Vergilio Mariane Massufero, Birchall James Caradoc, Lima Lonetá Lauro, Rezende Rodrigo Alvarenga, Leonardi Gislaine Ricci
Graduate Program in Internal Medicine, School of Medical Sciences, University of Campinas (UNICAMP), Campinas, SP, Brazil.
School of Pharmacy and Pharmaceutical Sciences, Cardiff University, Cardiff, CF10 3NB, UK.
Curr Med Chem. 2024;31(23):3473-3487. doi: 10.2174/0929867330666230525122913.
Microneedle (MN) devices comprise of micron-sized structures that circumvent biological barriers in a minimally invasive manner. MN research continues to grow and evolve; the technology was recently identified as one of the top ten overall emerging technologies of 2020. There is a growing interest in using such devices in cosmetology and dermatological conditions where the MNs mechanically disrupt the outer skin barrier layer, creating transient pathways that allow the passage of materials to underlying skin layers. This review aims to appraise the application of microneedle technologies in skin science, provide information on potential clinical benefits, as well as indicate possible dermatological conditions that can benefit from this technology, including autoimmunemediated inflammatory skin diseases, skin aging, hyperpigmentation, and skin tumors. A literature review was carried out to select studies that evaluated the use of microneedles to enhance drug delivery for dermatologic purposes. MN patches create temporary pathways that allow the passage of therapeutic material to deeper layers of the skin. Given their demonstrable promise in therapeutic applications it will be essential for healthcare professionals to engage with these new delivery systems as they transition to the clinic.
微针(MN)装置由微米级结构组成,这些结构以微创方式突破生物屏障。微针研究持续发展;该技术最近被认定为2020年十大总体新兴技术之一。在美容学和皮肤病学领域,人们越来越有兴趣使用此类装置,在这些领域中,微针会机械性破坏皮肤外层屏障,形成临时通道,使物质能够进入皮肤下层。本综述旨在评估微针技术在皮肤科学中的应用,提供潜在临床益处的信息,并指出可能受益于该技术的皮肤病,包括自身免疫介导的炎症性皮肤病、皮肤老化、色素沉着和皮肤肿瘤。进行了文献综述,以挑选评估微针用于增强皮肤科药物递送的研究。微针贴片可形成临时通道,使治疗物质进入皮肤深层。鉴于其在治疗应用中已展现出的前景,医疗保健专业人员在这些新递送系统向临床过渡时参与其中至关重要。