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用于组织间液(ISF)提取的3D打印微针(MN)固定器的参数研究。

Parametric study of 3D printed microneedle (MN) holders for interstitial fluid (ISF) extraction.

作者信息

Taylor Robert M, Maharjan Dilendra, Moreu Fernando, Baca Justin T

机构信息

1Department of Emergency Medicine, The University of New Mexico, MSC11 6025, Albuquerque, NM 87131 USA.

2Department of Civil, Construction and Environmental Engineering, Courtesy Appointment, The University of New Mexico, Centennial Engineering Center 3056, MSC01 1070, Albuquerque, NM 87131 USA.

出版信息

Microsyst Technol. 2020;26(6):2067-2073. doi: 10.1007/s00542-020-04758-0. Epub 2020 Feb 1.

Abstract

The need for novel, minimally invasive diagnostic, prognostic, and therapeutic biomedical devices has garnered increased interest in recent years. Microneedle (MN) technology has stood out as a promising new method for drug delivery, as well as extraction of interstitial fluid (ISF). ISF comprises a large portion of the extracellular fluid in living organisms yet remains inadequately characterized for clinical applications. Current MN research has focused on the fabrication of needles with different materials like silicone, carbon, and metals. However, little effort has been put forth into improving MN holders and patches that can be used with low cost MNs, which could effectively change how MNs are attached to the human body. Here, we describe different 3D-printed MN holders, printed using an MJP Pro 2500 3D printer, and compare the ISF extraction efficiencies in CD Hairless rats. We varied design parameters that may affect the skin-holder interface, such as throat thickness, tip curvature, and throat diameter. MN arrays, with insertion depths of 1500 μm, had extraction efficiencies of 0.44 ± 0.35, 0.85 ± 0.64, 0.32 ± 0.21, or 0.44 ± 0.46 µl/min when designed with flat, concave, convex, or bevel profile geometries, respectively. Our results suggest ISF extraction is influenced by MN holder design parameters and that a concave tip design is optimal for extracting ISF from animals. The future direction of this research aims to enable a paradigm in MN design that maximizes its efficiency and engineering performance in terms of volume, pressure, and wearability, thereby automatizing usage and reducing patient intervention to ultimately benefit remote telemedicine.

摘要

近年来,对新型微创诊断、预后和治疗生物医学设备的需求引发了越来越多的关注。微针(MN)技术作为一种有前景的药物递送以及间质液(ISF)提取新方法脱颖而出。ISF在生物体的细胞外液中占很大一部分,但在临床应用中其特征仍未得到充分描述。目前的微针研究主要集中在使用硅酮、碳和金属等不同材料制造针。然而,在改进可与低成本微针配合使用的微针支架和贴片方面投入的精力很少,而这些支架和贴片可以有效改变微针与人体的附着方式。在此,我们描述了使用MJP Pro 2500 3D打印机打印的不同3D打印微针支架,并比较了在CD无毛大鼠中的ISF提取效率。我们改变了可能影响皮肤 - 支架界面的设计参数,如喉部厚度、尖端曲率和喉部直径。插入深度为1500μm的微针阵列,当设计为平面、凹面、凸面或斜面轮廓几何形状时,提取效率分别为0.44±0.35、0.85±0.64、0.32±0.21或0.44±0.46μl/分钟。我们的结果表明,ISF提取受微针支架设计参数的影响,并且凹形尖端设计对于从动物体内提取ISF是最佳的。这项研究的未来方向旨在实现一种微针设计范式,使其在体积、压力和可穿戴性方面的效率和工程性能最大化,从而实现自动化使用并减少患者干预,最终使远程远程医疗受益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7809/7238769/d6c70927f5c5/542_2020_4758_Fig1_HTML.jpg

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