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纳米材料增强微针:糖尿病和肥胖症的新兴疗法

Nanomaterial-Enhanced Microneedles: Emerging Therapies for Diabetes and Obesity.

作者信息

Abbasi Mehrnaz, Boka Divine Afunu, DeLoit Hannah

机构信息

Department of Nutritional Sciences, College of Human Sciences, Auburn University, Auburn, AL 36849, USA.

Department of Pre-Health Professional Curricula, College of Sciences and Mathematics, Auburn University, Auburn, AL 36849, USA.

出版信息

Pharmaceutics. 2024 Oct 21;16(10):1344. doi: 10.3390/pharmaceutics16101344.

Abstract

Drug delivery systems (DDS) have improved therapeutic agent administration by enhancing efficacy and patient compliance while minimizing side effects. They enable targeted delivery, controlled release, and improved bioavailability. Transdermal drug delivery systems (TDDS) offer non-invasive medication administration and have evolved to include methods such as chemical enhancers, iontophoresis, microneedles (MN), and nanocarriers. MN technology provides innovative solutions for chronic metabolic diseases like diabetes and obesity using various MN types. For diabetes management, MNs enable continuous glucose monitoring, diabetic wound healing, and painless insulin delivery. For obesity treatment, MNs provide sustained transdermal delivery of anti-obesity drugs or nanoparticles (NPs). Hybrid systems integrating wearable sensors and smart materials enhance treatment effectiveness and patient management. Nanotechnology has advanced drug delivery by integrating nano-scaled materials like liposomes and polymeric NPs with MNs. In diabetes management, glucose-responsive NPs facilitate smart insulin delivery. At the same time, lipid nanocarriers in dissolving MNs enable extended release for obesity treatment, enhancing drug stability and absorption for improved metabolic disorder therapies. DDS for obesity and diabetes are advancing toward personalized treatments using smart MN enhanced with nanomaterials. These innovative approaches can enhance patient outcomes through precise drug administration and real-time monitoring. However, widespread implementation faces challenges in ensuring biocompatibility, improving technologies, scaling production, and obtaining regulatory approval. This review will present recent advances in developing and applying nanomaterial-enhanced MNs for diabetes and obesity management while also discussing the challenges, limitations, and future perspectives of these innovative DDS.

摘要

药物递送系统(DDS)通过提高疗效、增强患者依从性并最大限度地减少副作用,改善了治疗剂的给药方式。它们能够实现靶向递送、控释和提高生物利用度。透皮药物递送系统(TDDS)提供了非侵入性给药方式,并且已经发展到包括化学增强剂、离子电渗疗法、微针(MN)和纳米载体等方法。MN技术使用各种类型的微针为糖尿病和肥胖症等慢性代谢疾病提供了创新解决方案。对于糖尿病管理,微针能够实现连续血糖监测、糖尿病伤口愈合和无痛胰岛素递送。对于肥胖症治疗,微针能够实现抗肥胖药物或纳米颗粒(NP)的持续透皮递送。集成可穿戴传感器和智能材料的混合系统提高了治疗效果和患者管理水平。纳米技术通过将脂质体和聚合物纳米颗粒等纳米级材料与微针相结合,推动了药物递送的发展。在糖尿病管理中,葡萄糖响应性纳米颗粒有助于实现智能胰岛素递送。与此同时,溶解微针中的脂质纳米载体能够实现肥胖症治疗的长效释放,提高药物稳定性和吸收,从而改善代谢紊乱疗法。用于肥胖症和糖尿病的DDS正在朝着使用纳米材料增强的智能微针进行个性化治疗的方向发展。这些创新方法可以通过精确给药和实时监测提高患者的治疗效果。然而,广泛应用面临着确保生物相容性、改进技术、扩大生产规模和获得监管批准等挑战。本综述将介绍在开发和应用纳米材料增强的微针用于糖尿病和肥胖症管理方面的最新进展,同时也将讨论这些创新DDS的挑战、局限性和未来展望。

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