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Potensiyometrik PVC-membran ve grafit kaplı tel elektrot yöntemiyle haloperidol’ün ampulde ve idrarda miktar tayini

Year 2017, Volume: 21 Issue: 1, 110 - 120, 20.09.2016
https://doi.org/10.12991/marupj.259888

Abstract

Sensör P olarak isimlendirilen
yeni bir PVC membran ve sensör  G olarak
isimlendirilen grafit kaplı tel Haloperidol’ün (HP)  analizi için tanımlanmıştır. Elektrotlar P ve
G için sırasıyla;  Nernst denklemine göre
en yüksek tepe noktası her onlu grup  için
3.7×10-6–1.0×10-2 mol/L -5.8 x 10-7 – 1.0 x 10-2 mol/L derişim  aralığında 57.4±0.8 and 61.1±0.4 mV;
deteksiyon alt sınırı  (LO D) ise pH
aralığı 2.5–7.5 and 2.5-8.0 için 1.6 × 10-6 mol/L  ve 4.2×10-7 mol/L olarak bulunmuştur.
Tanımlanan sensörler  HP’ün diğer gişim
yapan bileşiklerden ayrılabilmesi için yüksek 
seçicilik göstermiştir. Bahsi geçen elektrotların kullanılmasıyla  HP’ün ampül dozaj formundan ve idrar
örneklerinden analizinin  başarıyla yapılabileceği
gösterilmiştir.  

References

  • - R. N. Stradiotto, H. Yamanaka, B. V. M. Zanoni, J. Braz. Chem. Soc., 14 (2003)159-173
  • - E. G. Kulapina, O. V. Barinova, Pharm Chem J. 31 (1997) 667-672.
  • - H. M. Abu Shawish, K. I. Abed Almonem, S. M. Saadeh, W. S. Al-lham, Measurement 78 (2016) 180–186
  • - A.F. Khorshida, Y.M. Issa, Biosens Bioelectron,51 (2014) 143–149
  • - G. Singh, S. Rani, Journal of Advanced Electrochemistry (JAEC ), 2 (2016) 42–44
  • - B. Singhal, World Journal of Chemistry, 6 (2011) 59-74
  • - D. W. Kimmel, G. LeBlanc. M. E. Meschievitz, D. E. Cliffel, Anal Chem. 84 (2012) 685–707
  • - A. Radu, A.J. Meir, E. Bakker, Anal. Chem., 76 (2004) 6402
  • - S. Mathison, E. Bakker, Anal. Chem., 70 (1998) 303.
  • - N. Rubinova, K. C. Torres, E. Bakker, Sens. Actuators B, 121 (2007) 135.
  • - A. Ceresa, E. Bakker, B. Hattendorf, D. Gunther, E. Pretsch. Anal. Chem. 72 (2001) 343.
  • - E. Pretsch.TrAC, 26 (2007) 46.
  • - E. Lindner, R.E. Gyurcsányi, J. Solid State Electrochem., 13 (2009) 51–68.
  • - J. Hu, A. Stein, P. Bühlmann, TrAC 76 (2016) 102–114
  • - A. J. Giannini, N. A. Underwood, M. Condon, Am. J. Ther. 7 (2000) 389–392
  • - A. K. Dorph-Petersen, N. J. Pierri, M. J. Perel, Z. Sun, R. A. Sampson, A. D. Lewis, Neuropsychopharmacology, 30 (2005) 1649–61.
  • - S. Wu, W. Ko, H. Wu, S. Chen, J. Chromatogr. A, 846 (1999) 239-243.
  • - P. J. A. W. Demoen, J. Pharm. Sci., 50 (1961) 350–353.
  • - M. Kurzawa, A. Kowalczyk-Marzec, E. Szlyk, Chemia analityczna, 49 (2004) 91–99.
  • - M. Yasir, U. V. S. Sara. Br. J. Pharm. Res., 4 (2014) 1407-1415
  • - British Pharmacopoeia (BP), vol. II, Her Majesty’s Stationery Office, London, 1993.
  • - S. Ouanas, M. Kallel, H. Trabelsi, F. Safta, K. Bouzoouita, J. Pharm. Biomed. Anal.,17 (1998) 361-364.
  • - E. Bawelcsyk, Z. Plotkowiak, Chemical Analysis. (Warsaw), 17 (1972) 111-119.
  • - C. A. Janicki, H. R. A. Jr, J. Pharm. Sci., 63 (1974) 41–43.
  • - M Shamsipur, L. Dastgerdi, Z. Talebpour, S. Haghgoo, J. Pharm. Biomed. Anal, 43 (2007) 1116-1121.
  • - J. Krzek, A. Maslanka, Acta Poloniae Pharmaceutica-Drug Research, 57 (2000) 23-26.
  • - I. A. Zingales, J. Chromatogr. A, 54 (1971) 15–24.
  • - T. Fujii, K. Hatanaka, G. Sato, Y. Yasui, H. Arimoto, Y. Mitsutsuka, J. Chromatogr. B, 687 (1996) 395-403.
  • - H. Bagheri, A. Afkhami, Y. Panahi, H. Khoshsafar, A. Shirzadmehr. Mater. Sci. Eng. C 37 (2014) 264–270
  • - L.B. Nilsson, J. Chromatogr. B, 431 (1988) 113–122.
  • - D. R. Abernethy, D. J. Greenblatt, H. R. Ochs, C. R. Willis, D. D.Miller, R. I. Shader, J. Chromatogr. B, 307 (1984) 194–199.
  • - G. Bianchetti, P. L. Morselli, J. Chromatogr. A, 153 (1978) 203-209.
  • - T. Arinobu , H. Hattori , M. Iwai , A. Ishii , T. Kumazawa, O. Suzuki , H. Seno, J. Chromatogr. B, 776 (2002) 107–113
  • - K. Titier, S. Bouchet, F. Pehourcq, N. Moore, M. Molimard, J. Chromatogr. B,
  • (2003) 179-185.
  • - H. Ebrahimzadeh, Z. Dehghani, A. A. Asgharinezhad, N. Shekari,K. Molaei, Int. J. Pharm. 453 (2013) 601– 609
  • - K.H. Park, M.H. Lee, M.G. Lee, J. Chromatogr. B, 572 )1991( 259-267.
  • - N. Yasui-Furukori, Y. Inoue, M. Chiba, T. Tateishi, J. Chromatogr. B, 805(2004) 175-180.
  • - R. Driouich, T. Takayanagi, M. Oshima, S. Motomizu, J. Chromatogr. A, 903 (2000) 271-278.
  • - H.S. El-Desoky, M.M. Ghoneim, , J. Pharm. Biomed. Anal,38 (2005) 543-550.
  • - H. M. Abu Shawish, A. M. Khedr, K. I. Abed-Almonem, M. Gaber, Talanta 101 (2012) 211–219
  • - K. Vytras, J. Kalous, J. Jezkova, Anal. Chem. 6 (1997) 107
  • - H. M. Abu Shawish, S. M. Saadeh, H. Tamos, K. I. Abed-Almonem, o. Al khalili, Analytical Chemistry Research 2 (2014) 30–36
  • - E. Lindner, Y. Umezawa, Pure Appl. Chem. 80 (2008) 85–104
  • - E. Bakker, E. Pretsch, P. Buhlmann, Anal. Chem.72 (2000) 1127-1133
  • - A. Ceresa (2001) Ion-selective polymeric membrane electrodes for potentiometric trace level measurements, Swiss Federal Institute of Technology, Zurich
  • - P. R. Buck, E. Lindner, Pure Appl. Chem. 66 (1994) 2527–2536.
  • - Z. H. Ibupoto, K. Khun, M. Willander, Sensors 13 (2013) 1984-1997
  • - C. H. Agarwal, C. K. Singh, Anal. Sci. 23 (2007) 469

Determination of haloperidol drug in ampoules and in urine samples using a potentiometric PVC-membrane and graphite coated wire electrodes

Year 2017, Volume: 21 Issue: 1, 110 - 120, 20.09.2016
https://doi.org/10.12991/marupj.259888

Abstract

A new PVC membrane, called sensor P, and graphite coated wire, called sensor g,  for haloperidol drug (HP) are described. The electrodes P and C exhibit a Nernstian slope of 57.4±0.8 and 61.1±0.4 mV per decade over a wide concentration range from 3.7×10-6–1.0×10-2 mol/L and 5.8 x 10-7 – 1.0 x 10-2 mol/L and the limit of detection (LOD) of 1.6 × 10-6 mol/L and 4.2×10-7 mol/L over the pH range of  2.5–7.5 and 2.5-8.0 respectively. The presented sensors  show a very good selectivity for HP drug over the common interfering chemical species. The proposed electrodes were successfully used for determination of HP drug in ampoules and in urine samples with satisfactory results.

References

  • - R. N. Stradiotto, H. Yamanaka, B. V. M. Zanoni, J. Braz. Chem. Soc., 14 (2003)159-173
  • - E. G. Kulapina, O. V. Barinova, Pharm Chem J. 31 (1997) 667-672.
  • - H. M. Abu Shawish, K. I. Abed Almonem, S. M. Saadeh, W. S. Al-lham, Measurement 78 (2016) 180–186
  • - A.F. Khorshida, Y.M. Issa, Biosens Bioelectron,51 (2014) 143–149
  • - G. Singh, S. Rani, Journal of Advanced Electrochemistry (JAEC ), 2 (2016) 42–44
  • - B. Singhal, World Journal of Chemistry, 6 (2011) 59-74
  • - D. W. Kimmel, G. LeBlanc. M. E. Meschievitz, D. E. Cliffel, Anal Chem. 84 (2012) 685–707
  • - A. Radu, A.J. Meir, E. Bakker, Anal. Chem., 76 (2004) 6402
  • - S. Mathison, E. Bakker, Anal. Chem., 70 (1998) 303.
  • - N. Rubinova, K. C. Torres, E. Bakker, Sens. Actuators B, 121 (2007) 135.
  • - A. Ceresa, E. Bakker, B. Hattendorf, D. Gunther, E. Pretsch. Anal. Chem. 72 (2001) 343.
  • - E. Pretsch.TrAC, 26 (2007) 46.
  • - E. Lindner, R.E. Gyurcsányi, J. Solid State Electrochem., 13 (2009) 51–68.
  • - J. Hu, A. Stein, P. Bühlmann, TrAC 76 (2016) 102–114
  • - A. J. Giannini, N. A. Underwood, M. Condon, Am. J. Ther. 7 (2000) 389–392
  • - A. K. Dorph-Petersen, N. J. Pierri, M. J. Perel, Z. Sun, R. A. Sampson, A. D. Lewis, Neuropsychopharmacology, 30 (2005) 1649–61.
  • - S. Wu, W. Ko, H. Wu, S. Chen, J. Chromatogr. A, 846 (1999) 239-243.
  • - P. J. A. W. Demoen, J. Pharm. Sci., 50 (1961) 350–353.
  • - M. Kurzawa, A. Kowalczyk-Marzec, E. Szlyk, Chemia analityczna, 49 (2004) 91–99.
  • - M. Yasir, U. V. S. Sara. Br. J. Pharm. Res., 4 (2014) 1407-1415
  • - British Pharmacopoeia (BP), vol. II, Her Majesty’s Stationery Office, London, 1993.
  • - S. Ouanas, M. Kallel, H. Trabelsi, F. Safta, K. Bouzoouita, J. Pharm. Biomed. Anal.,17 (1998) 361-364.
  • - E. Bawelcsyk, Z. Plotkowiak, Chemical Analysis. (Warsaw), 17 (1972) 111-119.
  • - C. A. Janicki, H. R. A. Jr, J. Pharm. Sci., 63 (1974) 41–43.
  • - M Shamsipur, L. Dastgerdi, Z. Talebpour, S. Haghgoo, J. Pharm. Biomed. Anal, 43 (2007) 1116-1121.
  • - J. Krzek, A. Maslanka, Acta Poloniae Pharmaceutica-Drug Research, 57 (2000) 23-26.
  • - I. A. Zingales, J. Chromatogr. A, 54 (1971) 15–24.
  • - T. Fujii, K. Hatanaka, G. Sato, Y. Yasui, H. Arimoto, Y. Mitsutsuka, J. Chromatogr. B, 687 (1996) 395-403.
  • - H. Bagheri, A. Afkhami, Y. Panahi, H. Khoshsafar, A. Shirzadmehr. Mater. Sci. Eng. C 37 (2014) 264–270
  • - L.B. Nilsson, J. Chromatogr. B, 431 (1988) 113–122.
  • - D. R. Abernethy, D. J. Greenblatt, H. R. Ochs, C. R. Willis, D. D.Miller, R. I. Shader, J. Chromatogr. B, 307 (1984) 194–199.
  • - G. Bianchetti, P. L. Morselli, J. Chromatogr. A, 153 (1978) 203-209.
  • - T. Arinobu , H. Hattori , M. Iwai , A. Ishii , T. Kumazawa, O. Suzuki , H. Seno, J. Chromatogr. B, 776 (2002) 107–113
  • - K. Titier, S. Bouchet, F. Pehourcq, N. Moore, M. Molimard, J. Chromatogr. B,
  • (2003) 179-185.
  • - H. Ebrahimzadeh, Z. Dehghani, A. A. Asgharinezhad, N. Shekari,K. Molaei, Int. J. Pharm. 453 (2013) 601– 609
  • - K.H. Park, M.H. Lee, M.G. Lee, J. Chromatogr. B, 572 )1991( 259-267.
  • - N. Yasui-Furukori, Y. Inoue, M. Chiba, T. Tateishi, J. Chromatogr. B, 805(2004) 175-180.
  • - R. Driouich, T. Takayanagi, M. Oshima, S. Motomizu, J. Chromatogr. A, 903 (2000) 271-278.
  • - H.S. El-Desoky, M.M. Ghoneim, , J. Pharm. Biomed. Anal,38 (2005) 543-550.
  • - H. M. Abu Shawish, A. M. Khedr, K. I. Abed-Almonem, M. Gaber, Talanta 101 (2012) 211–219
  • - K. Vytras, J. Kalous, J. Jezkova, Anal. Chem. 6 (1997) 107
  • - H. M. Abu Shawish, S. M. Saadeh, H. Tamos, K. I. Abed-Almonem, o. Al khalili, Analytical Chemistry Research 2 (2014) 30–36
  • - E. Lindner, Y. Umezawa, Pure Appl. Chem. 80 (2008) 85–104
  • - E. Bakker, E. Pretsch, P. Buhlmann, Anal. Chem.72 (2000) 1127-1133
  • - A. Ceresa (2001) Ion-selective polymeric membrane electrodes for potentiometric trace level measurements, Swiss Federal Institute of Technology, Zurich
  • - P. R. Buck, E. Lindner, Pure Appl. Chem. 66 (1994) 2527–2536.
  • - Z. H. Ibupoto, K. Khun, M. Willander, Sensors 13 (2013) 1984-1997
  • - C. H. Agarwal, C. K. Singh, Anal. Sci. 23 (2007) 469
There are 49 citations in total.

Details

Subjects Health Care Administration
Journal Section Articles
Authors

Hazem Abu Shawish This is me

Hassan Tamous This is me

Asma A. Shaheen This is me

Khaled I. Abed Almonem This is me

Ahmed Awad Elgamel This is me

Wael S. Al-lham This is me

Publication Date September 20, 2016
Published in Issue Year 2017 Volume: 21 Issue: 1

Cite

APA Abu Shawish, H., Tamous, H., Shaheen, A. A., Almonem, K. I. A., et al. (2016). Determination of haloperidol drug in ampoules and in urine samples using a potentiometric PVC-membrane and graphite coated wire electrodes. Marmara Pharmaceutical Journal, 21(1), 110-120. https://doi.org/10.12991/marupj.259888
AMA Abu Shawish H, Tamous H, Shaheen AA, Almonem KIA, Elgamel AA, Al-lham WS. Determination of haloperidol drug in ampoules and in urine samples using a potentiometric PVC-membrane and graphite coated wire electrodes. J Res Pharm. September 2016;21(1):110-120. doi:10.12991/marupj.259888
Chicago Abu Shawish, Hazem, Hassan Tamous, Asma A. Shaheen, Khaled I. Abed Almonem, Ahmed Awad Elgamel, and Wael S. Al-lham. “Determination of Haloperidol Drug in Ampoules and in Urine Samples Using a Potentiometric PVC-Membrane and Graphite Coated Wire Electrodes”. Marmara Pharmaceutical Journal 21, no. 1 (September 2016): 110-20. https://doi.org/10.12991/marupj.259888.
EndNote Abu Shawish H, Tamous H, Shaheen AA, Almonem KIA, Elgamel AA, Al-lham WS (September 1, 2016) Determination of haloperidol drug in ampoules and in urine samples using a potentiometric PVC-membrane and graphite coated wire electrodes. Marmara Pharmaceutical Journal 21 1 110–120.
IEEE H. Abu Shawish, H. Tamous, A. A. Shaheen, K. I. A. Almonem, A. A. Elgamel, and W. S. Al-lham, “Determination of haloperidol drug in ampoules and in urine samples using a potentiometric PVC-membrane and graphite coated wire electrodes”, J Res Pharm, vol. 21, no. 1, pp. 110–120, 2016, doi: 10.12991/marupj.259888.
ISNAD Abu Shawish, Hazem et al. “Determination of Haloperidol Drug in Ampoules and in Urine Samples Using a Potentiometric PVC-Membrane and Graphite Coated Wire Electrodes”. Marmara Pharmaceutical Journal 21/1 (September 2016), 110-120. https://doi.org/10.12991/marupj.259888.
JAMA Abu Shawish H, Tamous H, Shaheen AA, Almonem KIA, Elgamel AA, Al-lham WS. Determination of haloperidol drug in ampoules and in urine samples using a potentiometric PVC-membrane and graphite coated wire electrodes. J Res Pharm. 2016;21:110–120.
MLA Abu Shawish, Hazem et al. “Determination of Haloperidol Drug in Ampoules and in Urine Samples Using a Potentiometric PVC-Membrane and Graphite Coated Wire Electrodes”. Marmara Pharmaceutical Journal, vol. 21, no. 1, 2016, pp. 110-2, doi:10.12991/marupj.259888.
Vancouver Abu Shawish H, Tamous H, Shaheen AA, Almonem KIA, Elgamel AA, Al-lham WS. Determination of haloperidol drug in ampoules and in urine samples using a potentiometric PVC-membrane and graphite coated wire electrodes. J Res Pharm. 2016;21(1):110-2.

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