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Preparation Drug Releasing Property and Pharmacodynamics of Soy Isoflavone-Loaded Chitosan Microspheres

机译:大豆异黄酮壳聚糖微球的制备释药性能及药效学

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摘要

Soybean isoflavone (SIF) has anti-aging properties and many other biological functions; however, SIF is difficult to reach higher blood concentration due to its rapid metabolism. Therefore, it is of great value to design and produce a sustained-release formulation that is able to maintain a stable level of plasma concentrations. In this paper, soybean isoflavone sustained-release microsphere from chitosan and sodium alginate was prepared successfully. The important factors that determined the quality of the microspheres were the sodium alginate concentration in solution B, the ratio of soybean isoflavone to chitosan and the mixing speed. The relative yield, encapsulation efficiency and drug loading capability of SIF were much higher than the existing commercial formulations. In real gastrointestinal conditions, compared with the non-sustained release group, the release rate of SIF slowed down and the reaction time was prolonged. Animal experiments showed that sustained-release microspheres intensified the anti-aging potentials of SIF. Compared with the Non-sustained release (NSR) group mice, oral SIF/CHI microsphere treated mice were better in the Morris Water Maze Test (MWMT), the MDA level in the both plasma and brain of the sustained release(SR) group mice decreased, and SOD content was remarkably improved.
机译:大豆异黄酮(SIF)具有抗衰老特性和许多其他生物学功能;然而,由于SIF的快速代谢,很难达到更高的血药浓度。因此,设计和生产能够维持血浆浓度稳定水平的缓释制剂具有重要价值。本文成功地从壳聚糖和海藻酸钠中制备了大豆异黄酮缓释微球。决定微球质量的重要因素是溶液B中的海藻酸钠浓度,大豆异黄酮与壳聚糖的比例以及混合速度。 SIF的相对产率,包封效率和载药能力远远高于现有的商业制剂。在真正的胃肠道条件下,与非持续释放组相比,SIF的释放速度减慢,反应时间延长。动物实验表明,缓释微球增强了SIF的抗衰老潜力。与非持续释放(NSR)组小鼠相比,口服SIF / CHI微球治疗的小鼠在莫里斯水迷宫测试(MWMT),持续释放(SR)组小鼠的血浆和大脑中的MDA水平均更好减少,SOD含量显着提高。

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