Active microneedle patch equipped with spontaneous bubble generation for enhanced rheumatoid arthritis treatment.

IF 12.4 1区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
Theranostics Pub Date : 2025-02-24 eCollection Date: 2025-01-01 DOI:10.7150/thno.103080
Ting Liu, Jintao Fu, Ziyang Zheng, Minglong Chen, Wenhao Wang, Chuanbin Wu, Guilan Quan, Xin Pan
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引用次数: 0

Abstract

Rationale: The utilization of dissolving microneedles (MNs) facilitates the painless delivery of pharmaceuticals via the transdermal route. However, conventional MNs rely on passive diffusion through the gradual dissolving of the matrix, which can impede the therapeutic efficacy of the delivered drugs. Methods: In this study, we present the development of a novel degradable active MNs platform. This platform employs sodium bicarbonate and citric acid loaded in a dissolving MNs patch as a built-in motor for deeper and faster intradermal payload delivery. The sodium bicarbonate microparticles and citric acid undergo a chemical reaction when in contact with tissue fluid, resulting in the rapid formation of explosive carbon dioxide bubbles. This provides the necessary force to break through dermal barriers and enhance payload delivery. Results: The results demonstrated that the active MNs possessed excellent mechanical properties, rapid detachment characteristics, and superior drug release kinetics. Furthermore, the drug permeation behavior of active MNs exhibited enhanced permeation and distribution in skin-mimicking gel and porcine skin when compared to conventional passive MNs. In vivo experiments employing a rat model of rheumatoid arthritis showed that active MNs achieved superior therapeutic efficacy compared to passive MNs. Conclusions: This universal and effective autonomous dynamic microneedle delivery technology is straightforward to prepare and ultilize, and has the potential to improve the therapeutic efficacy of drugs, offering significant prospects for a diverse range of therapeutic applications.

主动微针贴片配备自发气泡产生增强类风湿关节炎的治疗。
原理:溶解微针(MNs)的使用促进了药物通过透皮途径的无痛递送。然而,传统的MNs依赖于通过基质逐渐溶解的被动扩散,这可能会阻碍所递送药物的治疗效果。方法:在这项研究中,我们提出了一种新的可降解活性纳米颗粒平台的开发。该平台采用碳酸氢钠和柠檬酸作为内置马达,装载在可溶解的MNs贴片中,以实现更深、更快的皮内有效载荷递送。碳酸氢钠微粒和柠檬酸与组织液接触时会发生化学反应,导致爆炸性二氧化碳气泡的迅速形成。这提供了必要的力量来突破皮肤屏障,增强有效载荷的传递。结果:活性MNs具有优异的力学性能、快速剥离特性和良好的药物释放动力学。此外,与传统的被动MNs相比,活性MNs在模拟皮肤凝胶和猪皮肤中的渗透和分布表现出增强的药物渗透行为。采用大鼠类风湿性关节炎模型的体内实验表明,与被动MNs相比,主动MNs具有更好的治疗效果。结论:这种通用有效的自主动态微针给药技术制备和利用简单,具有提高药物疗效的潜力,具有广泛的治疗应用前景。
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
Theranostics
Theranostics MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
25.40
自引率
1.60%
发文量
433
审稿时长
1 months
期刊介绍: Theranostics serves as a pivotal platform for the exchange of clinical and scientific insights within the diagnostic and therapeutic molecular and nanomedicine community, along with allied professions engaged in integrating molecular imaging and therapy. As a multidisciplinary journal, Theranostics showcases innovative research articles spanning fields such as in vitro diagnostics and prognostics, in vivo molecular imaging, molecular therapeutics, image-guided therapy, biosensor technology, nanobiosensors, bioelectronics, system biology, translational medicine, point-of-care applications, and personalized medicine. Encouraging a broad spectrum of biomedical research with potential theranostic applications, the journal rigorously peer-reviews primary research, alongside publishing reviews, news, and commentary that aim to bridge the gap between the laboratory, clinic, and biotechnology industries.
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