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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Gelatin carrageenan sericin hydrogel composites improves cell viability of cryopreserved SaOS-2 cells
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Gelatin carrageenan sericin hydrogel composites improves cell viability of cryopreserved SaOS-2 cells

机译:明胶角果蛋白硅粉水凝胶复合材料改善了冷冻保存的SAOS-2细胞的细胞活力

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摘要

Cryopreservation and the low revival rate of cryopreserved cells remains a major challenge in cell based bone regeneration therapies. In our current study we aimed to develop a sericin based hydrogel composite incorporating various drugs and growth factors to enhance cell attachment, cryopreservation to increase the cellular viability upon revival. Sericin, gelatin and carrageenan blended hydrogel composites were prepared and explored for their physicochemical properties. The hydrogels prepared were porous and showed higher biocompatibility. Further, silver nanoparticles, alendronate and insulin like growth factor (IGF-1) were incorporated into the hybrid hydrogels individually and checked for sustained drug release profile. IGF-1 incorporated hydrogels composites showed better osteogenic cell attachment, proliferation and cell revival upon cryopreservation. The clonogenic potential of seeded cells upon 30 days of cryopreservation was also evaluated which was 55% in IGF-1 incorporated scaffold cells. A flow cytometry based staining protocol using Annexin V was developed which showed a live cell population up to 80% even after 30 days of crypreservation. These results validate the potential of our formulated hydrogels as cell based systems aimed for increasing cell survival upon cryopreservation and thus has a great potential for bone repair and regeneration. (C) 2020 Published by Elsevier B.V.
机译:冷冻保存和冷冻保存细胞的低复兴率仍然是细胞基骨再生疗法的主要挑战。在我们目前的研究中,我们旨在开发一种掺入各种药物和生长因子的霉菌基于水凝胶复合材料,以增强细胞附着,冷冻保存以增加复兴时的细胞活力。制备硅粉,明胶和角叉菜胶混纺水凝胶复合材料,并探索其物理化学性质。制备的水凝胶是多孔的并且显示出更高的生物相容性。此外,将银纳米颗粒,醛酮酸盐和胰岛素单独掺入杂交水凝胶中,并检查持续的药物释放曲线。 IGF-1掺入水凝胶复合材料显示出更好的骨质发生细胞附着,增殖和细胞复兴在冷冻保存时。还评估了在冷冻保存30天后的种子细胞的克隆灭菌潜力在IGF-1掺入支架细胞中为55%。开发了使用膜蛋白V的流式细胞术的染色方案,即使在CryPreServation的30天后,即使在30天后,活细胞群高达80%。这些结果验证了我们配制的水凝胶的潜力,作为基于细胞的系统,旨在提高冷冻保存后的细胞存活,因此具有骨骼修复和再生的巨大潜力。 (c)2020由elsevier b.v发布。

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