Fourth Derivative and Compensated Area under the Curve Spectrophotometric Methods Used for Analysis Meloxicam in the Local Market Tablet

Authors

  • Ruba Fahmi Abbas Department of Chemistry, Collage of Science, Mustansiriyah University, IRAQ.
  • Neda Ibrahim Mahdi Department of Chemistry, Collage of Science, Mustansiriyah University, IRAQ.
  • Ali Amer Waheb Amer Waheb Department of Chemistry, Collage of Science, Mustansiriyah University, IRAQ.
  • Amjad Gali Aliwi Gali Aliwi Department of Chemistry, Collage of Science, Mustansiriyah University, IRAQ.
  • Marwa S. Falih Department of Chemistry, Collage of Science, Mustansiriyah University, IRAQ.

DOI:

https://doi.org/10.23851/mjs.v29i3.624

Keywords:

meloxicam, D4, CAUC, spectrophotometric, Mann-Whitney test

Abstract

Two Rapid, direct, ecological friendly and economical spectrophotometric methods were used for estimation of meloxicam in the market Tablet dosage form. The First method is based on the use the fourth order derivative spectrum (D4) and the second method is depend-ed on the ratio of the area under the curve for the two peaks in the drug (Compensated area under the curve). The linear calibration graphs of the two methods were measured in the con-centration range (5-35)mg/l and the average of recoveries for local market Tablet (AWA)® were 99.8% for D4 method and 100.2% for CAUC method which indicating a good accuracy and precision for these methods. In this study, the results obtained by these suggested meth-ods have been successfully statistically compared by t-test and Mann-Whitney test showed a good agreement.

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References

L. D. Simionato, L. Petrone, M. Baldut, S. L. Bonafede and A. Segall. 2018. Com-parison between the dissolution profiles of nine meloxicam Tablet brands com-mercially available in Buenos Aires, Ar-gentina, Saudi Pharmaceutical Journal, 26(2): 578-584.

C. E., Croitoru, F. Ibolya and M. Dan-iela-Lucia.2014. Development of a HPLC-UV method for determination of meloxicam in human plasma and pharma-ceutical dosage forms, Acta Medica Marisiensis, 60(4):142-145

Q. Yu, X.Wu, Q. Zhu, W. Wu, Z. Chen, Y. Li and Y. Lu. 2017. Enhanced trans-dermal delivery of meloxicam by nano-crystals: Preparation, in vitro and in vivo evaluation, Asian journal of pharmaceuti-cal sciences, 12(6):1-9.

Q. Songa, C. Shena, B. Shena, , W. Lia-na, X. Liua, B. Daia and H. Yuana. 2018. Development of a fast dissolving sublin-gual film containing meloxicam nanocrys-tals for enhanced dissolution and earlier absorption, Journal of Drug Delivery Sci-ence and Technology, 43: 243–252.

R. K. Saha. 2016. Spectrophotometric Micro determination of Silver(I) using Meloxicam as a New Analytical Reagent, Oriental Journal of chemistry, 32 (1): 499-507

K.Mohammed and R. K. Saha. 2014. The Use of Meloxicam A Green Analytical Reagent in the Presence of Triton X-100 for Spectrophotometric Micro Determina-tion of Vanadium(III) in Real Samples, Int. J. Res. Chem. Environ., 4 (3 ): 71-77

H. Liu, L. Zhang, Y.Hao, Q.Wang, P. He and Y. Fang, 2005. Flow-injection chemi-luminescence determination of meloxi-cam by oxidation with N-bromosuccinimide, Analytica Chimica Acta, 541: 187–192

Y. Yuan, X. Chen and D. Zhong. 2002. Determination of meloxicam in human plasma by liquid chromatography–tandem mass spectrometry following transdermal administration, Journal of Chromatography B, 852: 650–654

S. Altıno, E.Nemutlu and S. Kır. 2002. Polarographic behaviour of meloxicam and its determination in Tablet prepara-tions and spiked plasma, Il Farmaco, 57: 463–468

M. Garc´ıa, C.Pedren˜o, M. Albero and J. Mart. 2000. Spectrophotometric methods for determining meloxicam in pharmaceu-ticals using batch and flow-injection pro-cedures, European Journal of Pharmaceu-tical Sciences, 9: 311–316

I. AL-Momani. 2006. Indirect Flow-Injection Spectrophotometric Determina-tion of Meloxicam, Tenoxicam and Pirox-icam in Pharmaceutical Formulations, an-alytical sciences December, 22: 1611- 1614.

E. M. Hassan. 2002. Spectrophotometric and fluorimetric methods for the deter-mination of meloxicam in dosage forms, Journal of Pharmaceutical and Biomedi-cal Analysis, 27: 771–777

Pomykalski and H. Hopka. 2011. Com-pration of classic and Derivative UV Spectrophotometric method quantifica-tion of meloxicam and mefenamic acid in pharmaceutical preparations, Acta Polo-niae Pharmaceutican Drug Research, 68 ( 3 ): 317- 323.

S. Kus, Z. Marczenko and N. Obarski. 1996. Derivative UV-VIS Spectropho-tometry in Analytical Chemistry, Chern. Anal. (Warsaw), 41: 899-927.

Malik, S. Bansal and J. Aulakh. 2003. Fourth-derivative spectrophotometric de-termination of fungicide ferbam (iron(III) di methyl dithiocarbamate) in a commer-cial sample and wheat grains using 2,2′-bipyridyl, Anal Bioanal Chem 375 : 1250–1253

H. Lotfy, S. Saleh , N. Hassan and H. Salem. 2015. Computation of geometric representation of novel spectrophotomet-ric methods used for the analysis of mi-nor components in pharmaceutical prepa-rations, Spectrochimica Acta Part A: Mo-lecular and Biomolecular Spectroscopy, 151: 628–643

H. Lotfy and S. Saleh. 2016. Recent De-velopment in ultraviolet spectrophotome-try through the last decade (2006–2016): a review, International Journal of Phar-macy and Pharmaceutical Sciences, 8(10): 40-56.

R. Al beea, H. Abbas, R. Taqi, D.Abdulabbas and M.. Abed. 2017. Es-timation of the Folic Acid Using Zero Order, Area Under Curve and First De-rivative Spectrophotometric Methods in Pure and Marketed Tablet Formulations, Journal of Al-Nahrain University Science, 20 (3): 34-41

E. Taha, E. El- Zanfally and N. Salama. 2003. Ratio Derivative Spectrophotomet-ric Method for the Determination of Some Oxicams in Presence of their Alka-line Degradation Products, Scientia Pharmaceutica, 71: 303-320.

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Key Dates

Published

10-03-2019

How to Cite

[1]
R. F. Abbas, N. I. Mahdi, A. A. W. Amer Waheb, A. G. A. G. Aliwi, and M. S. Falih, “Fourth Derivative and Compensated Area under the Curve Spectrophotometric Methods Used for Analysis Meloxicam in the Local Market Tablet”, Al-Mustansiriyah Journal of Science, vol. 29, no. 3, pp. 70–76, Mar. 2019, doi: 10.23851/mjs.v29i3.624.

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