Kenchegowda Madhuchandra, Angolkar Mohit, Hani Umme, Al Fatease Adel, Fatima Farhat, Talath Sirajunisa, Dera Ayed A, Paramshetti Sharanya, Gangadharappa Hosahalli Veerabhadrappa, Osmani Riyaz Ali M, Kazi Heena Shijauddin
Department of Pharmaceutics, JSS College of Pharmacy, JSS Academy of Higher Education & Research (JSS AHER), Mysuru, Karnataka, 570015, India.
Department of Pharmaceutics, College of Pharmacy, King Khalid University, Guraiger, Abha, 62529, Saudi Arabia.
Naunyn Schmiedebergs Arch Pharmacol. 2025 Apr 17. doi: 10.1007/s00210-025-04117-8.
Microneedles (MNs) offer a transformative solution for delivering macromolecules, including proteins, RNA, and peptides. These are critical in treating complex diseases but face significant challenges such as immunogenicity, poor stability, high molecular weight, and delivery efficiency. Unlike conventional methods, MNs efficiently bypass biological barriers like the stratum corneum, enabling precise and minimally invasive transdermal drug delivery. This review explores various MN types such as solid, coated, hollow, hydrogel-forming, and dissolving and their therapeutic applications in cancer immunotherapy, diabetes management, and osteoporosis treatment. For instance, dissolving MNs have been employed for transdermal insulin delivery, enhancing patient compliance and therapeutic outcomes. Similarly, hydrogel MNs have shown promise in sustained drug release for immunotherapy applications. By addressing cost and scalability issues, polymeric MNs demonstrate significant potential for clinical translation, paving the way for innovations in macromolecule delivery, diagnostics, and personalised medicine. This review underscores the pivotal role of MNs in redefining drug delivery systems, offering improved efficacy, patient comfort, and accessibility.
微针为递送包括蛋白质、RNA和肽在内的大分子提供了一种变革性解决方案。这些大分子在治疗复杂疾病中至关重要,但面临免疫原性、稳定性差、分子量高和递送效率等重大挑战。与传统方法不同,微针能有效绕过角质层等生物屏障,实现精确且微创的经皮给药。本文综述探讨了各种类型的微针,如实心、包衣、空心、水凝胶形成和可溶解微针,以及它们在癌症免疫治疗、糖尿病管理和骨质疏松症治疗中的治疗应用。例如,可溶解微针已用于经皮胰岛素递送,提高了患者的依从性和治疗效果。同样,水凝胶微针在免疫治疗应用的持续药物释放方面也显示出前景。通过解决成本和可扩展性问题,聚合物微针在临床转化方面具有巨大潜力,为大分子递送、诊断和个性化医学的创新铺平了道路。本文综述强调了微针在重新定义给药系统中的关键作用,提供了更高的疗效、患者舒适度和可及性。