Evaluation of recombinant human parathyroid hormone by CZE method and its correlation with in vitro bioassay and LC methods
Autor: | Bruna Xavier, Sérgio Luiz Dalmora, Maurício Elesbão Walter, Gabriel Lunardi Remuzzi, Fernanda Pavani Stamm Maldaner, Rafaela Ferreira Perobelli |
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Rok vydání: | 2017 |
Předmět: |
Cell Survival
Capillary action Size-exclusion chromatography Parathyroid hormone 02 engineering and technology Electrolyte Ranitidine 01 natural sciences Analytical Chemistry law.invention Mice L Cells Capillary electrophoresis law Cell Line Tumor Animals Humans Bioassay Potency Chromatography Reverse-Phase Chromatography Chemistry 010401 analytical chemistry Electrophoresis Capillary Reproducibility of Results Reference Standards 021001 nanoscience & nanotechnology Recombinant Proteins Rats 0104 chemical sciences Parathyroid Hormone Chromatography Gel Recombinant DNA Biological Assay 0210 nano-technology |
Zdroj: | Talanta. 162:567-573 |
ISSN: | 0039-9140 |
DOI: | 10.1016/j.talanta.2016.10.053 |
Popis: | A stability-indicating capillary zone electrophoresis (CZE) method was validated to assess the content/potency of the recombinant human parathyroid hormone (rhPTH 1-34), using ranitidine as internal standard (IS). A fused-silica capillary, (i.d. of 50µm; effective length of 40cm) was used at 25°C; the applied voltage was 20kV. The background electrolyte solution consisted of 50mmolL-1 sodium dihydrogen phosphate solution at pH 3.0. Injections were performed using a pressure mode at 50 mbar for 45s, with detection by photodiode array (PDA) detector set at 200nm. Separation was obtained with a migration time of 5.3min, and was linear over the concentration range of 0.25-250µgmL-1 (r2 =0.9992). Specificity and stability-indicating capability were established in degradation studies, which also showed that there was no interference of the excipients. The accuracy was 100.28% with bias lower than 0.85%. Analyses of the same batches showed mean differences of the estimated content/potencies of 0.61%, 1.31% higher and 0.86% lower as compared to the validated reversed-phase and size exclusion liquid chromatography methods, and to the UMR-106 cell culture bioassay, respectively, with non-significant differences (p>0.05). Degraded forms were also subjected to the in vitro cytotoxicity test. The results obtained showed the capabilities of each one of the methods, and constitute an alternative strategy to monitor stability, improve the quality control and ensure the batch-to-batch consistency of bulk and finished biotechnology-derived medicine. |
Databáze: | OpenAIRE |
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