应器调理的心脏瓣膜组织工程方法,从层状胶原屑支架组装的阀形构建体。通过脱细胞化和弹性蛋白酶治疗猪肺动脉的猪心包和Spongiosa支架的脱细胞化制备纤维支架。为了产生解剖学正确的构建体,我们从天然猪主动脉阀创建了硅树脂模具,将两个相同的纤维支架上的纤维状支架干燥到模具上,并用五角洲洛酰葡萄糖稳定它们可逆胶原结合多酚,可降低生物降解。将层与蛋白质/醛支架生物粘合剂融合并中和以减少细胞毒性。用人骨髓衍生的干细胞播种的Spongiosa支架插入阀形层状支架内并缝合在原始主动脉根部内。最终产品安装在心脏瓣膜生物反应器中并循环在细胞培养条件下。大多数细胞在8天后活着,显着伸长,并染色阳性,类似于天然人类瓣膜间质细胞,表明我们的方法可行性。

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