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Sustained Release of Antibacterial Agents from Doped Halloysite Nanotubes

机译:从掺杂的埃洛石纳米管中持续释放抗菌剂。

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The use of nanomaterials for improving drug delivery methods has been shown to be advantageous technically and viable economically. This study employed the use of halloysite nanotubes (HNTs) as nanocontainers, as well as enhancers of structural integrity in electrospun poly-e-caprolactone (PCL) scaffolds. HNTs were loaded with amoxicillin, Brilliant Green, chlorhexidine, doxycycline, gentamicin sulfate, iodine, and potassium calvulanate and release profiles assessed. Selected doped halloysite nanotubes (containing either Brilliant Green, amoxicillin and potassium calvulanate) were then mixed with poly-e-caprolactone (PLC) using the electrospinning method and woven into random and oriented-fibered nanocomposite mats. The rate of drug release from HNTs, HNTs/PCL nanocomposites, and their effect on inhibiting bacterial growth was investigated. Release profiles from nanocomposite mats showed a pattern of sustained release for all bacterial agents. Nanocomposites were able to inhibit bacterial growth for up to one-month with only a slight decrease in bacterial growth inhibition. We propose that halloysite doped nanotubes have the potential for use in a variety of medical applications including sutures and surgical dressings, without compromising material properties.
机译:纳米材料用于改善药物递送方法的用途已显示在技术上和经济上是有利的。这项研究采用了埃洛石纳米管(HNT)作为纳米容器,以及电纺聚e-己内酯(PCL)支架中结构完整性的增强剂。给HNT装上阿莫西林,亮绿,洗必泰,多西环素,硫酸庆大霉素,碘和卡尔维拉酸钾,并评估释放曲线。然后使用电纺丝方法将选定的掺杂的埃洛石纳米管(包含亮绿,阿莫西林和钙氟酸钾)与聚己内酯(PLC)混合,并编织成无规和取向纤维纳米复合垫。研究了HNT,HNT / PCL纳米复合材料的药物释放速率及其对细菌生长的抑制作用。纳米复合材料垫的释放曲线显示了所有细菌制剂的持续释放模式。纳米复合材料能够抑制细菌生长长达一个月,而对细菌生长的抑制作用只有轻微的下降。我们认为,掺有埃洛石的纳米管具有在不损害材料性能的前提下,可用于包括缝合线和外科敷料在内的多种医疗应用的潜力。

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