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3D printed microneedle patches using stereolithography (SLA) for intradermal insulin delivery

机译:3D使用立体光刻(SLA)的印刷微针贴片用于皮内胰岛素递送

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3D printed microneedle arrays were fabricated using a biocompatible resin through stereolithography (SLA) for transdermal insulin delivery. Microneedles were built by polymerising consecutive layers of a photopolymeric resin. Thin layers of insulin and sugar alcohol or disaccharide carriers were formed on the needle surface by inkjet printing. The optimization of the printing process resulted in superior skin penetration capacity of the 3D printed microneedles compared to metal arrays with minimum applied forces varying within the range of 2 to 5 N. Micro-CT analysis showed strong adhesion of the coated films on the microneedle surface even after penetration to the skin. In vivo animal trials revealed fast insulin action with excellent hypoglycaemia control and lower glucose levels achieved within 60 min, combined with steady state plasma glucose over 4 h compared to subcutaneous injections.
机译:使用通过立体化(SLA)的生物相容性树脂来制造3D印刷的微针阵列,用于透皮胰岛素递送。通过聚合连续的光聚合树脂层来构建微酮。通过喷墨印刷在针表面上形成胰岛素和糖醇或二糖载体的薄层。与金属阵列相比,印刷过程的优化导致3D印刷微针的皮肤穿透能力与在2-5n的最小施加力范围内的金属阵列相比,微型CT分析显示出涂层膜在微针表面上的强粘附即使在渗透到皮肤后。在体内动物试验中显示出快速的胰岛素作用,具有优异的低血糖对照和60分钟内实现的葡萄糖水平,与皮下注射相比,与4小时相比,与稳态血浆葡萄糖联合。

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