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用于优化水凝胶形成微针作为快速高效透皮微采样工具的响应面法

Response Surface Methodology for Optimization of Hydrogel-Forming Microneedles as Rapid and Efficient Transdermal Microsampling Tools.

作者信息

Leanpolchareanchai Jiraporn, Nuchtavorn Nantana

机构信息

Department of Pharmacy, Faculty of Pharmacy, Mahidol University, 447 Sri Ayudhaya Rd., Rajathevee, Bangkok 10400, Thailand.

Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Mahidol University, 447 Sri Ayudhaya Rd., Rajathevee, Bangkok 10400, Thailand.

出版信息

Gels. 2023 Apr 6;9(4):306. doi: 10.3390/gels9040306.

Abstract

Microneedles (MNs) have shown a great potential for the microsampling of dermal interstitial fluid (ISF) in a minimally invasive manner for point-of-care testing (POCT). The swelling properties of hydrogel-forming microneedles (MNs) allow for passive extraction of ISF. Surface response approaches, including Box-Behnken design (BBD), central composite design (CCD), and optimal discrete design, were employed for the optimization of hydrogel film by studying the effects of independent variables (i.e., the amount of hyaluronic acid, Gantrez S-97, and pectin) on the swelling property. The optimal discrete model was selected to predict the appropriate variables, due to the good fit of the experimental data and the model validity. The analysis of variance (ANOVA) of the model demonstrated -value < 0.0001, R = 0.9923, adjusted R = 0.9894, and predicted R = 0.9831. Finally, the predicted film formulation containing 2.75% / hyaluronic acid, 1.321% / Gantrez S-97, and 1.246% / pectin was used for further fabrication of MNs (525.4 ± 3.8 µm height and 157.4 ± 2.0 µm base width), which possessed 1508.2 ± 66.2% swelling, with 124.6 ± 7.4 µL of collection volume, and could withstand thumb pressure. Moreover, almost 50% of MNs achieved a skin insertion depth of approx. 400 µm, with 71.8 ± 3.2% to 78.3 ± 2.6% recoveries. The developed MNs show a promising prospect in microsample collection, which would be beneficial for POCT.

摘要

微针在以微创方式进行即时检测(POCT)的真皮间质液(ISF)微量采样方面显示出巨大潜力。形成水凝胶的微针(MNs)的溶胀特性允许被动提取ISF。通过研究自变量(即透明质酸、Gantrez S-97和果胶的用量)对溶胀特性的影响,采用了包括Box-Behnken设计(BBD)、中心复合设计(CCD)和最优离散设计在内的表面响应方法来优化水凝胶膜。由于实验数据与模型的良好拟合以及模型的有效性,选择最优离散模型来预测合适的变量。模型的方差分析(ANOVA)表明,p值<0.0001,R = 0.9923,调整后的R = 0.9894,预测的R = 0.9831。最后,将含有2.75% /透明质酸、1.321% / Gantrez S-97和1.246% /果胶的预测膜配方用于进一步制造微针(高度为525.4±3.8 µm,基部宽度为157.4±2.0 µm),其溶胀率为1508.2±66.2%,收集体积为124.6±7.4 µL,并且能够承受拇指压力。此外,几乎50%的微针实现了约400 µm的皮肤插入深度,回收率为71.8±3.2%至78.3±2.6%。所开发的微针在微量样品采集方面显示出有前景的前景,这将有利于即时检测。

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