A study of the influence of the test sample inhomogeneity on variability in assay results of desloratadine in film-coated tablets
DOI:
https://doi.org/10.15587/2519-4852.2020.215287Keywords:
desloratadine tablets, sample preparation, comminution, homogeneity acceptance criteria, assay result uncertaintyAbstract
Aim. The work aimed at metrological evaluation and management of the risk of inconsistency in the results of desloratadine assay in film-coated tablets.
Materials and methods. A pilot-scale batch of the pharmaceutical preparation Alerdez served as a study object. Spectrophotometric readings were performed on a UV-Vis spectrophotometer Lambda 25 at 282 nm. An analytical balance Mettler Toledo, pH-meter Metrohm, Class A volumetric pipettes and flasks were used for analysis. The test sample was prepared by manual tablet grinding.
Results and discussion. A trend of obtaining inconsistent assay results with a systematic shift towards an increase while taking test portions in sequence was observed. This may inform a test sample inhomogeneity, which may be reduced by increasing a test portion mass. An experiment design to study the impact of the test portion mass on the variability in assay results was laid down. A prognosis for the minimum test portion mass contributing to the mitigation of the risk of the test sample inhomogeneity was scientifically justified and experimentally verified. Acceptance criteria for the assessment of the test sample homogeneity by assay results were established based on the principle of insignificance and recommendations of the State Pharmacopoeia of Ukraine to the target measurement uncertainty. A procedure for desloratadine assay intended to be used for the method transfer and routine analysis, as well as acceptance criteria for assay results, was developed. Their feasibility was experimentally proved during method transfer. The greater difference between the values obtained in the receiving unit compared to those collected in the sending unit was observed, yet the results met the acceptance criteria.
Conclusions. This paper provides comprehensive solutions that allow for minimizing the risk of variability in desloratadine assay results. The risk of aberrant assay results could be mitigated by using a test portion equivalent to the weight of four tablets (approx. 420 mg)
References
- Nickerson, B. (2011). Sample Preparation of Pharmaceutical Dosage Forms : challenges and strategies for sample preparation and extraction. Boston: American Association of Pharmaceutical Scientists. doi: http://doi.org/10.1007/978-1-4419-9631-2
- European Medicine Agency (1991). 3AQ11a. Specifications and Control Tests on the Finished Product. London, 83–94.
- Bánfai, B., Ganzler, K., Kemény, S. (2007). Content uniformity and assay requirements in current regulations. Journal of Chromatography A, 1156 (1-2), 206–212. doi: http://doi.org/10.1016/j.chroma.2006.10.067
- The European Pharmacopoeia. 10th Ed. Suppl. 2. (2020). 2.9.40. Uniformity of dosage units. Available at: https://pheur.edqm.eu/ Last accessed: 03.08.2020
- Harrington, B., Nickerson, B., Guo, M. X., Barber, M., Giamalva, D., Lee, C., Scrivens, G. (2014). Sample Preparation Composite and Replicate Strategy for Assay of Solid Oral Drug Products. Analytical Chemistry, 86 (24), 11930–11936. doi: http://doi.org/10.1021/ac503551r
- Leontev, D., Grizodub, A., Volovik, N., Petrus, V. (2018). Kriteriy priemlemosti minimalno dopustimogo chisla tabletok dlya rascheta rezultatov kolichestvennogo opredeleniya. Nauchnyiy forum: meditsina, biologiya i himiya, 1 (9), 72–78.
- Leontev, D., Petrus, V., Grizodub, A., Volovik, N. (2018) Kolichestvennoe opredelenie i odnorodnost dozirovannyih edinits: effektyi neodnorodnosti i obespechenie kachestva. Farmakom, 2, 45–55.
- Benes, L. (2019). The Importance of Comminution in Pharmaceutical Analysis. Drug Discovery and Pharmaceuticals. Available at: https://www.labmate-online.com/article/laboratory-products/3/fritsch-gmbh/the-importance-of-comminution-in-pharmaceutical-analysis/2540 Last accessed: 02.08.2020
- Greco, G. (1985). III Segregation of Active Constituents from Tablet Formulations During Grinding: Effects on Coated Tablet Formulations. Drug Development and Industrial Pharmacy, 11 (9-10), 1889–1899. doi: http://doi.org/10.3109/03639048509057705
- Ducette, Y. (1987). Variability of Assay Results for Hydralazine Hydrochloride Tablets Due to the use of Electirc Mill Comminution During Sample Preparation. Drug Development and Industrial Pharmacy, 13 (2), 289–302. doi: http://doi.org/10.3109/03639048709040173
- Rossbach, M., Grobecker, K.-H. (1999). Homogeneity studies of reference materials by solid sampling - AAS and INAA. Accreditation and Quality Assurance, 4 (12), 498–503. doi: http://doi.org/10.1007/s007690050422
- Volovyk, N., Leontiev, D., Gryzodub, O. (2019). The approach of the State Pharmacopoeia of Ukraine to the homogeneity study of pharmacopoeial reference standards. EDQM & USP. Strasbourg, 13–14.
- Takano, D. E. N., de Souza Reis, P. R., Singh, A. K., Lourenço, F. R. (2017). Estimation of uncertainty for measuring de-sloratadine in tablets formulation using UV spectrophotometry. Measurement, 101, 40–44. doi: http://doi.org/10.1016/j.measurement.2017.01.018
- Derzhavna Pharmakopeya Ukrayini. Vol 1 (2015). Kharkiv: DP «Ukrayinskiy naukoviy farmakopeyniy tsentr yakosti likarskih zasobiv», 1128.
- Mohammad, Y., Pragati Kumar, B., Srinivas, R., Rehana, S. K. (2010). New UV spectrophotometric method for the de-termination of desloratadine in bulk and tablet dosage forms. Journal of Chemical and Pharmaceutical Sciences, 3 (4), 241–243.
- Hussain Raviteja, K., Nasare, M., Prasad, V. V. L. N., Diwan, P. V. (2014). UV Spectrophotometric Method for the Sim-ultaneous Determination of Desloratidine and Pseudoephedrine HCl in Combined Dosage Form. British Journal of Pharmaceutical Research, 4 (4), 418–428. doi: http://doi.org/10.9734/bjpr/2014/5615
- Ravi Challa, R., Naidu, N. (2016). Development and validation of stability indicating RP-HPLC method for Simultaneous determination of Desloratadine and Montelukast Sodium in pharmaceutical dosage form. International Journal of Pharmacy and Analytical Research, 5 (2), 294–309.
- Mallapu Rani, E., Hindustan Abdul, A., Sreenivasulu, R., Rani M., Giri, M., Reddy, K. K. et. al. (2011). Spectrophoto-metric Determination of Desloratadine in Pharmaceuticals by Using Difference Spectrophotometric Method. Journal of Pharmacy Research, 4 (3), 730–731.
- Roge, A., Shendarkar, G., Ghante, M., Ghiware, N. (2019). Development of Validated UV Spectrophotometric Stability Indicating Method for Estimation of Desloratadine from Its Tablet Dosage Form. International Journal of Pharmacy and Biological Sciences, 9 (3), 1174–1181.
- Çğalar, S., & Öztun, A. (2007). A Sensitive Spectrophotometric Method for the Determination of Desloratadine in Tablets. Journal of AOAC INTERNATIONAL, 90 (2), 372–375. doi: http://doi.org/10.1093/jaoac/90.2.372
- The International Conference on Harmonisation of Technical Requirements for Registration of Pharmaceuticals for Human Use (2005). VALIDATION OF ANALYTICAL PROCEDURES: TEXT AND METHODOLOGY Q2R1 Current Step 4 version: ICH Harmonised Tripartite Guideline.
- WHO Expert Committee on Specifications for Pharmaceutical Preparations (2016). Technical Report Series, No. 996. Annex 1: Good pharmacopoeial practices. Geneva: World Health Organization. Available at: https://www.who.int/medicines/publications/pharmprep/WHO_TRS_996_web.pdf
- The United States Pharmacopeia (2020). Desloratadine Tablets. Available at: https://online.uspnf.com/uspnf/ Last accessed: 01.08.2020
- Leontiev, D., Volovyk, N. (2016). Specificity of application of the uncertainty concept to the decision on compliance of medicines. Arhiv za farmaciju, 66, 207–208.
- ISO 17034:2016 General requirements for the competence of reference material producers (2016). International Organi-zation for Standardization.
- The United States Pharmacopeia (2020). <1220> Analytical Procedure Lifecycle. Pharmacopeial Forum, 46 (5).
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2020 Dmytro Leontiev, Vasyl Petrus, Natalia Volovyk, Oleksandr Gryzodub
This work is licensed under a Creative Commons Attribution 4.0 International License.
Our journal abides by the Creative Commons CC BY copyright rights and permissions for open access journals.