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A novel scalable manufacturing process for the production of hydrogel-forming microneedle arrays

机译:用于生产水凝胶形成微针阵列的新型可扩展制造工艺

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摘要

class="kwd-title">Keywords: Microneedle, Scalable, Manufacture, Injection moulding, Drug delivery, Commercialisation class="head no_bottom_margin" id="idm139630196369776title">AbstractA novel manufacturing process for fabricating microneedle arrays (MN) has been designed and evaluated. The prototype is able to successfully produce 14 × 14 MN arrays and is easily capable of scale-up, enabling the transition from laboratory to industry and subsequent commercialisation. The method requires the custom design of metal MN master templates to produce silicone MN moulds using an injection moulding process. The MN arrays produced using this novel method was compared with centrifugation, the traditional method of producing aqueous hydrogel-forming MN arrays. The results proved that there was negligible difference between either methods, with each producing MN arrays with comparable quality. Both types of MN arrays can be successfully inserted in a skin simulant. In both cases the insertion depth was approximately 60% of the needle length and the height reduction after insertion was in both cases approximately 3%.
机译:<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> class =“ kwd-title”>关键字:微针,可扩展,制造,注射成型,药物输送,商业化 class =“ head no_bottom_margin” id =“ idm139630196369776title”>摘要设计并评估了一种用于制造微针阵列(MN)的新颖制造工艺。该原型能够成功生产14×14 MN阵列,并且易于扩展规模,从而实现了从实验室到工业的过渡以及随后的商业化。该方法需要对金属MN主模板进行定制设计,以使用注塑工艺生产有机硅MN模具。使用这种新方法生产的MN阵列与离心法进行比较,离心是生产水性水凝胶的MN阵列的传统方法。结果证明,两种方法之间的差异均可以忽略不计,每种方法生产的MN阵列质量均相当。两种类型的MN阵列都可以成功插入皮肤模拟物中。在这两种情况下,插入深度均为针头长度的60%,在两种情况下,插入后的高度降低约为3%。

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