QUALITY ASSESSMENT AND STABILITY STUDIES OF METRONIDAZOLE TABLETS FORMULATIONS OBTAINED VIA CRYSTALLO CO-AGGLOMERATION TECHNIQUE

  • Abba Khalid Adullahi Dept of Pharmaceutics and Industrial Pharmacy, Ahmadu Bello University Zaria.
  • Adeniji Kehinde Olowosulu Dept of Pharmaceutics and Industrial Pharmacy, Ahmadu Bello University Zaria
  • T. S. Allagh
Keywords: Stability studies, Crystallo-co-agglomeration, Metronidazole tablets, Quality assessment, Storage

Abstract

Stability studies are essential for assessing the quality, safety, and efficacy of pharmaceutical products, ensuring they maintain their properties over time.  This study aimed to assess the stability of metronidazole tablets stored in a desiccator with charged silica gel following the International council for harmonization of Technical Requirements for Pharmaceuticals for Human Use guidelines. Metronidazole tablets were formulated from metronidazole co-agglomerates using different excipients by direct compression method and stored for 6 and 12 months at 25±2°C/60±5% relative humidity. Quality parameters such as weight variation, diameter, thickness, hardness, friability, content uniformity, and dissolution rate were evaluated at intervals using the United States Pharmacopeia – National Formulary and British Pharmacopeia specifications. The tablets maintained uniformity in weight, diameter, thickness and content over 12 months, meeting pharmacopeial standards. They exhibited high crushing strength, low friability, and consistent disintegration times (<5 min), across formulations and storage durations with no significant changes after storage, indicating stable performance. The sustained high crushing strength, friability ratio (CSFR) and crushing strength, friability, disintegration time (CSFR/Dt) ratios suggested high tablet strength and quality. In-vitro dissolution studies showed release rates of 87.31 – 100.81 %, with a significant decrease at 6 months within pharmacopeial standards but no change at 12 months. Content uniformity was maintained throughout storage. Metronidazole tablets formulated from crystallo co-agglomerates demonstrated good stability and mechanical strength over 12 months of storage. Storage in air-tight containers with desiccants at controlled room temperature (25±2°C) or below their relative humidities is recommended for maintaining tablet quality

References

Abdullahi A.K., Olowosulu A.K., and Allagh T.S. (2023). Crystallo co-agglomeration technique for improving physicochemical properties, compressibility and solubility characteristics of metronidazole. British Journal of Pharmacy, 8(1).1039 DOI: https://doi.org/10.5920/bjpharm.1039

Alfred-Ugbenbo D., Zdoryk, O.A., Georgiyants V. (2017). Quality assessment and stability study of compounded furosemide syrup. ScienceRise: Pharmaceutical Science. 5(9). https://doi:10.15587/2519-4852.2017.113517 DOI: https://doi.org/10.15587/2519-4852.2017.113517

Alderborn, G., & Frenning, G. (2017). Tablets and compaction. In M. Aulton & K. M. G. Taylor (Eds.), Aulton’s Pharmaceutics: The Design and Manufacture of Medicines (5th ed., pp. 517–563). Elsevier.

Ayorinde, J., Odeniyi, M., and Itiola, A. (2012). Evaluation of pharmaceutical and chemical equivalence of selected brands of diclofenac sodium tablets. East and Central African Journal of Pharmaceutical Sciences, 15, 3–9.

Berardi, A., Bisharat, L., Quodbach, J., Abdel Rahim, S., Perinelli, D.R., Cespi, M., (2021). Advancing the understanding of the tablet disintegration phenomenon - an update on recent studies. International Journal of Pharmaceutics. 120390. https://doi.org/10.1016/j.ijpharm.2021.120390. DOI: https://doi.org/10.1016/j.ijpharm.2021.120390

British Pharmacopoeia, Vol. 1 (2010). The Pharmaceutical Press, Her Majesty Stationery Office, London.

Clancy, D., Patel-Jones, J., Hutton, G., (2018). Chapter 19 - Accelerated Stability Modeling: Investigation of Disintegration Time of a Drug Product with Sodium Bicarbonate. Academic Press (pp. 403–410). DOI: https://doi.org/10.1016/B978-0-12-802786-8.00019-X

Costa, N.F., Pinto, J.F., and Fernandes, A.I. (2021). Assessment of the stability of co-amorphous olanzapine in tablets. Annals of Medicine, 53(sup1), S110-S111, https://doi:10.1080/07853890.2021.1896097 DOI: https://doi.org/10.1080/07853890.2021.1896097

Faisal, U, Ibrahim, J, Rasheed, S, Ranjha, NM, Hussain, L, & Massud, A. (2013). Accelerated stability studies of flurbiprofen film coated tablets of five different national brands in Pakistan. Journal of Drug Delivery and Therapeutics, 3(2), 9-11 DOI: https://doi.org/10.22270/jddt.v3i2.402

Lachman, L., & Lieberman, H. (2013). Kinetic principles and stability testing. In The Theory and Practice of Industrial Pharmacy (4th ed., pp. 1036-1072). CBS Publishers & Distributors Pvt Ltd, New Delhi.

Maclean, N., Khadra, I., Mann, J., Williams, H., Abbott, A., Mead, H., & Markl, D. (2022). Investigating the role of excipients on the physical stability of directly compressed tablets. International journal of Pharmaceutics: X, 4(1). DOI: https://doi.org/10.1016/j.ijpx.2021.100106

Narayan, S., & Manupriya, C. (2019). A Review on stability studies of pharmaceutical products. International journal of applied pharmaceutical and biological research, 2(3): 67-75.

Noman, M. A., Alburyhi, M. M., & Alqubati, M. A. (2024). Preformulation and Characterization Studies of Clopidogrel Active Ingredient for Orodispersible Tablets Development. World Journal of Pharmacy and Pharmaceutical Sciences, 13(3), 996-1015. DOI: https://doi.org/10.20959/wjpps20243-26878.

Oliveira, P.R., Mendes, C., Klein, L., Sangoi, M.S., Bernardi, S.S., & Silva, M.A.S. (2013). Formulation Development and Stability Studies of Norfloxacin Extended-Release Matrix Tablets. BioMedical Research International. Article ID 716736. http://dx.doi.org/10.1155/2013/716736. DOI: https://doi.org/10.1155/2013/716736

Olowosulu, A.K., Oyi, R.A., Isah, A.B., & Ibrahim, M.M. (2015). The Use of Multifunctional Starch Based Coprocessed Excipients ( Starac ) in the Formulation of Metronidazole Tablets by Direct Compression. African Journal of Pharmaceutical Research and Development, 7(2), 101–108.

Panda, A., Kulkarni, S., Tiwari, R. (2013). Stability Studies: An Integral Part of Drug Development Process. International Journal of Pharmaceutical Research and Bio-Science, 2; 69-80.

Punam, T., Shubhangi, W., Rahul, S., Sargar, A., Bhujbal, A., Shinde, A. (2014). Stability study of dosage form: An inovative step. World Journal of Pharmacy and Pharmaceutical Science. 3(2): 1031-1050.

Qiu, F. (2018). Accelerated Predictive Stability (APS). In Academic Press. https://doi.org/10.1016/B978-0-12-802786-8.09987-3. DOI: https://doi.org/10.1016/B978-0-12-802786-8.00001-2

Quodbach, J., & Kleinebudde, P. (2015). Performance of tablet disintegrants: impact of storage conditions and relative tablet density. Pharmaceutical Devevelopment and Technology. 20(6), 762–768. https://doi.org/10.3109/10837450.2014.920357. DOI: https://doi.org/10.3109/10837450.2014.920357

Published
2024-06-30
How to Cite
AdullahiA. K., OlowosuluA. K., & Allagh T. S. (2024). QUALITY ASSESSMENT AND STABILITY STUDIES OF METRONIDAZOLE TABLETS FORMULATIONS OBTAINED VIA CRYSTALLO CO-AGGLOMERATION TECHNIQUE. FUDMA JOURNAL OF SCIENCES, 8(3), 81 - 90. https://doi.org/10.33003/fjs-2024-0803-2273