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用于无痛局部麻醉的单多糖可溶解微针:制备、表征及神经元成像

Single Polysaccharide Dissolvable Microneedles for Painless Local Anesthesia: Fabrication, Characterization, and Neuronal Imaging.

作者信息

Leite João M S P, Silva Ana C Q, Jesus Ana, da Cruz Bruna C, Vieira Sandra I, Dias-Pereira Patrícia, Costa Paulo C, Almeida Isabel F, Correia-Sá Inês, Silvestre Armando J D, Neves Bruno M, Vilela Carla, Freire Carmen S R

机构信息

CICECO - Aveiro Institute of Materials, Department of Chemistry, University of Aveiro, Aveiro 3810-193, Portugal.

Associate Laboratory i4HB - Institute for Health and Bioeconomy, Faculty of Pharmacy, University of Porto, Porto 4050-313, Portugal.

出版信息

ACS Biomater Sci Eng. 2025 Aug 1. doi: 10.1021/acsbiomaterials.5c00968.

Abstract

In recent years, microneedles (MNs) have shown high potential as drug delivery devices capable of administering different drugs in a simple, fast, and minimally invasive manner. Their ability to pierce the stratum corneum barrier heavily outweighs the inconveniences posed by conventional administration methods such as hypodermal injections, creams, or ointments. In this work, high-performance, single-component polysaccharide-based microneedles, . pullulan MNs, were produced by micromolding, aimed for transdermal delivery of lidocaine. These dissolvable MNs were able to sustain forces up to 1.5 N per needle without breakage. Their ability to overcome the stratum corneum was validated using excised human abdominal skin, with the MNs successfully reaching the dermis. The MN tips completely dissolved after 10 min in an agarose gel skin model and porcine ear skin, with 26 and 32% of lidocaine being retained in the patch after 10 min of insertion in the agarose gel and porcine skin, respectively. Cytocompatibility against multiple cell lines (HaCaT, 3T3, and RAW 264.7) was demonstrated by the resazurin metabolic assay, with over 80% cell viability in all cases. Time-lapse fluorescence microscopy confirmed that the activity of the MN-released lidocaine on sensory neurons was comparable to that of a pure lidocaine solution at a similar concentration. In sum, given its low onset time (<10 min), swift dissolution, and effective drug release, this pullulan-based system constitutes a simple, safe, and efficient delivery device, contrasting conventional methods of local anesthetic administration.

摘要

近年来,微针作为一种药物递送装置展现出了巨大潜力,它能够以简单、快速且微创的方式给药不同药物。其穿透角质层屏障的能力远远超过皮下注射、乳膏或软膏等传统给药方式带来的不便。在这项研究中,通过微成型技术制备了高性能的单组分多糖基微针,即支链淀粉微针,用于利多卡因的透皮递送。这些可溶解的微针每根能够承受高达1.5 N的力而不折断。使用切除的人体腹部皮肤验证了它们克服角质层的能力,微针成功到达了真皮层。在琼脂糖凝胶皮肤模型和猪耳皮肤中,微针尖端在10分钟后完全溶解,在琼脂糖凝胶和猪皮肤中插入10分钟后,分别有26%和32%的利多卡因保留在贴片上。通过刃天青代谢试验证明了对多种细胞系(HaCaT、3T3和RAW 264.7)的细胞相容性,在所有情况下细胞活力均超过80%。延时荧光显微镜证实,微针释放的利多卡因对感觉神经元的活性与类似浓度的纯利多卡因溶液相当。总之,鉴于其起效时间短(<10分钟)、迅速溶解和有效的药物释放,这种基于支链淀粉的系统构成了一种简单、安全且高效的递送装置,与传统的局部麻醉给药方法形成对比。

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