1Students, School of Pharmacy, Chouksey Engineering College, Bilaspur (CG) India
2Assistant Professor, School of Pharmacy, Chouksey Engineering College, Bilaspur (CG), India
3Associate Professor, School of Pharmacy, Chouksey Engineering College, Bilaspur (CG), India
*Corresponding Author E-mail: anishpharma@gmail.com
Objective: The primary goal is to prepare appropriate transdermal patches of the antidiabetic medication glimepiride using varying ratios of polymers (hydroxyl propyl methyl cellulose K-100) in accordance with patient needs (patient compliance) and for superior drug release compared to alternative formulations. These formulations use ethanol and chloroform (1:1) as a solvent system and 0.2 ml of glycerol as a plasticizer. The in-vitro skin penetration experiments were conducted using a Franz diffusion cell and phosphate buffer pH 7.4. Method: A magnetic stirrer was used to prepare the transdermal patches utilizing the solvent casting process. Results: Beer's law was adhered to. between 2 and 12 μg/ml in phosphate buffer at a pH of 7.4. Linear regression equation of pure drug was established as Y=0.058x + 0.1331 and the R 2 value 0.999. Zero order release kinetics implies that the drug release of formulation GTP7 is better than that of the other formulation. Conclusion: Formulation GTP7presented a statistically insignificant change of the percent drug content and permeation profile after 90 days of studies.
Glimepiride, HPMC K-100, Franz diffusion cell, T2DM