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Updated: Sep 2, 2026

Development, Characterization, and Evaluation of CAGE-based Ionic Liquid Systems for Transdermal Delivery
Published on: September 26, 2025
A Cationic Ionic Liquid-Liposome Nanoplatform Enables Transdermal asiRNA Delivery for Androgen-Dependent Dermatoses
Mingqing Zhou1,2,3, Yixuan Tang2, Haowei Chen4
1Department of Chemistry, College of Sciences, Northeastern University, Shenyang110819, China.
Abstract:
A safe and effective topical therapy targeting the androgen receptor (AR), responsible for prevalent skin disorders, such as androgenetic alopecia (AGA), acne, and seborrhea, remains lacking. Macromolecular nucleic acid drugs such as siRNA have potential because of their high specificity. However, their clinical application has been hindered by the physical barrier of the stratum corneum. This study reports a hybrid nanoplatform based on cationic ionic liquid liposomes (ITD) that achieves efficient transdermal delivery of an asymmetric siRNA (asiRNA) targeting AR. This platform (particle size ∼200 nm, zeta potential +15 mV) leverages the penetration-enhancing properties of ionic liquids to improve asiRNA transdermal efficiency 8-fold and demonstrates an in vitro AR silencing efficacy comparable to that of the commercial gold-standard reagent. By silencing AR (a central androgen-responsive regulatory node shared by pilosebaceous disorders) in murine models, the formulation attenuates androgen-induced hair loss, alleviates acne-like inflammatory lesions, and reduces sebum-associated lipid accumulation. Remarkably, this preclinical pleiotropy is translated into preliminary open-label human efficacy evaluation: in a volunteer study, the formulation significantly reduced hair loss counts (-48.59%), inflammatory acne lesions (-67.74%), and skin sebum levels (-24.92%). In summary, the ITD platform represents a novel, noninvasive therapeutic strategy that addresses multiple recalcitrant androgen-dependent dermatoses, demonstrating clinical translational potential.
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