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Osteogenic differentiation induced by biomineralized gelatin scaffold

机译:生物矿化明胶支架诱导成骨分化

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Biomineralized gelatin scaffold was obtained by freeze-drying and biomimetic approach. Chemo-physical, thermal and mechanical analysis demonstrated the crosslinking efficiency by EDC and the compression modulus (E) improvement. Moreover HA crystalline phase is sufficient to obtain an increasing of osteogenic proliferation and differentiation.
机译:通过冻干和仿生方法获得了生物矿化的明胶支架。化学物理,热和机械分析表明,EDC的交联效率和压缩模量(E)的提高。而且,HA结晶相足以获得成骨细胞增殖和分化的增加。

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  • 会议地点 Liverpool(GB)
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    Institute of Polymers Composites and Biomaterials - National Research Council of Italy. Mostra d'Oltremare Pad.20 - Viale Kennedy 54 80125- Naples Italy;

    Institute of Polymers Composites and Biomaterials - National Research Council of Italy. Mostra d'Oltremare Pad.20 - Viale Kennedy 54 80125- Naples Italy Department of Chemicals Science and Materials Technology National Research Council of Italy (DSCTM-CNR) P.le Aldo Moro 7 00185 - Rome Italy;

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