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Effects of physical and chemical treatments on the molecular weight and degradation of alginate-hydroxyapatite composites

机译:物理和化学处理对海藻酸钠 - 羟基磷灰石复合材料分子量和降解的影响

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摘要

Degradation of alginate remains a critical issue to allow predictable biological performance upon implantation of alginate-based materials. Therefore, the objective of the current study is to compare the effects of γ-irradiation (dry state, 20–80 kGy), partial (1 and 4%) periodate oxidation (aqueous solution), and autoclaving (dry state) on the molecular weight of alginate, as well as the degradation behavior of alginate-based composites. The results show that γ-irradiation is by far the most destructive technique characterized by strongly reduced molecular weights and rapid loss of composite integrity upon soaking in simulated body fluid. Partial periodate oxidation is less destructive as characterized by more moderate decreases in molecular weight, but the production of hydrolytically labile bonds compromises the integrity of the resulting composites. Autoclaving is shown to be a powerful tool to reduce the molecular weight of alginate in a controllable and mild manner without compromising the integrity of the resulting alginate–hydroxyapatite composites, simply by increasing the number of repetitive autoclaving cycles.
机译:海藻酸盐的降解仍然是关键的问题,以允许在植入基于海藻酸盐的材料时可预测的生物学性能。因此,本研究的目的是比较γ辐照(干燥状态,20–80 kGy),部分(1%和4%)高碘酸盐氧化(水溶液)和高压灭菌(干燥状态)对分子的影响。海藻酸盐的重量,以及海藻酸盐基复合材料的降解行为。结果表明,γ射线辐射是迄今为止最具破坏性的技术,其特征是,分子量大大降低,浸泡在模拟体液中后复合材料完整性迅速丧失。部分高碘酸盐的氧化破坏性较小,其特征在于分子量更适度的降低,但是水解不稳定键的产生损害了所得复合材料的完整性。仅通过增加重复的高压灭菌循环次数,高压灭菌被证明是一种可控且温和的方式降低藻酸盐分子量的强大工具,而不会损害所得藻酸盐-羟基磷灰石复合材料的完整性。

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