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Hollow Microneedles for Intradermal Injection Fabricated by Sacrificial Micromolding and Selective Electrodeposition

机译:牺牲性微成型和选择性电沉积制备的皮内注射空心微针

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摘要

Limitations with standard intradermal injections have created a clinical need for an alternative, low-cost injection device. In this study, we designed a hollow metal microneedle for reliable intradermal injection and developed a high-throughput micromolding process to produce metal microneedles with complex geometries. To fabricate the microneedles, we laser-ablated a 70 μm × 70 μm square cavity near the tip of poly(lactic acid-co-glyoclic acid) (PLGA) microneedles. The master structure was a template for multiple micromolded PLGA replicas. Each replica was sputtered with a gold seed layer with minimal gold deposited in the cavity due to masking effects. In this way, nickel was electrodeposited selectively outside of the cavity, after which the polymer replica was dissolved to produce a hollow metal microneedle. Force-displacement tests showed the microneedles, with 12 μm thick electrodeposition, could penetrate skin with an insertion force 9 times less than their axial failure force. We injected fluid with the microneedles into pig skin in vitro and hairless guinea pig skin in vivo. The injections targeted 90% of the material within the skin with minimal leakage onto the skin surface. We conclude that hollow microneedles made by this simple microfabrication method can achieve targeted intradermal injection.
机译:标准皮内注射的局限性导致了对替代性低成本注射装置的临床需求。在这项研究中,我们设计了一种中空金属微针以进行可靠的皮内注射,并开发了一种高通量微成型工艺来生产具有复杂几何形状的金属微针。为了制造微针,我们在聚乳酸-乙醇酸共聚物(PLGA)微针尖端附近激光烧蚀了一个70μm×70μm的方形腔。主结构是多个微模PLGA复制品的模板。每个复制品都镀有金种子层,由于掩蔽效应,金的层中的金沉积最少。以此方式,将镍选择性地电沉积在空腔外部,然后将聚合物复制品溶解以产生空心金属微针。力位移测试表明,具有12μm厚电沉积的微针可以以比轴向破坏力小9倍的插入力穿透皮肤。我们将液体和微针分别注入猪皮肤和体内无毛豚鼠皮肤。注射的目标是皮肤内90%的材料,而对皮肤表面的泄漏最小。我们得出的结论是,通过这种简单的微加工方法制成的空心微针可以实现靶向皮内注射。

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