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Biomimetic synthesis of two different types of renewable cellulosic nanomaterials for scaffolding in tissue engineering

机译:两种不同类型可再生纤维素纳米材料的仿生合成组织工程脚手架

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As a rapidly growing area in materials design, the biomimetic approach at the frontier between biology and materials science aims to introduce advanced materials with structural diversities and functional versatilities by mimicking remarkable systems available in nature. Inspired by the fascinating nanostructured assembly existing in the cell walls of different plant species, we designed two fully bio-based green nanomaterials reinforced with renewable polysaccharide nanoparticles in the form of cellulose nanowhiskers (CNWs). In our initial design, the CNWs were incorporated into a cellulose acetate propionate matrix to form a bionanocomposite film, while in the second design the CNWs were entangled within a network of a collagen-ous medium to introduce a bionanocomposite hydrogel. Tensile and rheological measurements were carried out to study the system's deformation as subjected to axial force or oscillatory shear. Biocompatibility was tested via incubation of human bone marrow-derived mesenchymal stem cells in vitro. Careful control of the processing conditions resulted in a three-dimensional rigid CNW network percolating within both biopolymer matrices, giving rise to an excellent performance at only a small fraction of CNWs at 3 wt.%. This study reveals that the fully bio-based green nanomaterials with enhanced mechanical percolation could construct a suitable platform for scaffolding in tissue engineering.
机译:作为材料设计中快速增长的地区,生物学和材料科学之间的前沿的仿生方法旨在通过模仿自然可用的非凡的系统来引入具有结构多样性和功能性的先进材料。灵感来自于存在于不同植物物种的细胞壁中存在的迷人纳米结构组件,我们设计了两种完全生物的绿色纳米材料,其用纤维素纳米须须形式(CNWS)的可再生多糖纳米颗粒增强。在我们的初始设计中,将CNW掺入醋酸纤维素丙酸酯基质中以形成脱硫复合膜,而在第二种设计中,CNW在胶原-OU培养基的网络内缠结以引入脱硫复合水凝胶。进行拉伸和流变学测量,以研究系统的变形,如轴向力或振荡剪切。通过在体外孵育人骨髓衍生的间充质干细胞来测试生物相容性。仔细控制加工条件导致两维的刚性CNW网络在生物聚合物基质中渗透,仅在3重量%的少量CNW中产生优异的性能。该研究表明,具有增强机械渗透的全生物基绿纳米材料可以构建组织工程中的合适平台。

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