Key Laboratory of Material Chemistry for Energy Conversion and Storage of Ministry of Education (HUST), and State Key Laboratory of Materials Processing and Mold Technology, School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology (HUST), Wuhan 430074, China.
Department of Dermatology, Union Hospital, Tongji Medical College, HUST, Wuhan 430022, China.
J Mater Chem B. 2020 Mar 11;8(10):2032-2039. doi: 10.1039/c9tb02837d.
Porous polymer microneedles (MNs) have great potential in transdermal medical applications due to their three-dimensional (3D) porous structures and high porosity. However, existing approaches for the fabrication of such porous polymer MNs are complicated and only applicable to limited types of polymers. Here, we describe a facile yet effective phase inversion route to prepare polymer MNs with highly porous and interconnected pore structures. The fabrication process is simple and mild without involving high temperatures or irradiation, and can be applied to a broad spectrum of commonly used polymers (e.g., cellulose acetate (CA), polysulfone (PSF), polyethersulfone (PES), polylactic acid (PLA), etc.). Thanks to the capillary effect and large cavity given by highly porous and interconnected structures, the resulting porous polymer MNs show the capability of rapidly extracting dermal interstitial fluid (ISF) and efficiently loading/releasing drug compounds. As a proof of concept, we demonstrate the use of these porous CA MNs in the highly efficient extraction of ISF for glucose level detection and administration of insulin for hyperglycemia. Given the recent trend of painless techniques in diagnosis and treatment, the current study provides a new opportunity for the fabrication of MN-based devices for transdermal ISF extraction and drug delivery.
多孔聚合物微针(MNs)由于其三维(3D)多孔结构和高孔隙率,在透皮医学应用中具有巨大的潜力。然而,现有的制备这种多孔聚合物 MNs 的方法较为复杂,且仅适用于有限类型的聚合物。在这里,我们描述了一种简单而有效的相转化方法来制备具有高度多孔和互联孔结构的聚合物 MNs。该制造工艺简单温和,不涉及高温或辐射,并且可以应用于广泛的常用聚合物(例如,醋酸纤维素(CA)、聚砜(PSF)、聚醚砜(PES)、聚乳酸(PLA)等)。由于高度多孔和互联结构提供的毛细作用和大空腔,所得到的多孔聚合物 MNs 表现出快速提取皮肤间质液(ISF)和有效加载/释放药物化合物的能力。作为概念验证,我们展示了这些多孔 CA MNs 在高效提取 ISF 以用于葡萄糖水平检测和高血糖症胰岛素给药中的应用。鉴于诊断和治疗中无痛苦技术的最新趋势,本研究为基于 MN 的透皮 ISF 提取和药物输送装置的制造提供了新的机会。