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Derivative Spectrophotometric Methods for the Analysis and Stability Studies of Ranolazine in Bulk and Dosage Forms

Year 2022, Volume: 42 Issue: 1, 13 - 21, 01.03.2022
https://doi.org/10.52794/hujpharm.1029049

Abstract

The present study was aimed to develop simple and accurate derivative spectrophotometric methods (1D and 2D) for the assay and stability studies of Ranolazine (RAN) in bulk and dosage forms. The methods were based on differentiating the original UV spectrum of RAN solution in methanol to generate the first and second derivative spectra which were measured at 278nm and 283 nm, respectively. The developed methods were then validated as per ICH guidelines and applied for the stability studies. Beer’s law was found to be valid over the concentration range100-600µg/ml with a correlation coefficient (r) not less than 0.999. The obtained limit of detection (LOD) and limit of quantification (LOQ) reflected the sensitivity of the methods (24.0 µg/ ml and 73.0 µg/ ml, 17.8 µg/ ml and 53.6 µg/ ml, for 1D and 2D, respectively). Good results were also obtained from the assay of RAN tablets (98.6 ± 2.3%, n=3). Studying the stability behavior of RAN using the developed methods reflects its instability under alkaline conditions following the first-order kinetics. The statistical validation at a 95% confidence level proves the sensitivity, precision, accuracy, and stability-indicating properties of the developed methods.

References

  • 1. ICH harmonized tripartite guidelines, stability testing of new drug substances and products. 2003; p1-15.
  • 2. Lund W. The pharmaceutical codex. Principals and Practice of Pharmaceutics. 12th Ed. London: The pharmaceutical Press. 1994; p69, 277, 433.
  • 3. Genaro AR, Remington. The science and practice of Pharmacy, 20ted. Philadelphia: Lippincott Williams and Wilkins. 2000; p986.
  • 4. https://pubchem.ncbi.nlm.nih.gov/compound/Ranolazine
  • 5. Product Information: RANEXA(R) extended-release oral tablets, ranolazine extended-release oral tablets. CV Therapeutics Inc, Palo Alto, CA, 2007.
  • 6. Bidada JP, Gonjari ID, Raut CS, Bhutada CJ. Novel Spectrophotometric method for estimation of Ranolazine in bulk and pharmaceutical dosage form. Der PharmaChemica, 2011; 3 (2): 1-4.
  • 7. Doppa DVS, Konidala SK, Khanabhi S. Development and validation of UV spectroscopic method for the determination of ranolazine in bulk and formulation. Research Journal of Pharmacy and Technology, 2019; 12 (10): 5007-5010.
  • 8. Ganji R, Ramachandran D, Srinivas G, Gowardhane J, Rao P, Srilakshmi V. Development and Validation of Stability Indicating RP-LC Method for Estimation of Ranolazine in Bulk and Its Pharmaceutical Formulations. American Journal of Analytical Chemistry, 2012; 3: 378-384.
  • 9. Gade BR, Bandhakavi SR, Satyanarayana MV, Peddi P. Development and validation of stability indicating RP-LC method for estimation of ranalozine in bulk and its pharmaceutical formulations. Journal of Chemical and Pharmaceutical Research, 2015, 7(8):454-461.
  • 10. Khedkar AN, Veer SU, Rakh MS, Rao J R. Stability Indicating Method Development and Validation of Ranolazine Hydrochloride in Bulk and Tablet Dosage Form by HPTLC. International Journal of Pharmaceutical and Clinical Research, 2015; 7(1): 77-83.
  • 11. Sharma A, Prakash D, Singh SK. Development and validation of UV spectrophotometric method for the estimation of ranolazine in bulk drug and pharmaceutical formulation, IJCRGG, 2010; 2 (4): 1945-1948.
  • 12. Sharma T, Si SC, Gowrisankar D. Development and validation of spectrophotometric methods for determination of ranolazine hydrochloride in pharmaceutical dosage forms. Der Pharmacia Lettre, 2014; 6 (4): 420-432.
  • 13. Suresh CV, Sambasiva R, Vidya SG. Development of new visible Spectrophotometric methods for the determination of Ranolazine in pharmaceutical dosage forms. International Journal of Pharmacy and Technology, 2011; 3 (4): 3710-3714.
  • 14. Vetrichelvi S, Aruna A, Niraimathi V, Suresh AJ. Spectrophotometric estimation of ranolazine in bulk and tablet formulation. Int. J. Chem. Sci, 2009; 7(3): 1889-1892.
  • 15. Vetrichelvi S, Aruna A, Niraimathi V, Suresh AJ. Spectrophotometric estimation of ranolazine in tablet dosage form. Asian Journal of Chemistry, 2009; 21 (9): 7443-7445.
  • 16. Uttam B, Animesh G, Amlan KS, Anirbandeep B et al. Determination Of Ranolazine In Human Plasma by LC–MS/MS And Its Application In Bioequivalence Study. Journal of Pharmaceutical and Biomedical Analysis. 2008; 48:1404–1410.
  • 17. Yuan W, Xiaoyan C, Zuoming S, Yong Y, et al. Development And Validation Of A Sensitive LC–MS/MS Assay For Simultaneous Quantitation Of Ranolazine and its three metabolites In Human Plasma. Journal of Chromatography B. 2012:889-890, 10-6.
  • 18. Rodrigo AS, Thiago B, Pierina SB. Enantioselective analysis of Ranolazine And Desmethyl Ranolazine In Microsomal medium using dispersive liquid–Liquid Microextraction and LC–MS/MS. Bioanalysis. 2013; 5(2):171-83.
  • 19. Limei Z, Hao L, Yao J, Riyang P, et al. Determination of Ranolazine in Human Plasma by Liquid Chromatographic–Tandem Mass Spectrometric Assay. Journal of Chromatographic Science. 2008; 46:697-700.
  • 20. Bhongade B. Diffuse Reflectance Infrared Fourier Transform Spectroscopy (DRIFTS) Application in Pharmaceutical Analysis: Method For Quantification Of Ranolazine in Tablet Dosage Form, Vibrational Spectroscopy, 2017; 93: 52–56.
  • 21. Sreedhara RA, Mohan LA, Anima SD, Mutyala KR. Determination of Ranolazine in Tablet Formulations by High-Performance Thin-Layer Chromatography-Mass Spectrometry Using Reflectance Scanning Densitometry. Journal of Planar Chromatography. 2016; 29(3):190-194.
  • 22. Priyanka P, Shyam R, Priya P. Research on analytical methods of analysis of Ranolazine: A Review, Himalayan Journal of Health Sciences, 2020; 5 (4): 30-40.
  • 23. Miller JC, Miller JN. 2005. Statistics and chemometrics for analytical chemistry. 5th ed. London, UK. Pearson Education Limited
  • 24. Elimam MM, Shantier SW, GadkariemEA,MohamedMA. Derivative Spectrophotometric Methods for the Analysis and Stability Studies of ColistinSulphate Journal of Chemistry, 2015; Article ID 624316, 5.
  • 25. Daabees HG. Selective differential spectrophotometric methods for determination of Niclosamide and Drotaverine hydrochloride. Analytical Letters 2000; 33(4):639-56
  • 26. Shaza W. Shantier,Elrasheed A. Gadkriem, Mohamed O. Adam and Magdi A. Mohamed. Development of Stability-Indicating Methods for CefquinomeSulphate. International Journal of Biomedical Sciences, 2013; 9 (3): 161-167.
  • 27. Mohammed M. Elimam, Shaza W. Shantier, Elrasheed A. Gadkariem, Magdi A. Mohamed and Zuheir Osman. Stability Studies on Florfenicol using Developed Derivative Spectrophotometric Methods. AnnalesPharmaceutiquesFrancaises, 75: 40-44, 2017.
  • 28. Ruaa Mohamed Akode, Shaza W. Shantier, Magdi A. Mohamed and Elrasheed A. Gadkariem. Simultaneous determination and stability studies on Diaminazinediaceturate and Phenazine using developed first derivative spectrophotometry. International Journal of Analytical Chemistry, volume 2017 (2017), article ID 4269587, 6 pages.
  • 29. Sanchez F, Rojas CBO. Recent development in derivative ultra-violet/visible absorption spectrophotometry. Anal Chim Acta 2009; 635:22—44.
  • 30. Shantier SW, Gadkariem EA, Ibrahim KA. A Colorimetric method for the determination of Tobramycin, International Journal of Drug Formulation and research, 2011; 2 (4): 260-272.

Ranolazinin Yığın ve Dozaj Formlarında Analizi ve Stabilite Çalışmaları için Türev Spektrofotometrik Yöntemler

Year 2022, Volume: 42 Issue: 1, 13 - 21, 01.03.2022
https://doi.org/10.52794/hujpharm.1029049

Abstract

Bu çalışma, Ranolazine'in (RAN) yığın ve dozaj formlarında tahlil ve stabilite çalışmaları için basit ve doğru türev spektrofotometrik yöntemleri (1D ve 2D) geliştirmeyi amaçlamıştır. Yöntemler, sırasıyla 278 nm ve 283 nm'de ölçülen birinci ve ikinci türev spektrumlarını oluşturmak için metanol içindeki RAN çözeltisinin orijinal UV spektrumunun farklılaştırılmasına dayanıyordu. Geliştirilen yöntemler daha sonra ICH yönergelerine göre doğrulandı ve stabilite çalışmaları için uygulandı. Beer yasasının, 0,999'dan az olmayan bir korelasyon katsayısı (r) ile 100-600µg/ml konsantrasyon aralığında geçerli olduğu bulundu. Elde edilen saptama limiti (LOD) ve kantifikasyon limiti (LOQ), yöntemlerin duyarlılığını yansıtıyordu (sırasıyla 1D ve 2D için 24.0 µg/ml ve 73.0 µg/ml, 17.8 µg/ml ve 53.6 µg/ml). RAN tabletlerinin analizinden de iyi sonuçlar elde edildi (%98.6 ± 2.3, n=3). Geliştirilen yöntemler kullanılarak RAN'ın kararlılık davranışının incelenmesi, birinci dereceden kinetiği izleyen alkali koşullar altındaki kararsızlığını yansıtır. %95 güven düzeyindeki istatistiksel doğrulama, geliştirilen yöntemlerin duyarlılık, kesinlik, doğruluk ve kararlılık gösteren özelliklerini kanıtlar.

References

  • 1. ICH harmonized tripartite guidelines, stability testing of new drug substances and products. 2003; p1-15.
  • 2. Lund W. The pharmaceutical codex. Principals and Practice of Pharmaceutics. 12th Ed. London: The pharmaceutical Press. 1994; p69, 277, 433.
  • 3. Genaro AR, Remington. The science and practice of Pharmacy, 20ted. Philadelphia: Lippincott Williams and Wilkins. 2000; p986.
  • 4. https://pubchem.ncbi.nlm.nih.gov/compound/Ranolazine
  • 5. Product Information: RANEXA(R) extended-release oral tablets, ranolazine extended-release oral tablets. CV Therapeutics Inc, Palo Alto, CA, 2007.
  • 6. Bidada JP, Gonjari ID, Raut CS, Bhutada CJ. Novel Spectrophotometric method for estimation of Ranolazine in bulk and pharmaceutical dosage form. Der PharmaChemica, 2011; 3 (2): 1-4.
  • 7. Doppa DVS, Konidala SK, Khanabhi S. Development and validation of UV spectroscopic method for the determination of ranolazine in bulk and formulation. Research Journal of Pharmacy and Technology, 2019; 12 (10): 5007-5010.
  • 8. Ganji R, Ramachandran D, Srinivas G, Gowardhane J, Rao P, Srilakshmi V. Development and Validation of Stability Indicating RP-LC Method for Estimation of Ranolazine in Bulk and Its Pharmaceutical Formulations. American Journal of Analytical Chemistry, 2012; 3: 378-384.
  • 9. Gade BR, Bandhakavi SR, Satyanarayana MV, Peddi P. Development and validation of stability indicating RP-LC method for estimation of ranalozine in bulk and its pharmaceutical formulations. Journal of Chemical and Pharmaceutical Research, 2015, 7(8):454-461.
  • 10. Khedkar AN, Veer SU, Rakh MS, Rao J R. Stability Indicating Method Development and Validation of Ranolazine Hydrochloride in Bulk and Tablet Dosage Form by HPTLC. International Journal of Pharmaceutical and Clinical Research, 2015; 7(1): 77-83.
  • 11. Sharma A, Prakash D, Singh SK. Development and validation of UV spectrophotometric method for the estimation of ranolazine in bulk drug and pharmaceutical formulation, IJCRGG, 2010; 2 (4): 1945-1948.
  • 12. Sharma T, Si SC, Gowrisankar D. Development and validation of spectrophotometric methods for determination of ranolazine hydrochloride in pharmaceutical dosage forms. Der Pharmacia Lettre, 2014; 6 (4): 420-432.
  • 13. Suresh CV, Sambasiva R, Vidya SG. Development of new visible Spectrophotometric methods for the determination of Ranolazine in pharmaceutical dosage forms. International Journal of Pharmacy and Technology, 2011; 3 (4): 3710-3714.
  • 14. Vetrichelvi S, Aruna A, Niraimathi V, Suresh AJ. Spectrophotometric estimation of ranolazine in bulk and tablet formulation. Int. J. Chem. Sci, 2009; 7(3): 1889-1892.
  • 15. Vetrichelvi S, Aruna A, Niraimathi V, Suresh AJ. Spectrophotometric estimation of ranolazine in tablet dosage form. Asian Journal of Chemistry, 2009; 21 (9): 7443-7445.
  • 16. Uttam B, Animesh G, Amlan KS, Anirbandeep B et al. Determination Of Ranolazine In Human Plasma by LC–MS/MS And Its Application In Bioequivalence Study. Journal of Pharmaceutical and Biomedical Analysis. 2008; 48:1404–1410.
  • 17. Yuan W, Xiaoyan C, Zuoming S, Yong Y, et al. Development And Validation Of A Sensitive LC–MS/MS Assay For Simultaneous Quantitation Of Ranolazine and its three metabolites In Human Plasma. Journal of Chromatography B. 2012:889-890, 10-6.
  • 18. Rodrigo AS, Thiago B, Pierina SB. Enantioselective analysis of Ranolazine And Desmethyl Ranolazine In Microsomal medium using dispersive liquid–Liquid Microextraction and LC–MS/MS. Bioanalysis. 2013; 5(2):171-83.
  • 19. Limei Z, Hao L, Yao J, Riyang P, et al. Determination of Ranolazine in Human Plasma by Liquid Chromatographic–Tandem Mass Spectrometric Assay. Journal of Chromatographic Science. 2008; 46:697-700.
  • 20. Bhongade B. Diffuse Reflectance Infrared Fourier Transform Spectroscopy (DRIFTS) Application in Pharmaceutical Analysis: Method For Quantification Of Ranolazine in Tablet Dosage Form, Vibrational Spectroscopy, 2017; 93: 52–56.
  • 21. Sreedhara RA, Mohan LA, Anima SD, Mutyala KR. Determination of Ranolazine in Tablet Formulations by High-Performance Thin-Layer Chromatography-Mass Spectrometry Using Reflectance Scanning Densitometry. Journal of Planar Chromatography. 2016; 29(3):190-194.
  • 22. Priyanka P, Shyam R, Priya P. Research on analytical methods of analysis of Ranolazine: A Review, Himalayan Journal of Health Sciences, 2020; 5 (4): 30-40.
  • 23. Miller JC, Miller JN. 2005. Statistics and chemometrics for analytical chemistry. 5th ed. London, UK. Pearson Education Limited
  • 24. Elimam MM, Shantier SW, GadkariemEA,MohamedMA. Derivative Spectrophotometric Methods for the Analysis and Stability Studies of ColistinSulphate Journal of Chemistry, 2015; Article ID 624316, 5.
  • 25. Daabees HG. Selective differential spectrophotometric methods for determination of Niclosamide and Drotaverine hydrochloride. Analytical Letters 2000; 33(4):639-56
  • 26. Shaza W. Shantier,Elrasheed A. Gadkriem, Mohamed O. Adam and Magdi A. Mohamed. Development of Stability-Indicating Methods for CefquinomeSulphate. International Journal of Biomedical Sciences, 2013; 9 (3): 161-167.
  • 27. Mohammed M. Elimam, Shaza W. Shantier, Elrasheed A. Gadkariem, Magdi A. Mohamed and Zuheir Osman. Stability Studies on Florfenicol using Developed Derivative Spectrophotometric Methods. AnnalesPharmaceutiquesFrancaises, 75: 40-44, 2017.
  • 28. Ruaa Mohamed Akode, Shaza W. Shantier, Magdi A. Mohamed and Elrasheed A. Gadkariem. Simultaneous determination and stability studies on Diaminazinediaceturate and Phenazine using developed first derivative spectrophotometry. International Journal of Analytical Chemistry, volume 2017 (2017), article ID 4269587, 6 pages.
  • 29. Sanchez F, Rojas CBO. Recent development in derivative ultra-violet/visible absorption spectrophotometry. Anal Chim Acta 2009; 635:22—44.
  • 30. Shantier SW, Gadkariem EA, Ibrahim KA. A Colorimetric method for the determination of Tobramycin, International Journal of Drug Formulation and research, 2011; 2 (4): 260-272.
There are 30 citations in total.

Details

Primary Language English
Subjects Pharmacology and Pharmaceutical Sciences
Journal Section Research Articles
Authors

Noon Kmail This is me

Shaza Shantier

Elrasheed Gadkariem

Publication Date March 1, 2022
Acceptance Date January 29, 2022
Published in Issue Year 2022 Volume: 42 Issue: 1

Cite

Vancouver Kmail N, Shantier S, Gadkariem E. Derivative Spectrophotometric Methods for the Analysis and Stability Studies of Ranolazine in Bulk and Dosage Forms. HUJPHARM. 2022;42(1):13-21.