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Effect of CMC Concentration on Cell Growth Behavior of PVA/CMC Hydrogel

机译:CMC浓度对PVA / CMC水凝胶细胞生长行为的影响

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Polyvinyl alcohol (PVA)/carboxymethyl cellulose (CMC) hydrogels containing various CMC concentration of 2 to 10 wt% are prepared using cyclic freezing/thawing and subsequent gamma-ray irradiation to evaluate the effect of CMC content on cell growth rate of the hydrogels. A 3-D porous network structure is successfully formed via physical and chemical crosslinking. The pore size and the metronidazole drug release rate of the PVA/CMC hydrogels increase with raising the CMC concentration from 2 to 10 wt%, however, the structural integrity is severely damaged. The highest compressive strength of 99.2 +/- 9.6 kPa and the fastest cell growth determined by scratch assay and enzyme-linked immunosorbent assay are observed for the irradiated PVA/6 wt% CMC hydrogels, indicating that they are highly suitable for wound dressing requiring fast regeneration.
机译:使用环状冷冻/解冻和随后的γ射线照射制备含有各种CMC浓度为2至10wt%的聚乙烯醇(PVA)/羧甲基纤维素(CMC)水凝胶,以评估CMC含量对水凝胶细胞生长速率的影响。 通过物理和化学交联成功地形成了3-D多孔网络结构。 PVA / CMC水凝胶的孔径和甲硝唑药物释放速率随提高2至10重量%的CMC浓度而增加,然而,结构完整性严重受损。 对于辐照的PVA / 6wt%CMC水凝胶,观察到99.2 +/- 9.6kPa的最高抗压强度和通过刮擦测定和酶联免疫吸附测定确定的最快的细胞生长,表明它们非常适合需要快速的伤口敷料 再生。

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