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用于数字控制按压力和冲击速度将微针插入皮肤的通用施加器。

Universal Applicator for Digitally-Controlled Pressing Force and Impact Velocity Insertion of Microneedles into Skin.

作者信息

Leone Mara, van Oorschot Bart H, Nejadnik M Reza, Bocchino Andrea, Rosato Matteo, Kersten Gideon, O'Mahony Conor, Bouwstra Joke, van der Maaden Koen

机构信息

Division of BioTherapeutics, Leiden Academic Centre for Drug Research, Leiden University, Einsteinweg 55, 2333 CC Leiden, The Netherlands.

uPRAX Microsolutions B.V., Molengraaffsingel 12, 2623 JD Delft, The Netherlands.

出版信息

Pharmaceutics. 2018 Nov 1;10(4):211. doi: 10.3390/pharmaceutics10040211.

Abstract

Microneedle technologies have been developed for dermal drug and vaccine delivery, including hollow-, solid-, coated-, and dissolving microneedles. Microneedles have been made in many different geometries and of many different materials, all of which may influence their skin-penetrating ability. To ensure reproducible and effective drug and vaccine delivery via microneedles, the optimal insertion parameters should be known. Therefore, a digitally-controlled microneedle applicator was developed to insert microneedles into the skin via impact insertion (velocity) or via pressing force insertion. Six microneedle arrays with different geometries and/or materials were applied onto ex vivo human skin with varying velocities or pressing forces. Penetration efficiency and delivered antigen dose into the skin after application of microneedles were determined. In general, microneedles pierced the skin more efficiently when applied by impact application as compared to application via pressing force. However, the angle of application of the applicator on the skin can affect the velocity of the impact, influencing the penetration efficiency of microneedles. Regarding the antigen delivery into the skin, the delivered dose was increasing by increasing the velocity or pressure, and thus, increasing the penetration efficiency. These data demonstrate that an applicator is an important tool to determine optimal application conditions with ex vivo human skin.

摘要

微针技术已被开发用于真皮药物和疫苗递送,包括空心微针、实心微针、包衣微针和可溶解微针。微针有多种不同的几何形状和材料制成,所有这些都可能影响其皮肤穿透能力。为确保通过微针实现可重复且有效的药物和疫苗递送,应了解最佳插入参数。因此,开发了一种数字控制的微针施用器,通过冲击插入(速度)或按压力量插入将微针插入皮肤。将六种具有不同几何形状和/或材料的微针阵列以不同的速度或按压力量施加到离体人皮肤上。测定微针施用后皮肤的穿透效率和递送的抗原剂量。一般来说,与通过按压力量施用相比,通过冲击施用时微针更有效地穿透皮肤。然而,施用器在皮肤上的施用角度会影响冲击速度,进而影响微针的穿透效率。关于抗原递送至皮肤,通过增加速度或压力,进而提高穿透效率,递送剂量会增加。这些数据表明,施用器是确定离体人皮肤最佳施用条件的重要工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d269/6321443/036b2b734131/pharmaceutics-10-00211-g011.jpg

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