Literature DB >> 29618434

Formulation and in vitro evaluation of directly compressed controlled release tablets designed from the Co-precipitates.

Kamran Ahmad Khan1, Gul Majid Khan2, Syed Umer Jan3, Asimur Rehman2, Saifullah Mehsud4.   

Abstract

Controlled release dosage forms provide sustained therapeutics effects for prolonged period of time and improve patient compliance. In present study, controlled release co-precipitates of Metoprolol Tartrate and Losartan Potassium were prepared by solvent evaporation method using polymers such as Eudragit RL 100 and Carbopol 974PNF and controlled release tablets were directly compressed into tablets. In-vitro dissolution of controlled release co-precipitates were performed by USP Method-II (paddle method) and tablets were evaluated by USP Method-I (rotating basket method) in phosphate buffer (PH 6.8) using pharma test dissolution apparatus. The temperature was maintained constant at 37±1.0°C and the rotation speed of paddle and basket was kept constant at 100rpm. Drug release mechanisms were determined by applying Power Law kinetic model. The difference and similarity of dissolution profiles test formulations with reference standards were also determined by applying difference factor (f1) and similarity factor (f2). The results showed that the controlled release co-precipitates with polymer Eudragit RL 100 of both the drug extended the drug release rates for 10 hours and those having polymer Carbopol 974P NF extended the drug release rates for 12 hours. The controlled release tablets prepared from controlled release co-precipitates extended the drugs release up to 24 hours with both the polymers. The drug was released by all tests anomalous non fickian mechanism except F1 and F5 do not follow Power Law. The f1 and f2 values obtained were not in acceptable limits except F15 whose values were in acceptable limits. It is concluded from the present study that polymers (Eudragit RL 100 and Carbopol 974P NF) can be efficiently used in development of controlled release dosage forms having predictable kinetics.

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Year:  2018        PMID: 29618434

Source DB:  PubMed          Journal:  Pak J Pharm Sci        ISSN: 1011-601X            Impact factor:   0.684


  2 in total

1.  Preparation of Losartan Potassium Controlled Release Matrices and In-Vitro Investigation Using Rate Controlling Agents.

Authors:  Kamran Ahmad Khan; Gul Majid Khan; Muhammad Muzammal; Mohammed Al Mohaini; Abdulkhaliq J Alsalman; Maitham A Al Hawaj; Ashfaq Ahmad; Zahid Rasul Niazi; Kifayat Ullah Shah; Arshad Farid
Journal:  Molecules       Date:  2022-01-27       Impact factor: 4.411

2.  Preparation and In Vitro Evaluation of Controlled-Release Matrices of Losartan Potassium Using Ethocel Grade 10 and Carbopol 934P NF as Rate-Controlling Polymers.

Authors:  Kamran Ahmad Khan; Claudia Zizzadoro; Alessandro Di Cerbo; Nicola Pugliese; Gul Majid Khan; Shakira Ghazanfar; Eman M Almusalami; Muhammad Muzammal; Khaled J Alsalman; Arshad Farid
Journal:  Polymers (Basel)       Date:  2022-07-24       Impact factor: 4.967

  2 in total

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