van Gaal Ronald C, Vrehen Annika F, van Sprang Johnick F, Fransen Peter-Paul K H, van Turnhout Mark C, Dankers Patricia Y W
Laboratory for Cell and Tissue Engineering, Eindhoven University of Technology, PO Box 513, 5600 MB, Eindhoven, The Netherlands.
Biomater Sci. 2021 Mar 21;9(6):2209-2220. doi: 10.1039/d0bm01930e. Epub 2021 Jan 28.
Bio-artificial kidneys require conveniently synthesized membranes providing signals that regulate renal epithelial cell function. Therefore, we aimed to find synthetic analogues for natural extracellular matrix (ECM) protein coatings traditionally used for epithelial cell culturing. Two biomaterial libraries, based on natural ECM-coatings and on synthetic supramolecular small molecule additives, were developed. The base material consisted of a bisurea (BU) containing polymer, providing supramolecular BU-additives to be incorporated via specific hydrogen bonding interactions. This system allows for a modular approach and therefore easy fractional factorial based screening. A natural coating on the BU-polymer material with basement membrane proteins, laminin and collagen IV, combined with catechols was shown to induce renal epithelial monolayer formation. Modification of the BU-polymer material with synthetic BU-modified ECM peptide additives did not result in monolayer formation. Unexpectedly, simple BU-catechol additives induced monolayer formation and presented similar levels of epithelial markers and apical transporter function as on the laminin, collagen IV and catechol natural coating. Importantly, when this BU-polymer material was processed into fibrous e-spun membranes the natural coating and the BU-catechol additive were shown to perfectly function. This study clearly indicates that complex natural ECM-coatings can be replaced by simple synthetic additives, and displays the potency of material libraries based on design of experiments in combination with modular, supramolecular chemistry.
生物人工肾需要方便合成的膜,以提供调节肾上皮细胞功能的信号。因此,我们旨在寻找传统上用于上皮细胞培养的天然细胞外基质(ECM)蛋白涂层的合成类似物。开发了两个基于天然ECM涂层和合成超分子小分子添加剂的生物材料库。基础材料由含双脲(BU)的聚合物组成,通过特定的氢键相互作用提供要掺入的超分子BU添加剂。该系统允许采用模块化方法,因此便于基于分数析因法进行筛选。结果表明,在含BU聚合物材料上涂覆基底膜蛋白、层粘连蛋白和IV型胶原,并结合儿茶酚,可诱导肾上皮单层形成。用合成的BU修饰的ECM肽添加剂对含BU聚合物材料进行修饰,未形成单层。出乎意料的是,简单的BU-儿茶酚添加剂可诱导单层形成,并且其上皮标志物和顶端转运体功能水平与层粘连蛋白、IV型胶原和儿茶酚天然涂层上的相似。重要的是,当这种含BU聚合物材料加工成纤维状电纺膜时,天然涂层和BU-儿茶酚添加剂显示出完美的功能。这项研究清楚地表明,复杂的天然ECM涂层可以被简单的合成添加剂取代,并展示了基于实验设计与模块化超分子化学相结合的材料库的潜力。