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Doped Halloysite Nanotubes for Use in the 3D Printing of Medical Devices

机译:用于医疗设备3D打印的掺杂埃洛石纳米管

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摘要

Previous studies have established halloysite nanotubes (HNTs) as viable nanocontainers capable of sustained release of a variety of antibiotics, corrosion agents, chemotherapeutics and growth factors either from their lumen or in outer surface coatings. Accordingly, halloysite nanotubes (HNTs) hold great promise as drug delivery carriers in the fields of pharmaceutical science and regenerative medicine. This study explored the potential of 3D printing drug doped HNT constructs. We used a model drug, gentamicin (GS) and polylactic acid (PLA) to fabricate GS releasing disks, beads, and pellets. Gentamicin was released from 3D printed constructs in a sustained manner and had a superior anti-bacterial growth inhibition effect that was dependent on GS doping concentration. While this study focused on a model drug, gentamicin, combination therapy is possible through the fabrication of medical devices containing HNTs doped with a suite of antibiotics or antifungals. Furthermore, tailored dosage levels, suites of antimicrobials, delivered locally would reduce the toxicity of individual agents, prevent the emergence of resistant strains, and enable the treatment of mixed infections.
机译:先前的研究已经建立了埃洛石纳米管(HNT)作为可行的纳米容器,能够从其内腔或外表面涂层中持续释放多种抗生素,腐蚀剂,化学治疗剂和生长因子。因此,埃洛石纳米管(HNTs)在药物科学和再生医学领域作为药物输送载体具有广阔的前景。这项研究探索了3D打印药物掺杂的HNT构建体的潜力。我们使用模型药物庆大霉素(GS)和聚乳酸(PLA)制作了GS释放盘,珠和小丸。庆大霉素以持续的方式从3D打印的构造中释放出来,并具有优异的抗菌生长抑制效果,这取决于GS掺杂浓度。尽管这项研究集中在庆大霉素的典范药物上,但通过制造包含掺杂有一套抗生素或抗真菌药的HNT的医疗设备,可以进行联合治疗。此外,定制的剂量水平,局部抗菌药物套件将在本地交付,以降低单个药物的毒性,防止耐药菌株的出现并能够治疗混合感染。

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