Original ArticleInternational Journal of Pharmaceutical InvestigationVol. 14 | Issue 3 | 2024 | pp. 786–793Open access
Mesalamine-Loaded Microsponges as a Potential Strategy for Colon-Specific Anti-Inflammatory Therapy: Design and Evaluation
- 1,
- 2,
- 1*
- 1 Department of Pharmaceutics, Krupanidhi College of Pharmacy, Bangalore, Karnataka, INDIA.
- 2 Department of Pharmaceutics, NGSM Institute of Pharmaceutical Sciences, Mangalore, (NITTE Deemed University), Karnataka, INDIA.
Published in International Journal of Pharmaceutical Investigation
Correspondence: Preethi Sudheer
Department of Pharmaceutics, Krupanidhi College of Pharmacy, Bangalore, Karnataka, INDIA.
Email: preetisudheer@gmail.com
Copyright: © 2024 Manuscript Technomedia. This is an open access article.
- Published:
- Jun 30, 2024
- Received:
- Jan 9, 2024
- Accepted:
- May 1, 2024
- DOI:
- 10.5530/ijpi.14.3.88
How to cite
Katta, N., Madhava, A., & Sudheer, P. (2024). Mesalamine-Loaded Microsponges as a Potential Strategy for Colon-Specific Anti-Inflammatory Therapy: Design and Evaluation. International Journal of Pharmaceutical Investigation, 14(3), 786–793. https://doi.org/10.5530/ijpi.14.3.88
Abstract
Background
This study aimed to develop an efficient drug delivery system targeting the colon to treat inflammatory conditions using mesalamine. The approach involved formulating microsponges with Eudragit polymers, focusing on assessing the in vitro drug release patterns.
Materials and Methods
The quasi-emulsion solvent diffusion method was employed using various Eudragit polymers (S100, L100, RS100 and RL100). Critical parameters, such as entrapment efficiency, particle size and drug release, were systematically examined. Different kinetic models have been used to understand the mechanism of drug release.
Results and Discussion
The developed microsponges met the desired entrapment efficiency and particle size standards. Drug release from these formulations exhibited a diffusion-based pattern aligned with a zero-order kinetic model. Initial 1-2 hr showed minimal drug release (2-1%), whereas a significant release (92-95%) occurred within 24 hr for formulations F1 and F2. This release behaviour suggests the potential of sustained and pH-dependent drug delivery applications.
Conclusion
This study contributes to the field by successfully designing a colon-targeted drug delivery system for mesalamines. Using Eudragit polymers and incorporating microsponges showed the potential for sustained drug release, emphasizing their applicability for treating inflammatory colon conditions. This study provides a foundation for future drug-delivery systems targeting specific gastrointestinal regions.
Keywords
Subject
Article metadata
| Title | Mesalamine-Loaded Microsponges as a Potential Strategy for Colon-Specific Anti-Inflammatory Therapy: Design and Evaluation |
|---|---|
| Authors | Naveena Katta; Ashwini Madhava; Preethi Sudheer |
| Affiliations | Department of Pharmaceutics, Krupanidhi College of Pharmacy, Bangalore, Karnataka, INDIA.; Department of Pharmaceutics, NGSM Institute of Pharmaceutical Sciences, Mangalore, (NITTE Deemed University), Karnataka, INDIA. |
| Corresponding author | preetisudheer@gmail.com |
| Journal | International Journal of Pharmaceutical Investigation |
| Volume / Issue | Vol. 14, Issue 3 (2024) |
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