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研究用于制造治疗应用定制微针阵列的激光消融工艺参数。

Investigating Laser Ablation Process Parameters for the Fabrication of Customized Microneedle Arrays for Therapeutic Applications.

作者信息

Aldawood Faisal Khaled, Andar Abhay, Desai Salil

机构信息

Department of Mechanical Engineering, College of Engineering, University of Bisha, P.O. Box 001, Bisha 67714, Saudi Arabia.

Translational Life Science Technology, University of Maryland Baltimore County, 1000 Hilltop Circle, Baltimore, MD 21250, USA.

出版信息

Pharmaceutics. 2024 Jun 30;16(7):885. doi: 10.3390/pharmaceutics16070885.

Abstract

Microneedles are an innovation in the field of medicine that have the potential to revolutionize drug delivery, diagnostics, and cosmetic treatments. This innovation provides a minimally invasive means to deliver drugs, vaccines, and other therapeutic substances into the skin. This research investigates the design and manufacture of customized microneedle arrays using laser ablation. Laser ablation was performed using an ytterbium laser on a polymethyl methacrylate (PMMA) substrate to create a mold for casting polydimethylsiloxane (PDMS) microneedles. An experimental design was conducted to evaluate the effect of process parameters including laser pulse power, pulse width, pulse repetition, interval between pulses, and laser profile on the desired geometry of the microneedles. The analysis of variance (ANOVA) model showed that lasing interval, laser power, and pulse width had the highest influence on the output metrics (diameter and height) of the microneedle. The microneedle dimensions showed an increase with higher pulse width and vice versa with an increase in pulse interval. A response surface model indicated that the laser pulse width and interval (independent variables) significantly affect the response diameter and height (dependent variable). A predictive model was generated to predict the microneedle topology and aspect ratio varying from 0.8 to 1.5 based on the variation in critical input process parameters. This research lays the foundation for the design and fabrication of customized microneedles based on variations in specific input parameters for therapeutic applications in dermal sensors, drug delivery, and vaccine delivery.

摘要

微针是医学领域的一项创新,有可能彻底改变药物递送、诊断和美容治疗。这项创新提供了一种微创手段,可将药物、疫苗和其他治疗物质输送到皮肤中。本研究调查了使用激光烧蚀定制微针阵列的设计和制造。使用镱激光在聚甲基丙烯酸甲酯(PMMA)基板上进行激光烧蚀,以制造用于浇铸聚二甲基硅氧烷(PDMS)微针的模具。进行了一项实验设计,以评估工艺参数(包括激光脉冲功率、脉冲宽度、脉冲重复率、脉冲间隔和激光轮廓)对微针所需几何形状的影响。方差分析(ANOVA)模型表明,激光间隔、激光功率和脉冲宽度对微针的输出指标(直径和高度)影响最大。微针尺寸随着脉冲宽度的增加而增大,反之随着脉冲间隔的增加而减小。响应面模型表明,激光脉冲宽度和间隔(自变量)显著影响响应直径和高度(因变量)。基于关键输入工艺参数的变化,生成了一个预测模型,以预测微针拓扑结构和长宽比在0.8至1.5之间的变化。本研究为基于特定输入参数变化的定制微针的设计和制造奠定了基础,这些微针可用于皮肤传感器、药物递送和疫苗递送等治疗应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89e8/11279485/36a0d540a08d/pharmaceutics-16-00885-g001.jpg

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