Original ArticleInternational Journal of Pharmaceutical InvestigationVol. 13 | Issue 3 | 2023 | pp. 485–495Open access
Formulation, Development and Characterization of Liposome-based Gel of Eberconazole Nitrate for Topical Delivery
- 1*,
- 1
- 1 Department of Pharmaceutics, Nootan Pharmacy College, Sankalchand Patel University, Visnagar, Gujarat, INDIA.
Published in International Journal of Pharmaceutical Investigation
Correspondence: Nidhi Shah
Department of Pharmaceutics, Nootan Pharmacy College, Sankalchand Patel University, Visnagar, Gujarat, INDIA.
Email: npshah.fp@spu.ac.in
Copyright: © 2023 Manuscript Technomedia. This is an open access article.
- Published:
- Jul 5, 2023
- Received:
- Apr 18, 2023
- Accepted:
- May 25, 2023
How to cite
Shah, N., & Patel, K. (2023). Formulation, Development and Characterization of Liposome-based Gel of Eberconazole Nitrate for Topical Delivery. International Journal of Pharmaceutical Investigation, 13(3), 485–495. https://doi.org/10.5530/ijpi.13.3.060
Abstract
Objectives: The present investigation was aimed to develop Liposome-Based Gel (LBG) for Eberconazole nitrate. The purpose was to administer the drug at a sustained rate through skin to improve bioavailability for longer period of time. Materials and Methods: Thin film hydration technique was used for the preparation of EBZ loaded liposomes. Preliminary trials were conducted for the selection of type of lipid and its ratio with cholesterol along with the lipid:drug ratio. EBZ loaded liposomes was optimized by using central composite design with amount of phospholipid, cholesterol and lipid:drug ratio as independent variables along with vesicle size and %Entrapment Efficiency (%EE) as dependent variables. Each formulation was evaluated for vesicle size, polydispersity index, % entrapment efficiency, pH and zeta potential. Further, with an aim to provide enhanced patient compliance the optimized batch of EBZ loaded liposomes was transformed into Liposomal Based Gel (LBG). Results and Conclusion: Results of all design batches showed nano size of the liposomal vesicles with good dispersion. The optimized batch of EBZ loaded liposome showed a vesicle size of 183.4 nm and 92.4% entrapment efficiency. TEM images of the optimized liposomal formulation showed well separated vesicles with narrow size distribution. The results of ex vivo skin permeation study of the optimized batch of EBZ loaded LBG revealed a remarkable improvement in the dissolution as compared to its conventional formulation. All these concluded LBG as one of the suitable approaches for developing topical formulation of poorly water-soluble drugs like eberconazole nitrate.
Keywords
Subject
Article metadata
| Title | Formulation, Development and Characterization of Liposome-based Gel of Eberconazole Nitrate for Topical Delivery |
|---|---|
| Authors | Nidhi Shah; Khushbu Patel |
| Affiliations | Department of Pharmaceutics, Nootan Pharmacy College, Sankalchand Patel University, Visnagar, Gujarat, INDIA. |
| Corresponding author | npshah.fp@spu.ac.in |
| Journal | International Journal of Pharmaceutical Investigation |
| Volume / Issue | Vol. 13, Issue 3 (2023) |
Also in this issue
- Past Work Done on the Matrix Tablets: A Quick Reference for the Research Beginner in Sustained-release Dosage Formspp. 367–372
- Overview on Evolving Variants of Novel Coronavirus and Control Measures in Indiapp. 373–380
- An Overview of the Various Appropriate Types of Cell Lines for the Production of Monoclonal Antibodiespp. 381–392
- Ashwagandha: A Flagship Herb of Ayurveda from Past to Present Nano Erapp. 393–401
- Biosensors - An Insight into the Electrochemical and Optical Biosensorspp. 402–412
Readers Also Viewed
Development and Validation of UV/visible Spectrophotometric Method for Estimation of Piroxicam from Bulk and Formulation
Sandip Mohan Honmane, Kunal Rajaram Yadav, Yuvraj Dilip Dange
Apr 23, 2025
Effects of Artificial Intelligence on Academic Performance of Library and Information Science University Students: A Meta-Analysis (2023-2025)
Kayode Sunday John Dada
Aug 6, 2026
Bridging Innovation and Impact: A Multidisciplinary Approach to Contemporary Research Challenges
Mueen Ahmed KK
Aug 11, 2026