College of Clinical and Basic Medicine, Shandong First Medical University & Shandong Academy of Medical Sciences, Jinan, China.
Shandong Center for Disease Control and Prevention, Jinan, China.
J Pharm Pharm Sci. 2024 Mar 20;27:12434. doi: 10.3389/jpps.2024.12434. eCollection 2024.
Microneedle (MN)-assisted drug delivery technology has gained increasing attention over the past two decades. Its advantages of self-management and being minimally invasive could allow this technology to be an alternative to hypodermic needles. MNs can penetrate the stratum corneum and deliver active ingredients to the body through the dermal tissue in a controlled and sustained release. Long-acting polymeric MNs can reduce administration frequency to improve patient compliance and therapeutic outcomes, especially in the management of chronic diseases. In addition, long-acting MNs could avoid gastrointestinal reactions and reduce side effects, which has potential value for clinical application. In this paper, advances in design strategies and applications of long-acting polymeric MNs are reviewed. We also discuss the challenges in scale manufacture and regulations of polymeric MN systems. These two aspects will accelerate the effective clinical translation of MN products.
微针(MN)辅助药物递送技术在过去二十年中受到了越来越多的关注。它具有自我管理和微创的优势,可以替代皮下注射针。MN 可以穿透角质层,并通过真皮组织以受控和持续释放的方式将有效成分递送到体内。长效聚合物 MN 可以减少给药频率,从而提高患者的依从性和治疗效果,尤其在慢性疾病的管理方面。此外,长效 MN 可以避免胃肠道反应并减少副作用,这对于临床应用具有潜在价值。本文综述了长效聚合物 MN 的设计策略和应用进展。我们还讨论了聚合物 MN 系统的规模化制造和法规方面的挑战。这两个方面将加速 MN 产品的有效临床转化。
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