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Bionanocomposites based on cationic and anionic layered clays as controlled release devices of amoxicillin

机译:基于阳离子和阴离子层状粘土的脱硫复合物作为Amoxicillin的控释装置

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摘要

In the present work bionanocomposite materials based on layered double hydroxide and montmorillonite clay as drug delivery system for oral administration were prepared. With this aim, amoxicillin, an antibiotic commonly indicated for diverse kind of infections, was intercalated into Mt. or LDH interlayer space through cationic exchange and reconstruction reactions, respectively, taking advantage of the possibility to obtain positively or negatively charge in amoxicillin structure, depending on the pH of synthesis. From the diverse physicochemical characterization techniques, i.e. XRD, FTIR, TG-DTA and SEM was possible to infer that amoxicillin molecules are disposed as monolayer, covering the interlayer surface of both solids, neutralizing the charge of the lamellae, and consequently, conferring an improve in the thermal stability of the drug. In order to improve the performance of these intercalation compounds in acid media, e.g. stomach fluid (pH 1.2), these clay-amoxicillin hybrids were incorporated in a biopolymer matrix composed by carboxymethylcellulose polysaccharide and zein protein, giving rise bionanocomposite beads. These bionanocomposite materials, which were evaluated as a function of the type of intercalation compound and the amount of zein protein, showed good compatibility between their components, offering a more controlled release of amoxicillin compared to the respective hybrid or pure biopolymers blend, allowing that the active specie reaches the intestinal tract, improving the bioavailability of the drug.
机译:在本工作的基础上基于层双氢氧化物和蒙脱石粘土的脱硫材料,作为用于口服给药的药物递送系统。通过这种目的,Amoxicillin,常见于不同感染的抗生素,被嵌入到Mt.或者通过阳离子交换和重建反应的LDH层间空间,利用在Amoxicillin结构中获得正面或负电荷的可能性,这取决于合成的pH。从不同的物理化学表征技术中,即XRD,FTIR,TG-DTA和SEM可以推断,覆盖覆盖两种固体的中间层,中和薄片的电荷,并因此赋予了改善在药物的热稳定性中。为了改善这些嵌入化合物在酸培养基中的性能,例如。胃液(pH 1.2),这些粘土 - 阿莫西林杂交物掺入由羧甲基纤维素多糖和玉米蛋白蛋白蛋白质组成的生物聚合物基质中,得到脱硫醇复合珠。作为嵌入化合物类型的函数评价的这些脱硫材料和玉米醇蛋白蛋白的量在它们的组分之间表现出良好的相容性,与各自的杂合或纯生物聚合物混合物相比,提供了更受控的阿莫西林释放,使得活性物质达到肠道,提高了药物的生物利用度。

著录项

  • 来源
    《Applied clay science》 |2019年第6期|35-45|共11页
  • 作者单位

    Univ Fed Rio Grande do Norte Inst Quim Lab Peneiras Mol LABPEMOL BR-59078970 Natal RN Brazil|CSIC Inst Ciencia Mat Madrid Cantoblanco Madrid 28049 Spain;

    Univ Fed Maranhao Lab Quim Interfaces & Mat LIM Grp Pesquisa Mat Hibridos & Bionanocompositos Bio DEQUI BR-65080805 Sao Luis MA Brazil;

    Univ Fed Maranhao Lab Quim Interfaces & Mat LIM Grp Pesquisa Mat Hibridos & Bionanocompositos Bio DEQUI BR-65080805 Sao Luis MA Brazil;

    Univ Fed Rio Grande do Norte Inst Quim Lab Peneiras Mol LABPEMOL BR-59078970 Natal RN Brazil;

    Univ Fed Maranhao Lab Quim Interfaces & Mat LIM Grp Pesquisa Mat Hibridos & Bionanocompositos Bio DEQUI BR-65080805 Sao Luis MA Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Montmorillonite; Layered double hydroxide; Drug delivery; Bionanocomposite; Amoxicillin;

    机译:Montmorillonite;层状双氢氧化物;药物递送;胆碱复合;阿莫西林;

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