用于透皮生物传感和药物递送的离子电渗辅助微针装置的最新进展。
Recent advances in iontophoresis-assisted microneedle devices for transdermal biosensing and drug delivery.
作者信息
Wang Gaobo, Moriyama Natsuho, Tottori Soichiro, Nishizawa Matsuhiko
机构信息
Department of Biomedical Engineering, School of Medical Engineering, Xinxiang Medical University, Xinxiang, 453003, China.
Department of Finemechanics, Graduate School of Engineering, Tohoku University, 6-6-1 Aramaki Aoba, Aoba-ku, Sendai, 980-8579, Japan.
出版信息
Mater Today Bio. 2025 Jan 19;31:101504. doi: 10.1016/j.mtbio.2025.101504. eCollection 2025 Apr.
Integrating advanced manufacturing techniques and nanotechnology with cutting-edge materials has driven significant progress in global healthcare. Microneedles, recognized for their minimally invasive approach to transdermal sensing and drug delivery, achieve enhanced functionality when combined with iontophoresis. Iontophoresis-assisted microneedles have emerged as an innovative solution, enabling real-time biosensing and precise drug delivery within closed-loop systems. These integrated platforms represent a major advancement in personalized medicine, allowing dynamic therapeutic adjustments based on continuous feedback. This review highlights the latest developments in iontophoresis-assisted microneedles for transdermal biosensing, drug delivery, and closed-loop applications. It delves into the mechanisms of iontophoresis, assesses its advantages and limitations, and explores future directions for these transformative technologies.
将先进制造技术和纳米技术与前沿材料相结合,推动了全球医疗保健领域的重大进展。微针以其微创的经皮传感和药物递送方法而闻名,与离子电渗疗法相结合时可实现增强的功能。离子电渗疗法辅助微针已成为一种创新解决方案,能够在闭环系统中实现实时生物传感和精确药物递送。这些集成平台代表了个性化医疗的一项重大进步,可根据持续反馈进行动态治疗调整。本综述重点介绍了用于经皮生物传感、药物递送和闭环应用的离子电渗疗法辅助微针的最新进展。它深入探讨了离子电渗疗法的机制,评估了其优点和局限性,并探索了这些变革性技术的未来发展方向。