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Evaluation of excipients effects on the impurity profile of lyophilized hydroxocobalamin formulation

Yıl 2020, Cilt: 50 Sayı: 2, 89 - 94, 27.08.2020

Öz

Background and Aims: The aim of the research work was to compare excipient effects and develop a stable pharmaceutical product in the form of lyophilized powder. Mannitol, lactose monohydrate, EDTA and glycine are widely used in pharmaceutical formulations and food products. Methods: The production method consists of mainly four parts: raw material weighing process, preparation of bulk solutions, lyophilization and analytical determination. A total of five formulations were prepared and lyophilized to the stability study. To improve the stability of hydroxocobalamin formulations (F1-F5), they were evaluated with different excipients (mannitol, lactose monohydrate, EDTA and glycine) during the stability period. Stability studies were performed to check impurity and assay of hydroxocobalamin. Results: The rate of impurity and assay results were compared to F1-F5 formulations. As a result of impurity and assay analysis for F3 and F4, the formulations were found to be within limit. Both of them were determined to the best formulations for impurity of hydroxocobalamin. Conclusion: The research proposes a new stable formulation and proper storage conditions for lyophilized hydroxocobalamin parenteral solutions. The impurity problem of lyophilized hydroxocobalamin formulation was optimized with lactose monohydrate and lactose monohydrate + EDTA combination.

Kaynakça

  • Ahmad, I., Ansari, I. A., & Ismail, T. (2003). Effect of nicotinamide on the photolysis of cyanocobalamin in aqueous solution. Journal of Pharmaceutical and Biomedical Analysis, 31, 369–374.
  • Ahmad, I., Qadeer, K., Zahid, S., Sheraz, M. A., Ismail, T., Hussain, W., & Ansari, I. A. (2014). Effect of ascorbic acid on the degradation of cyanocobalamin and hydroxocobalamin in aqueous solution: A kinetic study. American Association of Pharmaceutical Scientists, 15, 1324–1333.
  • Ahmad, I., Ahmed, S., Anwar, Z., Sheraz, M. A., & Sikorski, M. (2016). Photostability and photostabilization of drugs and drug products. International Journal of Photoenergy, 1,1–19.
  • Atici, B., & Karlıga, B. (2015). Identification, synthesis and characterization of process related impurities of benidipine hydrochloride, stress-testing/stability studies and HPLC/UPLC method validations. Journal of Pharmaceutical Analysis, 4, 256-268.
  • Atici, B., Yazar, Y., Agtas, C., Ridvanoglu, N., & Karlıga, B. (2017). Development and validation of stability indicating HPLC methods for related substances and assay analyses of amoxicillin and potassium clavulanate mixtures. Journal of Pharmaceutical and Biomedical Analysis, 136, 1–9.
  • Baheti, A., Kumar, L., & Bansal, A. K. (2010). Excipients used in lyophilization of small molecules. Journal of Excipients and Food Chemistry, 1, 41–54.
  • Cappola, M. L. (2000). Freeze-Drying Concepts. The Basics, in Mc- Nally EJ (ed): Protein formulation and delivery, (pp 159-199), Marcel Dekker, New York.
  • Carstensen, J. T., Osadca, M., & Rubin, S. H. (1969). Degradation mechanisms for water-soluble drugs in solid dosage forms. Journal of Pharmaceutical Sciences, 58, 549–553. • DRUGBANK website, retrieved from https://www.drugbank.ca/ drugs/DB00200.
  • Dubost, D. C., Kaufman, M. J., Zimmerman, J. A., Bogusky, M. J., Coddington, A. B., & Pitzenberger, S. M. (1996). Characterization of a solid state reaction product from a lyophilized formulation of a cyclic heptapeptide. A novel example of an excipient-induced oxidation. Pharmaceutical Research, 13, 1811–1814.
  • Edelmann, M., Chamlagain, B., Santin, M., Kariluoto, S., & Piironen, V. (2016). Stability of added and in situ-produced vitamin B12 in breadmaking. Food Chemistry, 204, 21–28.
  • El-dawy, M. A., Mabrouk, M. M., & El-Barbary, F. A. (2002). Liquid chromatographic determination of fluoxetine. Journal of Pharmaceutical and Biomedical Analysis, 3, 561–571.
  • Fatima, N., Mamatha, T., Qureshi, H. K., Anitha, N., & Rao, J. V. (2011). Drug-excipient interaction and its importance in dosage form development. Journal of Applied Pharmaceutical Science, 1(6), 66–71.
  • Frank, K. (2004). Understanding Lyophilization formulation development. Pharmaceutical Technology Lyophilization, 10–18.
  • Gressl, C., Brunsteiner, M., Davis, A., Landis, M., Pencheva, K., Scrivens G, Sluggett, G.W … Paudel, A. (2017). Drug–excipient interactions in the solid state: The role of different stress factors. Molecular Pharmaceutics, 14, 4560-4571.
  • Heathgote, J. G., Moxon, G. H., & Slifkin, M. A. (1970). Ultraviolet, visible and infrared spectroscopic studies of the interaction of hydroxocobalamin with α-amino acid and peptides. Spectrochimica Acta, 27,1391–1408.
  • Herman, B. D., Sinclair, B. D., Milton, N., & Nail, S. L. (1994). The Effect of bulking agent on the solid-state stability of freeze dried methylprednisolone sodium succinate. Pharmaceutical Research, 11, 1467–1473.
  • Hotha, K. K., Roychowdhury, S., & Subramanian, V. (2016). Drug-Excipient interactions: Case studies and overview of drug degradation pathways. American Journal of Analytical Chemistry, İ, 107–140.
  • Kennedy, D. O. (2016). B Vitamins and the brain: Mechanisms, dose and efficacy. Nutrients, 8, 2–29.
  • Kondepudi, N. (2016). Stability of vitamins in pharmaceutical preparations International Journal for Research in Applied Science & Engineering Technology, 4, 499–502.
  • Korey, D., & Schwartz, J. B. (1989). Effects of excipients on the crystallization of pharmaceutical compounds during lyophilization. Journal of Parenteral Science and Technology, 43, 80–83.
  • Liao, X., Krishnamurthy, R., & Suryanarayanan, R. (2007). Influence of processing conditions on the physical state of mannitol- implication in freeze-drying. Pharmaceutical Research, 24, 370–376.
  • Mehmood, Y., & Farooq, U. (2015). Excipients use in parenteral and lyophilized formulation development. Open Science Journal of Pharmacy and Pharmacology, 3, 19–27.
  • Mishra, A., Saini, T. R., & Maurya, V. K. (2017). Process validation of lyophilization process. World Journal of Pharmacy and Pharmaceutical Sciences, 7, 365–397.
  • Monajjemzadeh, F., Ebrahimi, F., Milani, P. Z., & Valizadeh, H. (2014). Effects of formulation variables and storage conditions on light protected vitamin B12 mixed parenteral formulations. Advanced Pharmaceutical Bulletin, 4, 329–338.
  • ICH Guidelines. (2005). Stability testing of new drug substances and products, In Proceedings of International Conference on Harmonization Topic Q1A (R2), Geneva, Switzerland, http://www. ich.org/.
  • ICH Guidelines. (2005). Validation of analytical procedures: Text and methodology, In Proceedings of International Conference on Harmonization Topic Q2 (R1), Geneva, Switzerland, http://www. ich.org/.
  • Shchavlinskii, A. N., Neiman, A. V., Lazareva, N. P., & Orlov, S.V. (1995). Analytical methods for control of cyanocobalamin quality and its stability in drug dosage forms. Pharmaceutical Chemistry Journal, 29, 51–60.
  • Schnellbaecher, A., Binder, D., Bellmaine, S., & Zimmer, A. (2019). Vitamins in cell culture media: Stability and stabilization strategies. Biotechnology and Bioengineering, 1–19.
  • Tegeli, V. S., Gajeli, G. B., Chougule, G. K., Thorat, Y. S., Shivsharan, U. S., & Kumbhar, S. T. (2011). Significance of impurity profiling: A review. International Journal of Drug Formulation and Research, 2, 174–195.
  • Vranic, E. (2004). Basic principles of drug-excipients interactions. Bosnian Journal of Basic Medical Science, 4(2), 56–58.
Yıl 2020, Cilt: 50 Sayı: 2, 89 - 94, 27.08.2020

Öz

Kaynakça

  • Ahmad, I., Ansari, I. A., & Ismail, T. (2003). Effect of nicotinamide on the photolysis of cyanocobalamin in aqueous solution. Journal of Pharmaceutical and Biomedical Analysis, 31, 369–374.
  • Ahmad, I., Qadeer, K., Zahid, S., Sheraz, M. A., Ismail, T., Hussain, W., & Ansari, I. A. (2014). Effect of ascorbic acid on the degradation of cyanocobalamin and hydroxocobalamin in aqueous solution: A kinetic study. American Association of Pharmaceutical Scientists, 15, 1324–1333.
  • Ahmad, I., Ahmed, S., Anwar, Z., Sheraz, M. A., & Sikorski, M. (2016). Photostability and photostabilization of drugs and drug products. International Journal of Photoenergy, 1,1–19.
  • Atici, B., & Karlıga, B. (2015). Identification, synthesis and characterization of process related impurities of benidipine hydrochloride, stress-testing/stability studies and HPLC/UPLC method validations. Journal of Pharmaceutical Analysis, 4, 256-268.
  • Atici, B., Yazar, Y., Agtas, C., Ridvanoglu, N., & Karlıga, B. (2017). Development and validation of stability indicating HPLC methods for related substances and assay analyses of amoxicillin and potassium clavulanate mixtures. Journal of Pharmaceutical and Biomedical Analysis, 136, 1–9.
  • Baheti, A., Kumar, L., & Bansal, A. K. (2010). Excipients used in lyophilization of small molecules. Journal of Excipients and Food Chemistry, 1, 41–54.
  • Cappola, M. L. (2000). Freeze-Drying Concepts. The Basics, in Mc- Nally EJ (ed): Protein formulation and delivery, (pp 159-199), Marcel Dekker, New York.
  • Carstensen, J. T., Osadca, M., & Rubin, S. H. (1969). Degradation mechanisms for water-soluble drugs in solid dosage forms. Journal of Pharmaceutical Sciences, 58, 549–553. • DRUGBANK website, retrieved from https://www.drugbank.ca/ drugs/DB00200.
  • Dubost, D. C., Kaufman, M. J., Zimmerman, J. A., Bogusky, M. J., Coddington, A. B., & Pitzenberger, S. M. (1996). Characterization of a solid state reaction product from a lyophilized formulation of a cyclic heptapeptide. A novel example of an excipient-induced oxidation. Pharmaceutical Research, 13, 1811–1814.
  • Edelmann, M., Chamlagain, B., Santin, M., Kariluoto, S., & Piironen, V. (2016). Stability of added and in situ-produced vitamin B12 in breadmaking. Food Chemistry, 204, 21–28.
  • El-dawy, M. A., Mabrouk, M. M., & El-Barbary, F. A. (2002). Liquid chromatographic determination of fluoxetine. Journal of Pharmaceutical and Biomedical Analysis, 3, 561–571.
  • Fatima, N., Mamatha, T., Qureshi, H. K., Anitha, N., & Rao, J. V. (2011). Drug-excipient interaction and its importance in dosage form development. Journal of Applied Pharmaceutical Science, 1(6), 66–71.
  • Frank, K. (2004). Understanding Lyophilization formulation development. Pharmaceutical Technology Lyophilization, 10–18.
  • Gressl, C., Brunsteiner, M., Davis, A., Landis, M., Pencheva, K., Scrivens G, Sluggett, G.W … Paudel, A. (2017). Drug–excipient interactions in the solid state: The role of different stress factors. Molecular Pharmaceutics, 14, 4560-4571.
  • Heathgote, J. G., Moxon, G. H., & Slifkin, M. A. (1970). Ultraviolet, visible and infrared spectroscopic studies of the interaction of hydroxocobalamin with α-amino acid and peptides. Spectrochimica Acta, 27,1391–1408.
  • Herman, B. D., Sinclair, B. D., Milton, N., & Nail, S. L. (1994). The Effect of bulking agent on the solid-state stability of freeze dried methylprednisolone sodium succinate. Pharmaceutical Research, 11, 1467–1473.
  • Hotha, K. K., Roychowdhury, S., & Subramanian, V. (2016). Drug-Excipient interactions: Case studies and overview of drug degradation pathways. American Journal of Analytical Chemistry, İ, 107–140.
  • Kennedy, D. O. (2016). B Vitamins and the brain: Mechanisms, dose and efficacy. Nutrients, 8, 2–29.
  • Kondepudi, N. (2016). Stability of vitamins in pharmaceutical preparations International Journal for Research in Applied Science & Engineering Technology, 4, 499–502.
  • Korey, D., & Schwartz, J. B. (1989). Effects of excipients on the crystallization of pharmaceutical compounds during lyophilization. Journal of Parenteral Science and Technology, 43, 80–83.
  • Liao, X., Krishnamurthy, R., & Suryanarayanan, R. (2007). Influence of processing conditions on the physical state of mannitol- implication in freeze-drying. Pharmaceutical Research, 24, 370–376.
  • Mehmood, Y., & Farooq, U. (2015). Excipients use in parenteral and lyophilized formulation development. Open Science Journal of Pharmacy and Pharmacology, 3, 19–27.
  • Mishra, A., Saini, T. R., & Maurya, V. K. (2017). Process validation of lyophilization process. World Journal of Pharmacy and Pharmaceutical Sciences, 7, 365–397.
  • Monajjemzadeh, F., Ebrahimi, F., Milani, P. Z., & Valizadeh, H. (2014). Effects of formulation variables and storage conditions on light protected vitamin B12 mixed parenteral formulations. Advanced Pharmaceutical Bulletin, 4, 329–338.
  • ICH Guidelines. (2005). Stability testing of new drug substances and products, In Proceedings of International Conference on Harmonization Topic Q1A (R2), Geneva, Switzerland, http://www. ich.org/.
  • ICH Guidelines. (2005). Validation of analytical procedures: Text and methodology, In Proceedings of International Conference on Harmonization Topic Q2 (R1), Geneva, Switzerland, http://www. ich.org/.
  • Shchavlinskii, A. N., Neiman, A. V., Lazareva, N. P., & Orlov, S.V. (1995). Analytical methods for control of cyanocobalamin quality and its stability in drug dosage forms. Pharmaceutical Chemistry Journal, 29, 51–60.
  • Schnellbaecher, A., Binder, D., Bellmaine, S., & Zimmer, A. (2019). Vitamins in cell culture media: Stability and stabilization strategies. Biotechnology and Bioengineering, 1–19.
  • Tegeli, V. S., Gajeli, G. B., Chougule, G. K., Thorat, Y. S., Shivsharan, U. S., & Kumbhar, S. T. (2011). Significance of impurity profiling: A review. International Journal of Drug Formulation and Research, 2, 174–195.
  • Vranic, E. (2004). Basic principles of drug-excipients interactions. Bosnian Journal of Basic Medical Science, 4(2), 56–58.
Toplam 30 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Eczacılık ve İlaç Bilimleri, Sağlık Kurumları Yönetimi
Bölüm Original Article
Yazarlar

Gökay Gün Bu kişi benim 0000-0002-4264-8273

İbrahim Karabacak Bu kişi benim 0000-0002-0082-3088

Müge Güleli Bu kişi benim 0000-0002-1539-3228

Şevki Kızılok Bu kişi benim 0000-0002-2072-1310

Sercan Semiz Bu kişi benim 0000-0003-1944-2004

Mahmut Özbek Bu kişi benim 0000-0002-6505-3811

Süleyman Özakın Bu kişi benim 0000-0001-9536-9852

Yayımlanma Tarihi 27 Ağustos 2020
Gönderilme Tarihi 16 Ocak 2020
Yayımlandığı Sayı Yıl 2020 Cilt: 50 Sayı: 2

Kaynak Göster

APA Gün, G., Karabacak, İ., Güleli, M., Kızılok, Ş., vd. (2020). Evaluation of excipients effects on the impurity profile of lyophilized hydroxocobalamin formulation. İstanbul Journal of Pharmacy, 50(2), 89-94.
AMA Gün G, Karabacak İ, Güleli M, Kızılok Ş, Semiz S, Özbek M, Özakın S. Evaluation of excipients effects on the impurity profile of lyophilized hydroxocobalamin formulation. iujp. Ağustos 2020;50(2):89-94.
Chicago Gün, Gökay, İbrahim Karabacak, Müge Güleli, Şevki Kızılok, Sercan Semiz, Mahmut Özbek, ve Süleyman Özakın. “Evaluation of Excipients Effects on the Impurity Profile of Lyophilized Hydroxocobalamin Formulation”. İstanbul Journal of Pharmacy 50, sy. 2 (Ağustos 2020): 89-94.
EndNote Gün G, Karabacak İ, Güleli M, Kızılok Ş, Semiz S, Özbek M, Özakın S (01 Ağustos 2020) Evaluation of excipients effects on the impurity profile of lyophilized hydroxocobalamin formulation. İstanbul Journal of Pharmacy 50 2 89–94.
IEEE G. Gün, “Evaluation of excipients effects on the impurity profile of lyophilized hydroxocobalamin formulation”, iujp, c. 50, sy. 2, ss. 89–94, 2020.
ISNAD Gün, Gökay vd. “Evaluation of Excipients Effects on the Impurity Profile of Lyophilized Hydroxocobalamin Formulation”. İstanbul Journal of Pharmacy 50/2 (Ağustos 2020), 89-94.
JAMA Gün G, Karabacak İ, Güleli M, Kızılok Ş, Semiz S, Özbek M, Özakın S. Evaluation of excipients effects on the impurity profile of lyophilized hydroxocobalamin formulation. iujp. 2020;50:89–94.
MLA Gün, Gökay vd. “Evaluation of Excipients Effects on the Impurity Profile of Lyophilized Hydroxocobalamin Formulation”. İstanbul Journal of Pharmacy, c. 50, sy. 2, 2020, ss. 89-94.
Vancouver Gün G, Karabacak İ, Güleli M, Kızılok Ş, Semiz S, Özbek M, Özakın S. Evaluation of excipients effects on the impurity profile of lyophilized hydroxocobalamin formulation. iujp. 2020;50(2):89-94.