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基于3D打印的盐酸右美托咪定微针的制备与评价

[Fabrication and evaluation of dexmedetomidine hydrochloride microneedles based on 3D printing].

作者信息

Yang Yuanke, Han Xiaolu, Li Xianfu, Hong Xiaoxuan, Yang Shanshan, Liu Chunyan, Wang Zengming, Zheng Aiping

机构信息

School of Pharmacy, North China University of Science and Technology, Tangshan 063210, Hebei, China.

State Key Laboratory of National Security Specially Needed Medicines, Academy of Military Medical Sciences, Beijing 100850, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2025 Aug 25;41(8):3214-3227. doi: 10.13345/j.cjb.250159.

Abstract

Compared with conventional transdermal drug delivery systems, dissolving microneedles significantly enhance drug bioavailability by penetrating the stratum corneum barrier and achieving intradermal drug delivery. In order to improve the transdermal bioavailability of dexmedetomidine hydrochloride, in this study, a novel microneedle delivery system was developed for dexmedetomidine hydrochloride based on 3D printing combined with micro-molding. By systematically optimizing the microneedle geometrical parameters, array arrangement, and preparation process parameters, we determined the optimal ratio of drug-carrying matrix as 15% PVP (polyvinyl pyrrolidone) K90. The microneedles exhibited significant drug loading gradients, with mean content of (209.99±27.56) μg/patch, (405.31±30.31) μg/patch, and (621.61±34.43) μg/patch. They showed a regular pyramidal structure under SEM and handheld electron microscopy, and their mechanical strength allowed effective penetration into the stratum corneum. The surface contact angles were all < 90°, indicating excellent hydrophilicity. The microneedles dissolved completely within 10 min after skin insertion, achieving a cumulative release rate of 90% (Higuchi model, =0.996) during 2 hours of transdermal permeation. The cytotoxicity test and hemolysis test verified good biocompatibility. Pharmacodynamic evaluation showed that the microneedle group demonstrated pain-relieving effect within 15 min, with the pain threshold at the time point of 60 min being 3 times that in the transdermal cream group. The microneedle system developed in this study not only offers an efficient drug delivery option for patients but also establishes an innovative platform for rapid percutaneous delivery of hydrophilic drugs, demonstrating significant potential in perioperative pain management.

摘要

与传统的经皮给药系统相比,溶蚀性微针通过穿透角质层屏障并实现皮内给药,显著提高了药物的生物利用度。为了提高盐酸右美托咪定的经皮生物利用度,本研究基于3D打印与微成型技术,开发了一种新型的盐酸右美托咪定微针给药系统。通过系统优化微针的几何参数、阵列排列和制备工艺参数,我们确定了载药基质的最佳比例为15%的聚乙烯吡咯烷酮(PVP)K90。微针呈现出显著的药物负载梯度,平均含量分别为(209.99±27.56) μg/贴、(405.31±30.31) μg/贴和(621.61±34.43) μg/贴。在扫描电子显微镜和手持式电子显微镜下,它们呈现出规则的金字塔结构,其机械强度能够有效穿透角质层。表面接触角均<90°,表明具有优异的亲水性。微针在插入皮肤后10分钟内完全溶解,在2小时的经皮渗透过程中实现了90%的累积释放率(Higuchi模型,=0.996)。细胞毒性试验和溶血试验证实了良好的生物相容性。药效学评价表明,微针组在15分钟内显示出镇痛效果,60分钟时的痛阈是透皮乳膏组的3倍。本研究开发的微针系统不仅为患者提供了一种高效的给药选择,还为亲水性药物的快速经皮给药建立了一个创新平台,在围手术期疼痛管理中显示出巨大的潜力。

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