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5-Fluorouracil-Loaded Sodium Alginate/Konjac Glucomannan Interacted with Attapulgite as a Potential Drug Delivery System

机译:5-氟尿嘧啶负载的藻酸钠/konjac glucomannan与attapulgite相互作用,作为潜在的药物输送系统

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摘要

5-FU loaded sodium alginate / konjac glucomannan (SA/KGM) and sodium alginate / konjac glucomannan / attapulgite (SA/ KGM/ATP) microbeads were fabricated by an injection method. FTIR, SEM, XRD, TGA, DSC, and EDS were used to characterize these fabricated microbeads. Besides, encapsulation efficiency, swelling and in vitro drug release studies were also carried out. The results show that the addition of ATP can make the encapsulation efficiency of the model drug reach 76.58± 0.91 %, and significantly reduce the burst release of 5-FU within 300 minutes. Moreover, four common kinetic models were used to assessed the in vitro release kinetics and the results supported Ritger-Peppas models, also indicating the mechanism of drug transport was controlled by Fickian diffusion. The results suggest that the prepared SA/KGM/ATP microbeads could potentially to be used in drug delivery system.
机译:通过注射方法制造了5-FU负载的藻酸钠 / konjac葡糖甘甘(SA / kgm)和藻酸钠 / konjac葡萄糖药 / attapulgite(SA / KGM / ATP)微粒。 FTIR,SEM,XRD,TGA,DSC和EDS用于表征这些制造的微粒。 此外,还进行了封装效率,肿胀和体外药物释放研究。 结果表明,ATP的添加可以使模型药物的封装效率达到76.58±0.91%,并在300分钟内显着降低5-FU的爆发释放。 此外,使用了四个常见的动力学模型来评估体外释放动力学,结果支持的Ritger-Peppas模型,也表明药物转运的机制受到Fickian扩散的控制。 结果表明,制备的SA/KGM/ATP微粒可能可能用于药物输送系统。

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  • 来源
    《Chemistry Select》 |2022年第22期|共9页
  • 作者单位

    Key Laboratory of Biologic Resources Protection and Utilization of Hubei Province, School of Chemical and Environment Engineering, Hubei Minzu University, Enshi 445000, China;

    School of Chemical and Environment Engineering, Hubei Minzu University, Enshi 445000, China;

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  • 正文语种 英语
  • 中图分类 Online;
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