首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >Production of tissue-engineered three-dimensional human bronchial models.
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Production of tissue-engineered three-dimensional human bronchial models.

机译:组织工程化的三维人体支气管模型的制作。

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摘要

We have reported morphological and functional features of cells isolated from human bronchial biopsies. Both epithelial and fibroblastic cells were isolated from the same biopsies using collagenase. A few models have been established to study normal bronchial response to various agents and to understand the mechanisms responsible for some disorders, such as asthma. We produced three-dimensional bronchial equivalents in culture, using human epithelial and fibroblastic cells. We previously showed that peripheral anchorage can prevent the dramatic collagen contraction in gels seeded with fibroblasts when properly adapted to the size and type of cultured tissues. Our bilayered bronchial constructs were anchored and cultured under submerged conditions and at the air-liquid interface. Three culture media were compared. Serum-free medium supplemented with retinoic acid (5 x 10(-8) M) was found to be the best for maintenance of bronchial cell properties in the reconstructed bronchial tissue. Immunohistologicaland ultrastructural analyses showed that these equivalents present good structural organization, allowing ciliogenesis to occur in culture. Moreover, human bronchial goblet cells could differentiate and secrete mucus with culture time. Laminin, a major constituent of the basement membrane and basal cells, was also detected at the mesenchymoepithelial interface. Such models will be useful for studying human bronchial properties in vitro.
机译:我们已经报道了从人支气管活检组织分离的细胞的形态和功能特征。使用胶原酶从相同的活检组织中分离上皮细胞和成纤维细胞。已经建立了一些模型来研究对各种药物的正常支气管反应,并了解导致某些疾病(例如哮喘)的机制。我们使用人类上皮细胞和成纤维细胞,在培养物中产生了三维支气管等效物。我们以前表明,当适当适应培养组织的大小和类型时,外周锚固可以防止成纤维细胞接种的凝胶中胶原蛋白的急剧收缩。将我们的双层支气管构建体锚定并在淹没条件下和气液界面处进行培养。比较了三种文化媒介。补充视黄酸(5 x 10(-8)M)的无血清培养基被发现是在重建的支气管组织中维持支气管细胞特性最好的培养基。免疫组织学和超微结构分析表明,这些等同物具有良好的结构组织,可在培养物中发生纤毛发生。而且,人支气管杯状细胞可以随着培养时间而分化并分泌粘液。层粘连蛋白是基底膜和基底细胞的主要成分,在间质上皮界面也被检测到。这样的模型对于体外研究人的支气管特性将是有用的。

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