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Layer-by-layer assembly of 3D tissue constructs with functionalized graphene

机译:3D组织结构与功能化石墨烯的逐层组装

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摘要

Carbon-based nanomaterials have been considered as promising candidates to mimic certain structure and function of native extracellular matrix materials for tissue engineering. Significant progress has been made in fabricating carbon nanoparticle-incorporated cell culture substrates, but limited studies have been reported on the development of three-dimensional (3D) tissue constructs using these nanomaterials. Here, we present a novel approach to engineer 3D multi-layered constructs using layer-by-layer (LbL) assembly of cells separated with self-assembled graphene oxide (GO)-based thin films. The GO-based structures are shown to serve as cell adhesive sheets that effectively facilitate the formation of multi-layer cell constructs with interlayer connectivity. By controlling the amount of GO deposited in forming the thin films, the thickness of the multi-layer tissue constructs could be tuned with high cell viability. Specifically, this approach could be useful for creating dense and tightly connected cardiac tissues through the co-culture of cardiomyocytes and other cell types. In this work, we demonstrated the fabrication of stand-alone multi-layer cardiac tissues with strong spontaneous beating behavior and programmable pumping properties. Therefore, this LbL-based cell construct fabrication approach, utilizing GO thin films formed directly on cell surfaces, has great potential in engineering 3D tissue structures with improved organization, electrophysiological function, and mechanical integrity.
机译:碳基纳米材料已被认为是模拟组织工程中天然细胞外基质材料的某些结构和功能的有前途的候选者。在制备掺有碳纳米颗粒的细胞培养基质方面取得了重大进展,但是关于使用这些纳米材料开发三维(3D)组织构建体的报道很少。在这里,我们提出了一种新颖的方法来设计3D多层构造,该构造使用通过自组装基于氧化石墨烯(GO)的薄膜分隔的单元的逐层(LbL)组装。示出了基于GO的结构用作细胞粘合片,其有效地促进了具有层间连接性的多层细胞构建体的形成。通过控制在形成薄膜中沉积的GO的数量,多层组织构建体的厚度可以在高细胞活力下进行调节。特别地,这种方法对于通过心肌细胞和其他细胞类型的共培养产生密集且紧密连接的心脏组织可能是有用的。在这项工作中,我们演示了具有强自发搏动行为和可编程泵浦特性的独立多层心脏组织的制造。因此,这种基于LbL的细胞构建体制造方法利用直接在细胞表面形成的GO薄膜,在工程3D组织结构的工程化,电生理功能和机械完整性改善方面具有巨大潜力。

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