Advancements in Transdermal Drug DeliveryLipid Membrane Structure and BehaviorRNA Interference and Gene Delivery

Arprita Malhan, Mridul Guleria, Bijal Prajapati, Jitendra Patel, Krishna Sompura, Sudarshan Singh, S. Jain, Bhupendra G. Prajapati

2026.2.8JOURNAL OF DISPERSION SCIENCE AND TECHNOLOGY

DOI: 10.1080/01932691.2026.2625036

Abstract

Ultra-deformable (UD) lipid-based nanocarriers have emerged as advanced drug delivery systems capable of overcoming critical biological barriers and improving the bioavailability of therapeutics. This review critically examines ethosomes, transethosomes, and transfersomes, with particular emphasis on their deformability-driven transport across the stratum corneum, gastrointestinal epithelium, and blood–brain barrier. The review particularly focuses on plant-derived bioactive compounds, whose therapeutic translation is often hampered by poor aqueous solubility, rapid biotransformation, and low systemic exposure. This review highlights how optimized combinations of phospholipids, edge activators, and stabilizers enhance vesicle elasticity, drug encapsulation, protection from enzymatic degradation, and controlled release. Beyond descriptive advances, this article addresses existing gaps related to stability, lipid oxidation, premature drug leakage, regulatory challenges, and the lack of scalable manufacturing strategies. Recent developments in stimuli-responsive systems, polymer–lipid conjugates, and hybrid nanocarriers are discussed as promising solutions to these limitations. By integrating mechanistic insights with formulation and translational perspectives, this review provides a consolidated framework to guide the rational design and clinical advancement of UD nanocarriers, positioning them as viable platforms for noninvasive, patient-centric, and personalized drug delivery.

Citation format

MALHAN, Arprita, et al. Ultra-deformable lipid-based nanocarrier: A new frontier in dermatological drug delivery with improved biomimetic attributes. JOURNAL OF DISPERSION SCIENCE AND TECHNOLOGY, 2026: 1–31.