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Nanocellulose/PEGDA Aerogels with Tunable Poisson’s Ratio Fabricated by Stereolithography for Mouse Bone Marrow Mesenchymal Stem Cell Culture

机译:纳米纤维素/ PEGDA Aerogels具有调谐泊松比的立体骨髓间充质干细胞培养

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摘要

In this study, nanocellulose aerogels with a tunable Poisson’s ratio were fabricated. Tissue engineering scaffolds with a tunable Poisson’s ratio may be better able to simulate the mechanical behavior of natural tissues. A mixture of cellulose nanofibers (CNFs) and polyethylene glycol diacrylate (PEGDA) was used as the raw material to prepare CNF/PEGDA aerogels with a multiscale pore structure through a combination of stereolithography (SLA) and freeze-drying. The aerogels were fabricated with a regular macropore network structure and a random and homogeneous distribution of micropores. The macropore structure of the scaffolds could be customized through SLA, which resulted in scaffolds that exhibited one of three different mechanical behaviors: positive Poisson’s ratio (PPR), negative Poisson’s ratio (NPR) or zero Poisson’s ratio (ZPR). Then, the hydrogel scaffolds were transformed into aerogel scaffolds through the freeze-drying method, which endowed the scaffolds with homogeneously distributed micropores. The material ratio and exposure were adjusted to obtain scaffolds with a clear pore structure. Then, the CNF/PEGDA scaffolds with different Poisson’s ratios were subjected to mechanical tests, and their chondrogenic induction characteristics were determined. The NPR scaffold not only provided a good environment for cell growth but also affected mouse bone marrow mesenchymal stem cell (mBMSC) proliferation and chondrogenic induction. Thus, we provide a feasible scheme for the preparation of three-dimensional scaffolds with a multiscale pore structure and tunable Poisson’s ratio, which contributes to cartilage repair in tissue engineering.
机译:在这项研究中,制造了具有可调泊松比率的纳米纤维素气凝胶。带有可调泊松比的组织工程支架可能更好地模拟天然组织的机械行为。使用纤维素纳米纤维(CNFS)和聚乙二醇二丙烯酸酯(PEGDA)的混合物作为原料,通过立体光刻(SLA)和冷冻干燥,用多尺度孔结构制备CNF / PEGDA气凝胶。使用常规的大孔网络结构和微孔的随机和均匀分布来制造气凝胶。支架的大孔结构可以通过SLA定制,从而导致展示三种不同的机械行为中的一个:正泊松比(PPR),负泊松比(NPR)或零泊松比率(ZPR)。然后,通过冷冻干燥方法将水凝胶支架转化到气凝胶支架中,使得具有均匀分布的微孔的支架。调节材料比和曝光以获得具有透明孔结构的支架。然后,对具有不同泊松比率的CNF / PEGDA支架进行机械测试,确定它们的软骨形成诱导特性。 NPR支架不仅为细胞生长提供了良好的环境,而且影响了小鼠骨髓间充质干细胞(MBMSC)增殖和软骨菌诱导。因此,我们提供了一种可行的方案,用于制备具有多尺度孔隙结构和可调泊松比的三维支架,这有助于组织工程中的软骨修复。

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