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Published on: February 14, 2018
In Silico Drug Screening Based Development of Novel Formulations for Onychomycosis Management
Mahak Fatima1, Sadia Monawwar1, Sradhanjali Mohapatra1
1Department of Pharmaceutics, School of Pharmaceutical Education and Research, Jamia Hamdard, New Delhi 110062, India.
Abstract:
Onychomycosis is a prominent fungal infection that causes discoloration, thickening, and mutilation leading to the separation of the nail from the nail bed. Treatment modalities for onychomycosis may include oral, topical, or combination therapy with antifungals and at times may require chemical or surgical intervention. The burden of side effects of antifungals is enormous, and therefore using molecular docking-based drug selection in context with the target keratin protein would ensure better disease management. Ciclopirox, Amorolfine HCl, Efinaconazole, Tioconazole, and Tavaborole were submitted for assessment, revealing that Amorolfine HCl is the best fit. Consequently, two formulations (Nail lacquer and nanoemulgel) were developed from Amorolfine HCl to validate the in silico screening outcomes. The formulations were further fortified with over-the-counter ingredients vis-a-vis with vitamin E in nail lacquer and undecylenic acid in nanoemulgel for their prominent roles in improving nail health. Both the formulations were systematically designed, optimized, and characterized. Amorolfine HCl containing nanoemulgel (NEG) was developed using undecylenic acid as an oil phase and thioglycolic acid as a penetration enhancer. The quality parameters evaluated were particle size, the zeta potential for nanoemulsion (NE) (78.04 ± 4.724 nm and -0.7mV, respectively), in vitro cumulative drug release (96.74% for NE and 88.54% for NEG), and transungual permeation (about 73.49% for NEG and 54.81% for NE). Nail lacquer was evaluated for the drying time, non-volatile content, and blush test. In vitro cumulative drug release of the developed nail lacquer and comparator marketed formulations were around 81.5% and 75%, respectively. Similarly, the transungual drug permeation was 6.32 μg/cm2 and 5.89 μg/cm2, respectively, in 24 h. The in silico guided preparation of both formulations containing Amorolfine HCl and over the counter ingredients is amenable for therapeutic use against onychomycosis and will be evaluated in the in vivo model.
Insights
This study identified Amorolfine HCl as an optimal antifungal for onychomycosis using molecular docking. Novel nail lacquer and nanoemulgel formulations were developed, showing promising therapeutic potential for fungal nail infections.
Area of Science:
- Pharmaceutical Sciences
- Computational Chemistry
- Dermatology
Background:
- Onychomycosis is a common fungal nail infection causing nail damage.
- Current antifungal treatments have significant side effects.
- In silico drug selection can improve treatment efficacy and safety.
Purpose of the Study:
- To identify the most suitable antifungal agent for onychomycosis using molecular docking.
- To develop and characterize novel drug delivery systems for the selected antifungal.
- To evaluate the efficacy of these formulations in vitro.
Main Methods:
- Molecular docking simulations were performed to assess the binding affinity of antifungals to keratin.
- Amorolfine HCl was selected and formulated into nail lacquer and nanoemulgel.
- Formulations were characterized for particle size, zeta potential, drug release, and transungual permeation.
- In vitro studies evaluated drug release and permeation through nail samples.
Main Results:
- Amorolfine HCl demonstrated the best fit among tested antifungals via molecular docking.
- Developed nanoemulgel and nail lacquer showed high in vitro drug release (88.54% and 81.5%) and transungual permeation (73.49% and 6.32 μg/cm²).
- Formulations incorporated beneficial over-the-counter ingredients like vitamin E and undecylenic acid.
Conclusions:
- In silico screening effectively identified Amorolfine HCl for onychomycosis treatment.
- Novel Amorolfine HCl formulations (nail lacquer, nanoemulgel) show potential for improved onychomycosis therapy.
- Further in vivo evaluation is warranted to confirm therapeutic benefits.
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