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Polymer Coated CaAl-Layered Double Hydroxide Nanomaterials for Potential Calcium Supplement

机译:用于潜在钙补充剂的聚合物包覆的CaAl层状双氢氧化物纳米材料

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摘要

We have successfully prepared layered double hydroxide (LDH) nanomaterials containing calcium and aluminum ions in the framework (CaAl-LDH). The surface of CaAl-LDH was coated with enteric polymer, Eudragit®L 100 in order to protect nanomaterials from fast dissolution under gastric condition of pH 1.2. The X-ray diffraction patterns, Fourier transform infrared spectroscopy, scanning electron and transmission electron microscopy revealed that the pristine LDH was well prepared having hydrocalumite structure, and that the polymer effectively coated the surface of LDH without disturbing structure. From thermal analysis, it was determined that only a small amount (less than 1%) of polymer was coated on the LDH surface. Metal dissolution from LDH nanomaterials was significantly reduced upon Eudragit®L 100 coating at pH 1.2, 6.8 and 7.4, which simulates gastric, enteric and plasma conditions, respectively, and the dissolution effect was the most suppressed at pH 1.2. The LDH nanomaterials did not exhibit any significant cytotoxicity up to 1000 μg/mL and intracellular calcium concentration significantly increased in LDH-treated human intestinal cells. Pharmacokinetic study demonstrated absorption efficiency of Eudragit®L 100 coated LDH following oral administration to rats. Moreover, the LDH nanomaterials did not cause acute toxic effect in vivo. All the results suggest the great potential of CaAl-LDH nanomaterials as a calcium supplement.
机译:我们已经成功地制备了在骨架中包含钙和铝离子的层状双氢氧化物(LDH)纳米材料(CaAl-LDH)。 CaAl-LDH的表面涂有肠溶聚合物Eudragit L 100,以保护纳米材料免于在pH为1.2的胃条件下快速溶解。 X射线衍射图,傅立叶变换红外光谱,扫描电子和透射电子显微镜表明,原始的LDH制备得很好,具有水钙铝石结构,并且该聚合物有效地覆盖了LDH的表面而没有干扰结构。通过热分析,确定仅少量(小于1%)的聚合物被涂覆在LDH表面上。在pH 1.2、6.8和7.4的Eudragit ® L 100涂层下,LDH纳米材料中的金属溶解显着降低,这分别模拟了胃,肠和血浆条件,在pH值下溶解效果受到最大抑制1.2。 LDH纳米材料直至1000μg/ mL都没有表现出任何明显的细胞毒性,并且在LDH处理的人肠道细胞中细胞内钙浓度显着增加。药代动力学研究表明,对大鼠口服Eudragit ® L 100包被的LDH的吸收效率。而且,LDH纳米材料在体内没有引起急性毒性作用。所有结果表明,CaAl-LDH纳米材料作为钙补充剂具有巨大的潜力。

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