Conjugation of PDLA onto MgO microspheres: comparison between solution grafting and melt grafting methods.

Wenhao Yu, Dong Zhou, Fangrui Liu, Xu Li, Lan Xiao, Muhammad Rafique, Zhiyong Li, João Rodrigues, Ruilong Sheng, Yulin Li
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Abstract

Magnesium oxide (MgO) is known for its bioactivity and osteoconductivity when incorporated into biodegradable poly(lactic acid) (PLA), whereas the weak interfacial bonding between MgO microspheres (mMPs) and PLA often leads to suboptimal composite properties with uncontrollable functionality. Conjugation of mMPs with PLA may offer a good way to enhance their compatibility. In this study, we systematically investigated two grafting techniques, solution grafting (Sol) and melt grafting (Mel), to decorate poly (D-lactic acid) (PDLA) on mMPs pre-treated by prioritized hydration to obtain Sol MPs and Mel MPs, in order to optimize the grafting efficiency and improve their controllability in the properties including the crystal structure and surface morphology. Meanwhile, the Sol method showed an improved grafting ratio (2.9 times higher) compared to the Mel method. The conjugation of mMPs with PDLA effectively neutralized the rapid pH increase during the degradation of pure mMPs, which could be used for sustainable delivery of the Mg2+ ions. Moreover, the Sol MPs exhibited the lowest degradation rate constant, which could be well fitted by the first-order dynamic model, suggesting a transformation of the mMP degradation mode from bulk degradation to surface degradation. This change in the biodegradation mode was beneficial for decreasing the over-basic effect caused by the quick degradation of pure mMPs, thus extending their application in the development of PDLA/MgO composites towards tissue engineering or regenerative medicine.

PDLA在MgO微球上的偶联:溶液接枝和熔融接枝方法的比较。
众所周知,氧化镁(MgO)与可生物降解的聚乳酸(PLA)结合时具有生物活性和骨导电性,然而,MgO微球(mMPs)与PLA之间的弱界面结合往往导致复合性能不理想且功能不可控。mMPs与PLA的偶联可以提供一种很好的增强其相容性的方法。在本研究中,我们系统地研究了溶液接枝(Sol)和熔融接枝(Mel)两种接枝技术,将聚d -乳酸(PDLA)修饰在优先水化预处理的mMPs上,得到Sol MPs和Mel MPs,以优化接枝效率,提高其晶体结构和表面形貌等性能的可控性。同时,溶胶法的接枝率比Mel法提高了2.9倍。mMPs与PDLA的偶联有效地抵消了纯mMPs降解过程中pH值的快速升高,可以用于Mg2+离子的持续递送。此外,溶胶MPs表现出最低的降解速率常数,可以很好地拟合一阶动力学模型,表明mMP的降解模式从体降解向表面降解转变。这种生物降解方式的改变有利于减少纯mMPs快速降解带来的过碱性效应,从而扩大其在组织工程或再生医学领域的PDLA/MgO复合材料开发中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of materials chemistry. B
Journal of materials chemistry. B 化学科学, 工程与材料, 生命科学, 分析化学, 高分子组装与超分子结构, 高分子科学, 免疫生物学, 免疫学, 生化分析及生物传感, 组织工程学, 生物力学与组织工程学, 资源循环科学, 冶金与矿业, 生物医用高分子材料, 有机高分子材料, 金属材料的制备科学与跨学科应用基础, 金属材料, 样品前处理方法与技术, 有机分子功能材料化学, 有机化学
CiteScore
12.00
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0.00%
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1 months
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