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Response Surface Methodology (RSM) approach to formulate and optimize the bilayer combination tablet of Tamsulosin and Finasteride.
Akhtar, Muneeba; Zaman, Muhammad; Siddiqi, Ahsan Zamir; Ali, Hasan; Khan, Rahima; Alvi, Muhammad Nadeem; Butt, Muhammad Hammad; El-Demerdash, Fatma M; Binjawhar, Dalal Nasser; Sayed, Amany A; Altyar, Ahmed E; Abdel-Daim, Mohamed M.
Affiliation
  • Akhtar M; Faculty of Pharmaceutical Sciences, University of Central Punjab, Lahore, Pakistan.
  • Zaman M; Faculty of Pharmaceutical Sciences, University of Central Punjab, Lahore, Pakistan.
  • Siddiqi AZ; Highnoon Laboratories Limited, Lahore, Pakistan.
  • Ali H; Highnoon Laboratories Limited, Lahore, Pakistan.
  • Khan R; Faculty of Pharmaceutical Sciences, University of Central Punjab, Lahore, Pakistan.
  • Alvi MN; Faculty of Pharmaceutical Sciences, University of Central Punjab, Lahore, Pakistan.
  • Butt MH; Department of Medicinal Chemistry, Faculty of Pharmacy, Uppsala University, 75123 Uppsala, Sweden.
  • El-Demerdash FM; Department of Environmental Studies, Institute of Graduate Studies and Research, Alexandria University, Alexandria, Egypt.
  • Binjawhar DN; Department of Chemistry, College of Science, Princess Nourah bint Abdulrahman University, P.O.Box 84428, Riyadh 11671, Saudi Arabia.
  • Sayed AA; Zoology Department, Faculty of Science, Cairo University, Giza 12613, Egypt.
  • Altyar AE; Department of Pharmacy Practice, Faculty of Pharmacy, King Abdulaziz University, P.O. Box 80260, Jeddah 21589, Saudi Arabia.
  • Abdel-Daim MM; Pharmacy Program, Batterjee Medical College, P.O. Box 6231, Jeddah 21442, Saudi Arabia.
Saudi Pharm J ; 32(3): 101957, 2024 Mar.
Article in En | MEDLINE | ID: mdl-38313822
ABSTRACT
An orally administered bilayer tablet with Tamsulosin (TAM) as the sustained release (SR) and Finasteride (FIN) as immediate release (IR) was manufactured. A response surface methodology was employed to formulate bilayer tablets with individual release layers, i.e., sustained and immediate release (SR and IR). Independent variables selected in both cases comprise hydroxypropyl methylcellulose (HPMC) as SR polymer, and avicel PH102 in the inner layer while Triacetin and talc in the outer layer, respectively. Tablets were prepared by direct compression, a total of 11 formulations were prepared for inner layer TAM, and 9 formulations for outer layer FIN were designed; these formulations were evaluated for hardness, friability, thickness, %drug content, and %drug release. A central composite design was employed in response surface methodology to design and optimize the formulation. The percentage of drug released was evaluated by in-vitro USP dissolution method of optimized formulation for 0.5, 2, and 6 hrs, and results were 24.63, 52.96, and 97.68 %, respectively. Drug release data was plotted in various kinetic models using a D.D solver, where drug release was first order that is concentration dependent and was best explained by Korsmeyer-Peppa kinetics, as the highest linearity was observed (R2 = 0.9693). However, a very close relationship was also noted with Higuchi kinetics (R2 = 0.9358). The mechanism of drug release was determined through the Korsmeyer model, and exponent "n" was found to be 0.4, indicative of an anomalous diffusion mechanism or diffusion coupled with erosion.
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Full text: 1 Database: MEDLINE Type of study: Prognostic_studies Language: En Year: 2024 Type: Article

Full text: 1 Database: MEDLINE Type of study: Prognostic_studies Language: En Year: 2024 Type: Article