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Electrochemical Determination of Dapoxetine HCl in Biological Fluids Using Coated Wire Electrod
Amani Salim Alturiqi
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DOI:10.17265/1934-7375/2016.06.004
Coated wire sensor for potentiometric determination of DAP (dapoxetine HCl) in pure form and in biological fluids based
on DAP-TPB (dapoxetine-tetraphenyl borate) as the sensing element in the presence of DOP (dioctylphthalate) as the plasticizing solvent mediator was prepared. The best performance was obtained with a membrane composition of 10.0% (w/w) ion-pair, 45.0%-1) for the DOP (w/w) and 45.0% PVC (w/w). The electrode showed a Nernstian response (with a slope of 58.70 mV decade52 concentration range of 4.2 !á 1 -1.0 !á 1 mol/L. It illustrates a relatively fast response time in the whole concentration range (~15s) in a pH range of 3.0-7.5 . The selectivity coefficients were determined in relation to several inorganic and organic species. DAP is determined successfully in pure solutions and in biological fluids using the standard additions and potentiometric titrations methods.
DAP , coated wire electrode, biological fluids.
[1] Dresser, M. J., Kang, D., Staehr, P., Gidwani, S., Guo, C., and Mulhall, J. P. 2006. “Pharmacokinetics of Dapoxetine, a New Treatment for Premature Ejaculation: Impact of Age and Effects of a High-Fat Meal.”J. Clin. Pharmacol. 46: 1023-9.
[2] Kashyap, R., Srinivasa, U., and Badodaria, K. 2014. “First Order Derivative and Dual Wavelength Spectrophotometry Methods Development and Validation for Simultaneous Estimation of Avanafil and Dapoxetine Hydrochloride in Bulk and Dosage Form.” Int. J. Pharm. Tech. 6 (1): 6418-38.
[3] Chabukswar, A. P., Kuchekar, B. S., Patil, S. L., Moon, S. A., Chate, S. G., and Pagare, B. D. 2012. “Spectrophotometric Simultaneous Determination of Dapoxetine and Sildenafil in Combined Tablet Dosage form by Absorbance Corrected Method.” J. Der Pharma Chemica 4 (4): 1404-7.
[4] Nataraj, K. S., Reddy, K. K., Kumar, D. K., and Kumar, S. S. 2011. “Simple Validated UV-spectrophotometric Method for Estimation of Dapoxetine.” J. Chem. Pharm. Sci. 4 (3): 105-7.
[5] Patil, R. B., Deshmukh, T. A., and Patil, V. R. 2014. “Stability Indicating HPLC Method for Dapoxetine Hydrochloride in Bulk and in Formulation.” J. Int. Pharm. Pharm. Sci. 6 (5): 687-90.
[6] Kashid, A. M., Waghmare, S. A., Thombare, S. D., Agalawe, M. S., and Dhawale, S. C. 2014. “Development and Validation of a HPLC Analytical Assay Method for Dapoxetine Tablets: A Medicine for Premature Ejaculation.” J. Chem. Pharm. Res. 6 (7): 1613-8.
[7] Soliman, S. M., El-Agizy, H. M. Y., and Bayoumi, A. 2014. “Derivative Synchronous Fluorescence Spectroscopy for the Simultaneous Determination of Dapoxetine Hydrochloride and Vardenafil in Binary Mixtures.” J. Appl. Spectrosc. 81 (3): 509-18.
[8] Chapla, B., Amin, G., Pandya, A., Kakadiya, J., and Shah, N. 2012. “Simultaneous Estimation and Validation of Vardenafil and Dapoxetine Hydrochloride in Pharmaceutical Formulation by Thin Layer Chromatographic Densitometric Method.” Int. Res. J. Pharm. 3 (5): 480-3.
[9] Ibrahim, H., Issa, Y. M., and Abu-Shawish, H. M. 2007. “Improving the Detection Limits of Antispasmodic Drugs Electrodes by Using Modified Membrane Sensors with Inner Solid Contact.” J. Pharm. Biomed. Anal. 44: 8-15.
[10] Issa, Y. M., Abdel-Ghani, N. T., Shoukry, A. F., and Ahmed, H. M. 2005. “New Conventionalcoated-wire Ion-selective Electrodes for Flow-Injection Potentiometric Determination of Chlordiazepoxide.” Anal. Sci. 21: 1037-42.
[11] Badawy, S. S., Shoukry, A. F., and Issa, Y. M. 1986. “Ion-Selective Electrode for the Determination of Metoclopramide.” Analyst 111: 1363-5.
[12] Abdel-Ghani, N. T., Shoukry, A. F., and El-Nashar, R. M. 2001. “Flow Injection Potentiometric Determination of Pipazethate Hydrochloride.” Analyst 126: 79-85.