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Ultrathin Ceramic Membranes as Scaffolds for Functional Cell Coculture Models on a Biomimetic Scale

机译:超薄陶瓷膜作为仿生规模功能细胞共培养模型的支架。

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摘要

Epithelial tissue serves as an interface between biological compartments. Many in vitro epithelial cell models have been developed as an alternative to animal experiments to answer a range of research questions. These in vitro models are grown on permeable two-chamber systems; however, commercially available, polymer-based cell culture inserts are around 10 μm thick. Since the basement membrane found in biological systems is usually less than 1 μm thick, the 10-fold thickness of cell culture inserts is a major limitation in the establishment of realistic models. In this work, an alternative insert, accommodating an ultrathin ceramic membrane with a thickness of only 500 nm (i.e., the Silicon nitride Microporous Permeable Insert [SIMPLI]-well), was produced and used to refine an established human alveolar barrier coculture model by both replacing the conventional inserts with the SIMPLI-well and completing it with endothelial cells. The structural–functional relationship of the model was evaluated, including the translocation of gold nanoparticles across the barrier, revealing a higher translocation if compared to corresponding polyethylene terephthalate (PET) membranes. This study demonstrates the power of the SIMPLI-well system as a scaffold for epithelial tissue cell models on a truly biomimetic scale, allowing construction of more functionally accurate models of human biological barriers.
机译:上皮组织充当生物区室之间的界面。已经开发出许多体外上皮细胞模型作为动物实验的替代品,以回答一系列研究问题。这些体外模型是在可渗透的两腔系统上生长的。然而,市售的基于聚合物的细胞培养插入物的厚度约为10μm。由于在生物系统中发现的基底膜通常小于1μm厚,因此细胞培养插入物的10倍厚度是建立实际模型的主要限制。在这项工作中,生产了一种替代性插入物,该插入物可容纳厚度仅为500 nm的超薄陶瓷膜(即氮化硅微孔可渗透插入物[SIMPLI]-孔),并通过以下方法完善已建立的人肺泡屏障共培养模型:既可以用SIMPLI孔代替传统的插入物,又可以用内皮细胞完成插入。对模型的结构-功能关系进行了评估,包括金纳米颗粒穿过屏障的移位,与相应的聚对苯二甲酸乙二醇酯(PET)膜相比,具有更高的移位。这项研究证明了SIMPLI孔系统在真正的仿生规模上可作为上皮组织细胞模型支架的功能,从而可以构建功能更准确的人类生物屏障模型。

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