Hydrogel Microneedles Loaded With a Reactive Oxygen Species (ROS)‐Responsive Carbon Monoxide Donor and Finasteride for Synergistic Treatment of Androgenetic Alopecia

ABSTRACT Androgenetic alopecia (AGA) is highly prevalent, yet its treatment is limited by systemic side effects and poor patient compliance. This study aims to develop a topical delivery system for synergistic, effective, safe, and highly compliant AGA treatment. A methacrylated hyaluronic acid (HAMA)‐based hydrogel microneedle patch (C‐F‐HMN) co‐loaded with a carbon monoxide‐releasing molecule (CORM‐401) and finasteride (FIN) was prepared. CORM‐401 and FIN were formulated into CORM‐401@Pluronic F127 (CO@F127) micelles and FIN@hydroxypropyl‐β‐cyclodextrin (HP‐β‐CD) inclusion complexes, respectively. Efficacy, mechanisms, and biocompatibility were evaluated in a testosterone‐induced AGA mouse model. C‐F‐HMN achieved efficient local drug delivery, minimized systemic exposure, and sustained efficacy. FIN reduced dihydrotestosterone (DHT) production by inhibiting 5α‐reductase; CORM‐401 consumed scalp reactive oxygen species (ROS) and released carbon monoxide (CO) to improve the hair follicle microenvironment. Compared with monotherapy and minoxidil, C‐F‐HMN showed superior hair regrowth, activated the Wnt/β‐catenin pathway, inhibited the transforming growth factor‐β (TGF‐β)/bone morphogenetic protein (BMP) pathway, and exhibited good biocompatibility without systemic toxicity. This study establishes a novel, effective, safe, and highly patient‐compliant topical combination therapy for AGA, overcoming the limitations of traditional treatments and providing a new strategy for clinical AGA management.

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Publication Details

Journal
Advanced Materials Technologies
Published
2026-09-04
DOI
https://doi.org/10.1002/admt.71301
Primary Topic
Hair Growth and Disorders
Type
article
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article

Hydrogel Microneedles Loaded With a Reactive Oxygen Species (ROS)‐Responsive Carbon Monoxide Donor and Finasteride for Synergistic Treatment of Androgenetic Alopecia

Hui Shi, Xiaoyang Hou, Zhi Wang, Chunsheng Yang et al.
Advanced Materials Technologies
Hair Growth and Disorders
article

Hydrogel Microneedles Loaded With a Reactive Oxygen Species (ROS)‐Responsive Carbon Monoxide Donor and Finasteride for Synergistic Treatment of Androgenetic Alopecia

Hui Shi, Xiaoyang Hou, Zhi Wang, Chunsheng Yang, Guan Jiang, Jingxi Zhang, Xinbo Zhang, Dacai Chen
article en

Abstract

ABSTRACT Androgenetic alopecia (AGA) is highly prevalent, yet its treatment is limited by systemic side effects and poor patient compliance. This study aims to develop a topical delivery system for synergistic, effective, safe, and highly compliant AGA treatment. A methacrylated hyaluronic acid (HAMA)‐based hydrogel microneedle patch (C‐F‐HMN) co‐loaded with a carbon monoxide‐releasing molecule (CORM‐401) and finasteride (FIN) was prepared. CORM‐401 and FIN were formulated into CORM‐401@Pluronic F127 (CO@F127) micelles and FIN@hydroxypropyl‐β‐cyclodextrin (HP‐β‐CD) inclusion complexes, respectively. Efficacy, mechanisms, and biocompatibility were evaluated in a testosterone‐induced AGA mouse model. C‐F‐HMN achieved efficient local drug delivery, minimized systemic exposure, and sustained efficacy. FIN reduced dihydrotestosterone (DHT) production by inhibiting 5α‐reductase; CORM‐401 consumed scalp reactive oxygen species (ROS) and released carbon monoxide (CO) to improve the hair follicle microenvironment. Compared with monotherapy and minoxidil, C‐F‐HMN showed superior hair regrowth, activated the Wnt/β‐catenin pathway, inhibited the transforming growth factor‐β (TGF‐β)/bone morphogenetic protein (BMP) pathway, and exhibited good biocompatibility without systemic toxicity. This study establishes a novel, effective, safe, and highly patient‐compliant topical combination therapy for AGA, overcoming the limitations of traditional treatments and providing a new strategy for clinical AGA management.

Advanced Materials Technologies
Xuzhou Medical College (CN), Nantong University (CN), Yancheng First People's Hospital (CN), Second People’s Hospital of Huai’an (CN), Nanjing Medical University (CN)
Openalex Percentile: Top 8%
Hair Growth and Disorders
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