Topical sterosomes-based nanocarrier of miconazole for the management of cutaneous candidiasis

M Maha Alsunbul R Randa Mohammed Zaki G Ghaida N. Alnuwaybit F Fatimah A. Aljunayh M Mohd Nazam Ansari N Najeeb Ur Rehman A Abubaker M. Hamad F Fatma I. Abo El-Ela E Ehssan Moglad M Mayada Said

Abstract

Background Miconazole (MN) is widely used to treat superficial fungal infections; however, limited skin penetration and short residence time restrict its therapeutic efficacy. This study aimed to develop and statistically optimize MN-loaded sterosomes (STEs) to enhance topical antifungal activity. Methods A central composite rotatable design (CCRD) was applied using Design-Expert® software to study the effects of cholesterol amount (mg) and sonication time (min) on vesicle size (VS), zeta potential (ZP), and entrapment efficiency (EE%). Vesicle morphology was characterized by transmission electron microscopy (TEM), and drug entrapment was confirmed using X-ray diffraction (XRD). The optimized formulation was incorporated into a hydroxypropyl methylcellulose (HPMC) gel and evaluated for in vitro release and in-vivo antifungal efficacy in a Wistar albino rats cutaneous candidiasis model (n = 6) following topical administration of optimized MN-loaded sterosome gel 1% w/w for ten days. Results The optimized formulation showed a desirability of 0.63 and consisted of 140.86 mg cholesterol and 8.99 min sonication time. It demonstrated vesicle size: 498.54 ± 6.12 nm, zeta potential: 40.82 ± 1.24 mV, entrapment efficiency: 77.41 ± 1.43%. MN release from STEs was significantly higher than the drug suspension. TEM images showed spherical non-aggregated vesicles. XRD patterns indicated successful MN entrapment. In-vivo , MN-STE gel produced significantly greater antifungal activity than commercial Daktarin® cream at a lower dose, which was consistent with histopathological improvement. Conclusion MN-loaded sterosomes enhanced drug entrapment, release, and antifungal efficacy while enabling dose reduction, representing a promising carrier for topical miconazole delivery.

Article Details

Journal PLoS ONE
Volume / Issue Vol. 21, Issue 7
Published July 10, 2026
Pages e0353060
ISSN 1932-6203
Publisher Public Library of Science

Journal Info

PLoS ONE

Public Library of Science

ISSN: 1932-6203 Open Access Health Sciences

Authors (10)

M

Maha Alsunbul

R

Randa Mohammed Zaki

G

Ghaida N. Alnuwaybit

F

Fatimah A. Aljunayh

M

Mohd Nazam Ansari

N

Najeeb Ur Rehman

A

Abubaker M. Hamad

F

Fatma I. Abo El-Ela

E

Ehssan Moglad

M

Mayada Said