Lidocaine-Loaded Iontophoresis-Driven Fiber-Based Microneedle Patch for Controllable and Long-Lasting Transdermal Local Analgesia

IF 17.2 1区 工程技术 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Ting Wang, Xiaoyu Shi, Yue Wang, Hengda Sun, Yu Sun, Gang Wang, Hong Jiang
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引用次数: 0

Abstract

The acute pain induced by clinical procedures, such as venipuncture, dental operations, and dermatological treatments, as well as postoperative pain, drives the advancement of anesthetic techniques aimed at alleviating discomfort. This situation underscores the ongoing significance of effective pain management strategies within the field of anesthesia. This paper presents an integrated iontophoresis (ITP)-driven fiber-based microneedle patch (IFMP) regulated by a smartphone for controllable, long-lasting lidocaine transdermal delivery. The IFMP integrates pure cotton fiber canvas-based dissolving microneedles (MNs) with ITP into a patch, with the MNs tips and gel layers significantly increasing the drug-loading capacity, achieving a one-step drug administration strategy of “dissolution, diffusion, and ITP.” Lidocaine is released via the microchannels of MNs by passive diffusion. Additionally, an electric current initiates active ITP for lidocaine delivery, creating synergy. User-requirement-based drug release by precisely modulating electrical signals in rat pain models is described herein. A smartphone application enables precise dosage control. It offers three different delivery modes: single-dose, pulse delivery, and sustained-release, ensuring rapid onset, and long-lasting pain relief. This versatility makes the system suitable for various pain conditions. The IFMP represents a promising system for patient-controlled local analgesia treatment, enabling active and long-term local self-controlled pain management in a safe and regulated manner.

Graphical Abstract

The iontophoresis-driven fiber-based microneedle patch combines fiber-based dissolving microneedles with iontophoresis, facilitating controlled lidocaine release through diffusion and electrical activation for enhanced effect. Precise modulation of electrical signals allows user-requirement-based drug release in rat pain models. A smart application supports precise dosing in single-dose, pulse, or sustained-release modes, ensuring efficient and prolonged pain management.

负载利多卡因离子穿刺驱动的纤维微针贴片用于可控长效透皮局部镇痛
临床手术引起的急性疼痛,如静脉穿刺、牙科手术和皮肤科治疗,以及术后疼痛,推动了旨在减轻不适的麻醉技术的进步。这种情况强调了有效的疼痛管理策略在麻醉领域的持续意义。本文提出了一种由智能手机调节的集成离子透入(ITP)驱动的纤维微针贴片(IFMP),用于可控、持久的利多卡因透皮给药。IFMP将带有ITP的纯棉纤维帆布溶解微针(MNs)集成到贴片中,MNs尖端和凝胶层显著增加了载药能力,实现了“溶解、扩散和ITP”的一步给药策略。利多卡因通过MNs微通道被动扩散释放。此外,电流启动主动ITP利多卡因输送,创造协同作用。本文描述了在大鼠疼痛模型中通过精确调节电信号实现基于用户需求的药物释放。智能手机应用程序可以精确控制剂量。它提供三种不同的给药模式:单剂量、脉冲给药和持续释放,确保快速起效和持久的疼痛缓解。这种多功能性使该系统适用于各种疼痛条件。IFMP代表了一个有前途的系统,病人控制局部镇痛治疗,使积极和长期的局部自我控制疼痛管理在安全和规范的方式。离子孔驱动的纤维微针贴片将纤维溶解微针与离子孔导入相结合,通过扩散和电激活控制利多卡因释放,增强效果。电信号的精确调制允许在大鼠疼痛模型中基于用户需求的药物释放。智能应用程序支持单剂量,脉冲或持续释放模式的精确剂量,确保有效和长期的疼痛管理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
18.70
自引率
11.20%
发文量
109
期刊介绍: Advanced Fiber Materials is a hybrid, peer-reviewed, international and interdisciplinary research journal which aims to publish the most important papers in fibers and fiber-related devices as well as their applications.Indexed by SCIE, EI, Scopus et al. Publishing on fiber or fiber-related materials, technology, engineering and application.
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阿拉丁
Carboxymethyl cellulose
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rhodamine 6G (R6G)
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