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首页> 外文期刊>Biofabrication >Three-dimensional printing of a microneedle array on personalized curved surfaces for dual-pronged treatment of trigger finger
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Three-dimensional printing of a microneedle array on personalized curved surfaces for dual-pronged treatment of trigger finger

机译:触发手指双端部处理的个性化弯曲表面上的微针阵列的三维印刷

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摘要

The hand function of patients who suffer from trigger finger can be impaired by the use of traditional splints. There is also a risk of systemic side effects with oral non-steroidal anti-inflammatory drugs (NSAIDs) used for pain relief. Microneedle-assisted transdermal drug delivery offers an attractive alternative for local delivery of NSAIDs. However, traditional microneedle arrays fabricated on flat surfaces are unable to deliver drugs effectively across the undulating skin surface of affected finger(s). In this study, using 3D printing, a dual-function microneedle array has been fabricated on personalized curved surfaces (microneedle splint) for drug delivery and splinting of the affected finger. The novel microneedle splint was assessed for itsphysical characteristics and the microneedles were shown to withstand up to twice the average thumb force without fracturing. An average skin penetration efficiency of 64% on dermatomed human cadaver skin was achieved and the final microneedle splint showed biocompatibility with human dermal cell lines. A significantly higher amount of diclofenac permeated through the skin by 0.5 h with the use of the microneedle splint as compared to intact skin. The fabricated microneedle splint can thus be a potential new approach to treat trigger finger via personalized splinting without affecting normal hand function.
机译:患有触发手指的患者的手功能可以通过使用传统夹板损害。使用用于疼痛缓解的口腔非甾体抗炎药(NSAID)也存在系统性副作用的风险。微针辅助透皮药物送餐提供了局部送入NSAID的替代品。然而,在平坦表面上制造的传统微针阵列无法在受影响的手指的起伏皮肤表面上有效地递送药物。在本研究中,使用3D打印,双功能微针阵列已经在个性化曲面(微针夹板)上制造,用于药物递送和受影响的手指的夹板。评估新型微针夹板以进行物理特性,并且显示微针可承受直到平均拇指力的两倍,而不会压裂。实现了皮肤皮肤皮肤的平均皮肤渗透效率为64%,最终的微针夹板显示出与人的皮肤细胞系的生物相容性。与完整的皮肤相比,通过使用微针夹板,通过皮肤通过皮肤渗透到较高量的双氯芬酸。因此,制造的微针夹板可以通过个性化夹板处理触发手指的潜在新方法,而不会影响正常手术。

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