Bhat Medha, Tharmatt Abhay, Bhargava Samarth, Kumeria Tushar, Mishra Amit, Mittal Anupama, Chitkara Deepak
Department of Pharmacy, Birla Institute of Technology and Science Pilani, Pilani Campus, Vidya Vihar, Pilani, 333 031, Rajasthan, India.
School of Materials Science and Engineering, University of New South Wales-Sydney, New South Wales, Australia.
J Transl Med. 2025 May 7;23(1):513. doi: 10.1186/s12967-025-06219-6.
The delivery of macromolecules through dermal and transdermal routes presents both significant challenges and transformative opportunities in therapeutic applications. This review highlights the most recent advancements and innovative strategies aimed at overcoming the barriers associated with macromolecular delivery. Cutting-edge approaches such as the use of adjuvants (e.g., hyaluronic acid-based and chemical penetration enhancers), bioactive peptides with diverse functionalities, and mechanical force techniques-including iontophoresis, microneedles, and electroporation-are thoroughly explored. While various strategies have been implemented to enhance skin delivery, they often present significant challenges, particularly for macromolecules. Addressing these challenges requires integrating novel technologies and understanding the interplay between biological barriers and delivery mechanisms. Furthermore, the role of nanotechnology, through systems like nanoemulsions, polymeric nanoparticles, and transferosomes, is examined for its ability to protect macromolecules and regulate their release. Notably, this review provides unique perspectives on the interplay between these strategies and their potential to revolutionise future therapeutics. By highlighting key trends and advancements in macromolecule delivery, this review underscores the importance of innovative approaches in overcoming existing barriers and enabling efficient drug administration.
通过皮肤和透皮途径递送大分子在治疗应用中既带来了重大挑战,也带来了变革性机遇。本综述重点介绍了旨在克服与大分子递送相关障碍的最新进展和创新策略。对前沿方法进行了深入探讨,如使用佐剂(如基于透明质酸的佐剂和化学渗透增强剂)、具有多种功能的生物活性肽以及机械力技术,包括离子电渗疗法、微针和电穿孔。虽然已经实施了各种策略来增强皮肤递送,但它们往往带来重大挑战,尤其是对于大分子而言。应对这些挑战需要整合新技术并理解生物屏障与递送机制之间的相互作用。此外,还研究了纳米技术通过纳米乳液、聚合物纳米颗粒和传递体等系统保护大分子并调节其释放的能力。值得注意的是,本综述提供了关于这些策略之间相互作用及其革新未来治疗方法潜力的独特观点。通过强调大分子递送的关键趋势和进展,本综述强调了创新方法在克服现有障碍和实现高效药物给药方面的重要性。