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Wood-based nanocellulose and bioactive glass modified gelatin-alginate bioinks for 3D bioprinting of bone cells

机译:基于木材的纳米纤维素和生物活性玻璃改性明胶 - 海藻酸盐生物蛋白,用于骨细胞3D生物印刷

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A challenge in the extrusion-based bioprinting is to find a bioink with optimal biological and physicochemical properties. The aim of this study was to evaluate the influence of wood-based cellulose nanofibrils (CNF) and bioactive glass (BaG) on the rheological properties of gelatin-alginate bioinks and the initial responses of bone cells embedded in these inks. CNF modulated the flow behavior of the hydrogels, thus improving their printability. Chemical characterization by SEM-EDX and ion release analysis confirmed the reactivity of the BaG in the hydrogels. The cytocompatibility of the hydrogels was shown to be good, as evidenced by the viability of human osteoblast-like cells (Saos(2)) in cast hydrogels. For bioprinting, 4-layer structures were printed from cell-containing gels and crosslinked with CaCl2 . Viability, proliferation and alkaline phosphatase activity (ALP) were monitored over 14 d. In the BaG-free gels, Saos-2 cells remained viable, but in the presence of BaG the viability and proliferation decreased in correlation with the increased viscosity. Still, there was a constant increase in the ALP activity in all the hydrogels. Further bioprinting experiments were conducted using human bone marrow-derived mesenchymal stem cells (hBMSCs), a clinically relevant cell type. Interestingly, hBMSCs tolerated the printing process better than Saos-2 cells and the ALP indicated BaG-stimulated early osteogenic commitment. The addition of CNF and BaG to gelatin-alginate bioinks holds great potential for bone tissue engineering applications.
机译:基于挤出的生物监测器中的挑战是找到具有最佳生物和物理化学性质的生物链。本研究的目的是评估木基纤维素纳米纤维(CNF)和生物活性玻璃(袋)对明胶 - 藻酸盐生物酸盐的流变性能的影响及嵌入这些油墨中的骨细胞的初始反应。 CNF调节水凝胶的流动行为,从而提高其可印刷性。 SEM-EDX和离子释放分析的化学表征证实了水凝胶中袋的反应性。水凝胶的细胞胶质相容性被证明是良好的,如人成骨细胞样细胞(Saos(2))在浇铸水凝胶中的可行性所证明的。对于生物印刷,从含细胞的凝胶印刷4层结构并用CaCl 2交联。在14天内监测活力,增殖和碱性磷酸酶活性(ALP)。在无袋凝胶中,SAOS-2细胞保持可行,但在袋子存在下,活力和增殖与粘度增加的相关性下降。尽管如此,所有水凝胶中的ALP活性仍然存在恒定增加。使用人骨髓衍生的间充质干细胞(HBMSCs),临床相关的细胞类型进行进一步的生物印刷实验。有趣的是,HBMSCs耐受比SAOS-2细胞更好的印刷过程,并且ALP指示袋刺激的早期成骨承诺。加入CNF和袋子至明胶 - 藻酸盐生物蛋白对骨组织工程应用具有很大的潜力。

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