Development of a Sensitive Spectrophotometric Determination of Methyldopa Drug
DOI:
https://doi.org/10.24237/ASJ.01.04.677BKeywords:
Methyldopa 4-amino pyridine, N-Bromo succinimide and Sodium hydroxideAbstract
A sensitive spectrophotometric approach for measuring methyldopa (MDP) in both its pure and pharmaceutical forms was recommended by the study. The suggested method relies on combining MDP with 4-aminopyridine with N- Bromosuccinimide and sodium hydroxide are present to produce a colorful product. The conditions were improved and factors affecting the reaction yield were investigated. By measuring its absorbance at 445 nm, the colored product was tracked spectrophotometrically. In the concentration ranges of 1.0 to 70.0 µg.mL-1, the plot was linear. The approach that was developed was effectively utilized in the process of determining the amount of MDP present in its pharmaceutical form.
References
Indian Pharmacopoeia , published by the controller of publications , Delhi, on behalf of Government of India , Ministry of health and family welfare , 1996, 1 , 274 , 477 .
F. T. Fraunfelder, F. W. Fraunfelder, Drug - induced ocular side effects, 5th ed., (Butterworth - Heinemann , Boston, 2001) , 36 , 314
S. Laurent, Pharmacological research, 124, 116-125(2017)
J. L. LeóN‐Romo, C. I. Virues, J. Aviña, I. Regla, E. Juaristi, Chirality, 14(2‐3), 144-150(2002)
G. Bahrami, A. Kiani, S. Mirzaeei, Journal of Chromatography B, 832(2), 197-201(2006)
M. A. AL-Da'amy, R. F. AL-Moswi, kerbala journal of pharmaceutical sciences, (6), (2013)
M. E. Rani, Spectrophotometric determination of methyldopa in pharmaceuticals dosage forms by bromination method, 20(32),24-27(2013)
J. R. Watson, R. C. Lawrence, Journal of Chromatography A, 103(1), 63-70(1975)
A. A. Al-Majed, A. H. Bakheit, H. A. A. Aziz, F. M. Alajmi, H. AlRabiah, Propranolol. In Profiles of drug substances, excipients and related methodology, (Vol. 42, Academic Press, 2017), 287-338
A. H. Mohammed, N. A. Numan, G. F. Al-Temimi, N. N. Al-Shawi, H. A. Fawzi, International Journal of Research in Pharmaceutical Sciences, 10(1),444- 452(2019)
Z. Talebpour, S. Haghgoo, M. Shamsipur, Analytica chimica acta, 506(1), 97-104(2004)
K. Günther, P. Richter, K. Möller, Chiral Separations,12(2) 29-59(2004)
H. Beitollahi, S. Tajik, M. H. Asadi, P. Biparva, Journal of Analytical Science and Technology, 5(1), 1-9(2014)
A. A. Ensafi, B. Saeid, B. Rezaei, A. R. Allafchian, Ionics, 21(5), 1435-1444(2015)
E. A. Gadkariem, K. E. E. Ibrahim, N. A. A. Kamil, M. E. M. Haga, H. A. El-Obeid, Saudi pharmaceutical journal, 17(4), 289-293(2009)
K. Upadhyay, A. Asthana, R. K. Tamrakar, Research on Chemical Intermediates, 41(8), 5521-5528(2015)
Q. N. Rashid, M. H. Bakir, S. O. Baban, Tikrit Journal of Pharmaceutical Sciences, 11(1), 67-77(2016)
A. I. Shihab, N. T. Al-Sabha, Pak. J. Anal. Environ. Chem, 21(1), 10-18(2020)
O. E. Thomas, A. K. Mustapha, Nigerian Journal of Pharmaceutical Research, 11(1), 147-153(2015)
K. Sharma, S. P. Sharma, S. C. Lahiri, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 92, 212-224(2012)
J. J. Berzas Nevado, J. M. Lemus Gallego, P. Buitrago Laguna, Fresenius' journal of analytical chemistry, 353(2), 221-223(1995)
P. R. S. Ribeiro, J. G. Neto, L. Pezza, H. R. Pezza, Talanta, 67(1), 240-244(2005)
J. Upan, S. Themsirimongkon, S. Saipanya, J. Jakmunee, Chiang Mai J. Sci., 46, 537-546(2019)
P. R. D. S. Ribeiro, R. M. Duarte, Brazilian Journal of Pharmaceutical Sciences, 50, 573-582(2014)
Q. N. Rashid, M. H. Bakir, S. O. Baban, Tikrit Journal of Pharmaceutical Sciences, 11(1), 67-77(2016)
H. D. Revanasiddappa, H. N. Deepakumari, S. M. Mallegowda and K. B. Vinay, Analele Universitatii Bucuresti, Chimie, 20(2), 189-196(2011)
M. S. Sudhir, R. V. Nadh Oriental Journal of Chemistry, 29(4), 1507-1514(2014)
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2023 CC BY 4.0
This work is licensed under a Creative Commons Attribution 4.0 International License.