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溶解微针的形状决定皮肤穿透能力和药物递送效果。

Shape of dissolving microneedles determines skin penetration ability and efficacy of drug delivery.

作者信息

Min Hye Su, Kim Youseong, Nam Jeehye, Ahn Hyeri, Kim Minkyung, Kang Geonwoo, Jang Mingyu, Yang Huisuk, Jung Hyungil

机构信息

Department of Biotechnology, Building 123, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul 03722, South Korea.

Juvic Inc., 272 Digital-ro, Guro-gu, Seoul 08389, South Korea.

出版信息

Biomater Adv. 2023 Feb;145:213248. doi: 10.1016/j.bioadv.2022.213248. Epub 2022 Dec 17.

Abstract

Dissolving microneedles (DMNs) are used for minimally invasive transdermal drug delivery. Dissolution of drugs is achieved in the body after skin penetration by DMNs. Unlike injections, the insertion depth of the DMN is an important issue because the amount of dissolved DMN in the skin determines the amount of drug delivered. Therefore, the inaccurate drug delivery due to the incomplete insertion is one of the limitations of the DMN. Thus, many insertion and penetration tests have been essentially conducted in DMN studies, yet only incomplete insertion is known and the exact standard for how much it is not inserted is still unknown. Moreover, there are various shapes have been introduced in the microneedle field, there have been only few studies that have compared and evaluated the insertion depth of the shapes. Here, we present an intensive approach for DMN insertion based on DMN shape among various insertion deciding factors. We numerically analyzed the volumetric distribution of three types of DMN shapes: conical-shaped DMN, funnel-shaped DMN, and candlelit-shaped DMN, and introduced a new insertion evaluation criterion while covering previous insertion evaluations. Using optical coherence tomography, the images of DMNs embedded in the skin were analyzed in rea l-time, and the amount of drug delivered was analyzed at sectioned depth with a cryotome. The in vitro data confirmed that the insertion depth differed based on shape, and the resulting drug delivery depended on the volume assigned to the insertion depth. Insulin-loaded DMNs were applied to C57BL/6 mice, and the results of pharmacokinetic and pharmacodynamic analyses supported the results of the in vitro analysis. Our approach, which considers the correlation between DMN shape and insertion depth, will contribute to establishing criteria for various DMN design and maximizing drug delivery.

摘要

溶蚀微针(DMNs)用于微创经皮给药。药物在DMNs穿透皮肤后在体内实现溶解。与注射不同,DMN的插入深度是一个重要问题,因为皮肤中溶解的DMN量决定了药物递送量。因此,由于插入不完全导致的药物递送不准确是DMN的局限性之一。因此,在DMN研究中基本上进行了许多插入和穿透测试,但仅知道插入不完全,且未插入的具体标准仍然未知。此外,微针领域引入了各种形状,但很少有研究对这些形状的插入深度进行比较和评估。在此,我们基于DMN形状,在各种插入决定因素中提出了一种密集的DMN插入方法。我们对三种类型的DMN形状(锥形DMN、漏斗形DMN和烛台形DMN)的体积分布进行了数值分析,并引入了一种新的插入评估标准,同时涵盖了先前的插入评估。使用光学相干断层扫描,实时分析嵌入皮肤的DMN图像,并使用冷冻切片机在切片深度分析药物递送量。体外数据证实,插入深度因形状而异,并且由此产生的药物递送取决于分配给插入深度的体积。将载有胰岛素的DMNs应用于C57BL/6小鼠,药代动力学和药效学分析结果支持了体外分析结果。我们考虑DMN形状与插入深度之间相关性的方法,将有助于为各种DMN设计建立标准并使药物递送最大化。

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