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Optimisation of Design and Manufacturing Parameters of 3D Printed Solid Microneedles for Improved Strength Sharpness and Drug Delivery

机译:3D印刷实心微针的设计和制造参数优化提高力量清晰度和药物递送

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摘要

3D printing has emerged as a powerful manufacturing technology and has attracted significant attention for the fabrication of microneedle (MN)-mediated transdermal systems. In this work, we describe an optimisation strategy for 3D-printed MNs, ranging from the design to the drug delivery stage. The key relationships between design and manufacturing parameters and quality and performance are systematically explored. The printing and post-printing set parameters were found to influence quality and material mechanical properties, respectively. It was demonstrated that the MN geometry affected piercing behaviour, fracture, and coating morphology. The delivery of insulin in porcine skin by inkjet-coated MNs was shown to be influenced by MN design.
机译:3D印刷已成为一种强大的制造技术,并引起了对微针(MN)介导的透皮系统的制备的重要关注。在这项工作中,我们描述了3D印刷MN的优化策略,从设计到药物输送阶段。系统地探索了设计和制造参数与质量和性能之间的关键关系。发现印刷和印刷后的设定参数分别影响质量和材料机械性能。据证明,Mn几何形状影响了刺穿行为,裂缝和涂层形态。通过喷墨涂覆的MNS在猪皮肤中递送胰岛素,被显示为受Mn设计的影响。

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