Suppr超能文献

使用双层胶原蛋白-透明质酸支架构建组织工程化气管支气管上皮模型

The development of a tissue-engineered tracheobronchial epithelial model using a bilayered collagen-hyaluronate scaffold.

作者信息

O'Leary Cian, Cavanagh Brenton, Unger Ronald E, Kirkpatrick C James, O'Dea Shirley, O'Brien Fergal J, Cryan Sally-Ann

机构信息

Tissue Engineering Research Group, Dept. of Anatomy, Royal College of Surgeons in Ireland (RCSI), Dublin, Ireland; School of Pharmacy, RCSI, Dublin, Ireland; Centre for Research in Medical Devices (CURAM), RCSI, Dublin, Ireland; Trinity Centre for Bioengineering, Trinity College Dublin (TCD), Dublin, Ireland; Advanced Materials and Bioengineering Research (AMBER) Centre, RCSI and TCD, Dublin, Ireland.

Cellular and Molecular Imaging Core, RCSI, Dublin, Ireland.

出版信息

Biomaterials. 2016 Apr;85:111-27. doi: 10.1016/j.biomaterials.2016.01.065. Epub 2016 Feb 1.

Abstract

Today, chronic respiratory disease is one of the leading causes of mortality globally. Epithelial dysfunction can play a central role in its pathophysiology. The development of physiologically-representative in vitro model systems using tissue-engineered constructs might improve our understanding of epithelial tissue and disease. This study sought to engineer a bilayered collagen-hyaluronate (CHyA-B) scaffold for the development of a physiologically-representative 3D in vitro tracheobronchial epithelial co-culture model. CHyA-B scaffolds were fabricated by integrating a thin film top-layer into a porous sub-layer with lyophilisation. The film layer firmly connected to the sub-layer with delamination occurring at stresses of 12-15 kPa. Crosslinked scaffolds had a compressive modulus of 1.9 kPa and mean pore diameters of 70 μm and 80 μm, depending on the freezing temperature. Histological analysis showed that the Calu-3 bronchial epithelial cell line attached and grew on CHyA-B with adoption of an epithelial monolayer on the film layer. Immunofluorescence and qRT-PCR studies demonstrated that the CHyA-B scaffolds facilitated Calu-3 cell differentiation, with enhanced mucin expression, increased ciliation and the formation of intercellular tight junctions. Co-culture of Calu-3 cells with Wi38 lung fibroblasts was achieved on the scaffold to create a submucosal tissue analogue of the upper respiratory tract, validating CHyA-B as a platform to support co-culture and cellular organisation reminiscent of in vivo tissue architecture. In summary, this study has demonstrated that CHyA-B is a promising tool for the development of novel 3D tracheobronchial co-culture in vitro models with the potential to unravel new pathways in drug discovery and drug delivery.

摘要

如今,慢性呼吸道疾病是全球主要死因之一。上皮功能障碍在其病理生理学中可能起核心作用。利用组织工程构建体开发具有生理代表性的体外模型系统,可能会增进我们对上皮组织及疾病的理解。本研究旨在构建一种双层胶原 - 透明质酸(CHyA - B)支架,用于开发具有生理代表性的三维体外气管支气管上皮共培养模型。通过将薄膜顶层整合到多孔底层并冻干来制备CHyA - B支架。薄膜层与底层牢固连接,在12 - 15 kPa应力下发生分层。交联支架的压缩模量为1.9 kPa,平均孔径根据冷冻温度分别为70μm和80μm。组织学分析表明,Calu - 3支气管上皮细胞系附着并在CHyA - B上生长,在薄膜层形成上皮单层。免疫荧光和qRT - PCR研究表明,CHyA - B支架促进了Calu - 3细胞分化,增强了粘蛋白表达,增加了纤毛形成并形成了细胞间紧密连接。在该支架上实现了Calu - 3细胞与Wi38肺成纤维细胞的共培养,创建了上呼吸道黏膜下组织类似物,验证了CHyA - B作为支持共培养和细胞组织的平台,可重现体内组织结构。总之,本研究表明CHyA - B是开发新型三维气管支气管体外共培养模型的有前途的工具,具有在药物发现和药物递送中揭示新途径的潜力。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验