Preparation and Characterization of Azelaic Acid‐Loaded Nanofiber Scaffold as Anti‐Acne and Depigmenting Care, Fabricated by Electrospinning Method

ABSTRACT Objective Acne vulgaris is a common dermatological concern, and conventional topical azelaic acid formulations may have limitations in skin residence time and tolerability. Polymeric nanofiber scaffolds offer a promising platform for topical drug delivery. This study aimed to develop and characterize chitosan/polyvinyl alcohol (CS/PVA) electrospun nanofibers loaded with azelaic acid for potential use in acne management. Method Azelaic acid‐loaded CS/PVA nanofibers were prepared by electrospinning. Morphology was evaluated by scanning electron microscopy, in vitro drug release was assessed by an immersion method, antibacterial activity against Cutibacterium acnes was determined by disk diffusion, and physicochemical stability was examined under accelerated conditions. Results Nanofibers containing 9% PVA, 2% chitosan, and 50 or 70% azelaic acid showed uniform, bead‐free morphology and suitable physical and mechanical properties under optimized electrospinning conditions. The azelaic acid‐loaded scaffolds exhibited antimicrobial activity against C. acnes , acceptable stability, and a sustained release profile, with the 70% formulation releasing over approximately 89% of the drug within 24 h. Conclusion Azelaic acid‐loaded CS/PVA nanofiber scaffolds demonstrated favorable in vitro physicochemical and antibacterial properties as topical delivery systems. The 70% azelaic acid formulation was selected as the optimized scaffold for further preclinical investigation, while in vivo and clinical studies are needed to evaluate its therapeutic efficacy and safety.

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Journal
Journal of Cosmetic Dermatology
Published
2026-09-21
DOI
https://doi.org/10.1111/jocd.71202
Primary Topic
Electrospun Nanofibers in Biomedical Applications
Type
article
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article

Preparation and Characterization of Azelaic Acid‐Loaded Nanofiber Scaffold as Anti‐Acne and Depigmenting Care, Fabricated by Electrospinning Method

Nooshafarin Amani, Nasrin Samadi, Hamid Akbari Javar, Farid Abedin Dorkoosh et al.
Journal of Cosmetic Dermatology
Electrospun Nanofibers in Biomedical Applications
article

Preparation and Characterization of Azelaic Acid‐Loaded Nanofiber Scaffold as Anti‐Acne and Depigmenting Care, Fabricated by Electrospinning Method

Nooshafarin Amani, Nasrin Samadi, Hamid Akbari Javar, Farid Abedin Dorkoosh, Fatemeh Majdi, Niki Yadegari
article en

Abstract

ABSTRACT Objective Acne vulgaris is a common dermatological concern, and conventional topical azelaic acid formulations may have limitations in skin residence time and tolerability. Polymeric nanofiber scaffolds offer a promising platform for topical drug delivery. This study aimed to develop and characterize chitosan/polyvinyl alcohol (CS/PVA) electrospun nanofibers loaded with azelaic acid for potential use in acne management. Method Azelaic acid‐loaded CS/PVA nanofibers were prepared by electrospinning. Morphology was evaluated by scanning electron microscopy, in vitro drug release was assessed by an immersion method, antibacterial activity against Cutibacterium acnes was determined by disk diffusion, and physicochemical stability was examined under accelerated conditions. Results Nanofibers containing 9% PVA, 2% chitosan, and 50 or 70% azelaic acid showed uniform, bead‐free morphology and suitable physical and mechanical properties under optimized electrospinning conditions. The azelaic acid‐loaded scaffolds exhibited antimicrobial activity against C. acnes , acceptable stability, and a sustained release profile, with the 70% formulation releasing over approximately 89% of the drug within 24 h. Conclusion Azelaic acid‐loaded CS/PVA nanofiber scaffolds demonstrated favorable in vitro physicochemical and antibacterial properties as topical delivery systems. The 70% azelaic acid formulation was selected as the optimized scaffold for further preclinical investigation, while in vivo and clinical studies are needed to evaluate its therapeutic efficacy and safety.

Journal of Cosmetic DermatologyVol. 25(10)
Islamic Azad University Pharmaceutical Sciences Branch (IR), Tehran University of Medical Sciences (IR)
Good health and well-being
Openalex Percentile: Top 22%
Electrospun Nanofibers in Biomedical Applications
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