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Multilayer three-dimensional filter paper constructs for the culture and analysis of aortic valvular interstitial cells

机译:用于培养的多层三维过滤纸构建体和分析主动脉瓣膜间质细胞

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Culturing aortic valvular interstitial cells in an environment that models the aortic valve is an essential step towards understanding the progression of calcific aortic valve disease. Here the adaption of a three-dimensional (3-D) stacked paper-based culture system is presented for analyzing valve cells in a thick collagen gel matrix. Filter paper layers, modeled after a 96-well plate design, were printed with a wax well-plate template and then seeded with valve cell and collagen mixtures that quickly gelled into 3-D cultures. Stacking these layers permitted extensive customization of culture thickness and cell density profiles to model the full thickness of native valve tissue. Aortic valvular interstitial cells seeded into the paper-based constructs consistently demonstrated high survival up to 14 days of culture with significant increases in cell number through the first 3 days of culture. After 4 days following seeding, valve cells in single layer cultures showed reduced smooth muscle a-actin expression with a stabilized cell density, suggesting a transition from an activated phenotype to a more quiescent state. Valve cells in multilayer cultures demonstrated the ability to migrate from layer to layer and had the highest smooth muscle a-actin expression in areas with predicted low oxygen tensions. These results establish the filter-paper-based method as a viable culture system for analyzing valve cells in an in vitro 3-D model of the aortic valve. (C) 2014 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:培养主动脉瓣膜间质细胞在模型模型主动脉瓣是理解钙化主动脉瓣病的进展的重要步骤。这里提出了三维(3-D)堆叠纸培养系统的适应,用于分析厚胶原凝胶基质中的阀门。在96孔板设计之后建模的滤纸层用蜡井板模板印刷,然后用阀门电池和胶原混合物播种,迅速凝聚到3D培养物中。堆叠这些层允许广泛定制培养厚度和细胞密度型材以模拟天然瓣膜组织的全厚度。将含有纸构建体的主动脉瓣膜间质细胞始终如一地证明了高达14天的培养物的高存活,通过培养的前3天,细胞数量显着增加。在播种后4天后,单层培养物中的阀门细胞显示出具有稳定的细胞密度的平滑肌A-accin表达,表明从活化表型转变为更静态的状态。多层培养物中的阀门细胞证明了从层迁移到层的能力,并且在具有预测低氧气张力的区域中具有最高的平滑肌A-accin表达。这些结果建立了基于滤纸的方法作为用于分析主动脉瓣的体外3-D模型中的阀门的可行培养系统。 (c)2014 Acta Materialia Inc.出版的国家版权所有。保留所有权利。

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