Pre-Formulation Development of Lamivudine 300 mg and Tenofovir Disoproxil Fumarate (TDF) 300 mg Fixed Dose Combination Tablets
- 1 Pharm R&D Laboratory, School of Pharmacy, Muhimbili University of Health and Allied Sciences (MUHAS), Dar es Salaam, Tanzania
- 2 Department of Pharmaceutics and Pharmacy Practice, Muhimbili University of Health and Allied Sciences (MUHAS), Dar es Salaam, Tanzania
- 3 Medicinal Chemistry Department, Muhimbili University of Health and Allied Sciences (MUHAS), Dar es Salaam, Tanzania
- 4 Pharm R&D Laboratory, School of Pharmacy, Muhimbili University of Health and Allied Sciences (MUHAS), Dar es Salaam, Tanzania
- 5 Department of Pharmaceutics and Pharmacy Practice, Muhimbili University of Health and Allied Sciences (MUHAS), Dar es Salaam, Tanzania
- 6 Medicinal Chemistry Department, Muhimbili University of Health and Allied Sciences (MUHAS), Dar es Salaam, Tanzania
Abstract
Introduction: In this study, physical and chemical characteristics of Lamivudine, Tenofovir Disoproxil Fumarate (TDF) and potential excipients were systematically followed and documented [1]. Objective: The objective of this scientific work was to carry out pre-formulation studies including compatibility studies on Lamivudine and Tenofovir Disoproxil Fumarate with their potential excipients prior a direct compression process [2]. Methodology: The interaction was studied in three set of environments namely uncontrolled room conditions for Zone VI b (30 ° C ± 2 ° C), oven conditions in which the oven was set at 50 ° C and accelerated climatic conditions in which a climatic chamber was set at 40°C ± 2 ° C/75% ± 5% Relative Humidity (RH %). Sample preparation was done by mixing the amount of formulation excipients to active substances at a ratio of 1:10, whereas active substance to another active substance at a ratio of 1:1, active substance to coating materials at 1:4, coating materials to the whole set of excipients 1:4. The whole set of samples was geometrically mixed and triturated by mortar and pestle to very fine uniform powder to ensure homogeneity of the mixture. HPLC analytical method was used for simultaneous quantitative determination of lamivudine and tenofovir disoproxil fumarate. Transmittance of the mixture was determined by Near Infra-Red (NIR) technique. Results: The amount of Lamivudine as on day 0 was comparable to day 90 for in all tested conditions (Room, Oven and Climatic Chamber), whereas for Tenofovir Disoproxil Fumarate only the amount of the drug at Room (30 ° C ± 2 ° C) was comparable to results on day 90. A significant drop of amount of Tenofovir Disoproxil Fumarate (TDF) exposed to moisture (Climatic chamber at 40 ° C ± 2 ° C/75% ± 5% Relative Humidity (RH %)) and temperature of 50 ° C was observed. Colour change was observed for samples subjected to moisture (Climatic chamber at 40 ° C ± 2 ° C/75% ± 5% Relative Humidity (RH %)) and as well picked up in the NIR region 400 to 1500 cm -1 (Finger print region) by a significant shift in Transmittance. Conclusion: It can be concluded that microcrystalline cellulose, cross linked sodium carboxymethyl cellulose, magnesium stearate and sodium carbxymethyl cellulose can be compressed together with Lamivudine and Tenofovir Disoproxil Fumarate (TDF) to produce a pharmaceutically acceptable solid dosage form, tablet. The produced tablets should be packed in moisture and light protective containers as Tenofovir Disoproxil Fumarate (TDF) has diester linkages which can be hydrolysed into the active drug Tenofovir in the presence of moisture.
- Preechagoon, D., Sumyai, V., Tontisirin, K., Aumpon, S. and Pongjanyakul, T. (2005) Formulation Development and Stability Testing of Oral Morphine Solution Utilizing Preformulation Approach. Journal of Pharmacy & Pharmaceutical Sciences, 8, 362-369.
- Gopinath, R. and Naidu, R.A.S. (2011) Pharmaceutical Preformulation Studies—Current Review. International Journal of Pharmaceutical and Biological Archive, 2, 1391-400.
- Article, R. (2012) Available through Online Review Article IMPORTANCE OF Preformulation Studies in Designing. Formulations for Sustained Release Dosage Forms, 4, 2311-2331.
- Pérez, P., Suñé-Negre, J.M., Miñarro, M., Roig, M., Fuster, R., García-Montoya, E., et al. (2006) A New Expert Systems (SeDeM Diagram) for Control Batch Powder Formulation and Preformulation Drug Products. European Journal of Pharmaceutics and Biopharmaceutics, 64, 351-359. http://dx.doi.org/10.1016/j.ejpb.2006.06.008
- Kalinkova, G.N. (1999) Studies of Beneficial Interactions between Active Medicaments and Excipients in Pharmaceutical Formulations. International Journal of Pharmaceutics, 187, 1-15. http://dx.doi.org/10.1016/S0378-5173(99)00176-3
- Capková, Z., Vitková, Z., Tilandyová, J. and Cizmárik, J. (2005) Preformulation Studies of Potential Drug XIX M: Partition Coefficient. Ceská a Slovenská Farmacie, 54, 75-77.
- Du, S. and Deng, Y. (2006) Studies on the Encapsulation of Oxymatrine into Liposomes by Ethanol Injection and pH Gradient Method. Drug Development and Industrial Pharmacy, 32, 791-797. http://dx.doi.org/10.1080/03639040600760556
- Heng, P.W.S., Liew, C.V. and Soh, J.L.P. (2004) Pre-Formulation Studies on Moisture Absorption in Microcrystalline Cellulose Using Differential Thermo-Gravimetric Analysis. Chemical and Pharmaceutical Bulletin (Tokyo), 52, 384-390. http://dx.doi.org/10.1248/cpb.52.384
- Salnikova, M.S., Joshi, S.B., Rytting, J.H., Warny, M. and Middaugh, C.R. (2008) Preformulation Studies of Clostridium Difficile Toxoids A and B. Journal of Pharmaceutical Sciences, 97, 4194-4207. http://dx.doi.org/10.1002/jps.21300
- Gupta, M. and Saini, T. (2009) Preformulation Parameters Characterization to Design, Development and Formulation of Vancomycin Hydrochloride Tablets for Psudomembranous Colitis. International Journal of Research and Development in Pharmacy & Life Sciences, 9, 1-7. http://www.ijprd.com/
- Heidemann, D.R. and Jarosz, P.J. (1991) Preformulation Studies Involving Moisture Uptake in Solid Dosage Forms. Pharmaceutical Research, 8, 292-297. http://dx.doi.org/10.1023/A:1015877011807