Department of Pharmaceutics, Manipal College of Pharmaceutical Sciences, Manipal Academy of Higher Education, Manipal, Karnataka, India.
AAPS PharmSciTech. 2024 Jun 4;25(5):126. doi: 10.1208/s12249-024-02847-1.
In the dynamic landscape of pharmaceutical advancements, the strategic application of active pharmaceutical ingredients to the skin through topical and transdermal routes has emerged as a compelling avenue for therapeutic interventions. This non-invasive approach has garnered considerable attention in recent decades, with numerous attempts yielding approaches and demonstrating substantial clinical potential. However, the formidable barrier function of the skin, mainly the confinement of drugs on the upper layers of the stratum corneum, poses a substantial hurdle, impeding successful drug delivery via this route. Ultradeformable vesicles/carriers (UDVs), positioned within the expansive realm of nanomedicine, have emerged as a promising tool for developing advanced dermal and transdermal therapies. The current review focuses on improving the passive dermal and transdermal targeting capacity by integrating functionalization groups by strategic surface modification of drug-loaded UDV nanocarriers. The present review discusses the details of case studies of different surface-modified UDVs with their bonding strategies and covers the recent patents and clinical trials. The design of surface modifications holds promise for overcoming existing challenges in drug delivery by marking a significant leap forward in the field of pharmaceutical sciences.
在药物研发的动态领域中,通过局部和经皮途径将活性药物成分应用于皮肤已成为治疗干预的一种极具吸引力的方法。这种非侵入性方法在最近几十年引起了相当大的关注,许多尝试都产生了方法,并展示了巨大的临床潜力。然而,皮肤强大的屏障功能,主要是药物在角质层上层的限制,构成了一个巨大的障碍,阻碍了通过该途径的成功药物传递。超可变形囊泡/载体(UDV),位于纳米医学的广阔领域内,已成为开发先进的皮肤和经皮治疗的有前途的工具。本综述重点讨论了通过通过药物负载的 UDV 纳米载体的战略表面修饰来整合功能化基团,从而提高被动经皮和经皮靶向能力。本综述讨论了不同表面修饰的 UDV 的案例研究细节及其键合策略,并涵盖了最近的专利和临床试验。表面修饰的设计有望通过在药物输送领域取得重大突破,克服药物输送中现有的挑战。