Determination of Doxorubicin in Urine Samples using Syringe to Syringe Dispersive Liquid-Phase Microextraction through Fluorescence Spectrometry
Subject Areas : PolymerOzra Alimohammadi 1 , Majid Ramezani 2 , Mohammad Alimoradi 3
1 - Department of Chemistry, Faculty of Science, Arak Branch, Islamic Azad University, Arak, Iran.
2 - Department of Chemistry, Faculty of Science, Arak Branch, Islamic Azad University, Arak, Iran.
3 - Department of Chemistry, Faculty of Science, Arak Branch, Islamic Azad University, Arak, Iran.
Keywords: Doxorubicin, Syringe to syringe dispersive liquid-phase microextraction, Fluorescence spectrometry, Urine sample,
Abstract :
[1]. S. Shah, A. Chandra, A. Kaur, N. Sabnis, A. Lacko, Z. Gryczynski, R. Fudala, I. Gryczynski, J.
Photochem. Photobiol. B., 170, 65 (2017).
[2]. M. Ahmadi, T. Madrakian, A. Afkhami, New J. Chem., 39, 163 (2015).
[3]. E. Tasca, A. Del Giudice, L. Galantini, K. Schillén, A.M. Giuliani, M. Giustini, J. Colloid
Interface Sci., 540, 593 (2019).
[4]. O. Vajdle, J. Zbiljić, B. Tasić, D. Jović, V. Guzsvány, A. Djordjevic, Electrochim. Acta, 132, 49
(2014).
[5]. Z. Xu, P. Deng, J. Li, L. Xu, S. Tang, Mater. Sci. Eng. B., 218, 31 (2017).
[6]. S. Jafari, S. Hamidi, J. Liq. Chromatogr. Relat. Technol., 41, 401 (2018).
[7]. Y. He, H.K. Lee, Anal. Chem., 69, 4634 (1997).
[8]. Y. Wang, Y.C. Kwok, Y. He, H.K. Lee, Anal. Chem., 70, 4610 (1998).
[9]. M. Rezaee, Y. Assadi, M.-R.M. Hosseini, E. Aghaee, F. Ahmadi, S. Berijani, J. Chromatogr. A.,
1116, 1 (2006).
[10]. X. Wang, T. Du, J. Wang, H. Kou, X. Du, Microchem. J., 148, 85 (2019).
[11]. L. Wang, T. Huang, H. Cao, Q. Yuan, Z. Liang, L. Guo-Xi, Food Anal. Methods, 9, 2223
(2016).
[12]. M. Asadi, S. Dadfarnia, A.M.H. Shabani, Anal. Chim. Acta, 932, 22 (2016).
[13]. A.L. Sanson, S.C.R. Silva, M.C.G. Martins, A. Giusti-Paiva, P.P. Maia, I. Martins, Braz. J.
Pharm., 47, 363 (2011).
[14]. D.M. Souza, J.F. Reichert, A.F. Martins, Chemosphere, 201, 178 (2018).
[15]. L.B. Liao, H.Y. Zhou, X.M. Xiao, J. Mol. Struct., 749, 108 (2005).
[16]. H. Tavallali, A. Jahanbekam, Int J Pharm Tech Res., 2, 1943 (2010).
[17]. J. Han, J. Zhang, H. Zhao, Y. Li, Z. Chen, J. Pharm. Anal., 6, 199 (2016).
[18]. Q. Yan, W. Priebe, J.B. Chaires, R.S. Czernuszewicz, Biospectroscopy, 3, 307 (1997).
[19]. T. Madrakian, K.D. Asl, M. Ahmadi, A. Afkhami, RSC Advances, 6, 72803 (2016).
[20]. J. Soleymani, M. Hasanzadeh, N. Shadjou, M.K. Jafari, J.V. Gharamaleki, M. Yadollahi, A.
Jouyban, Mater. Sci. Eng. C., 61, 638 (2016).
[21]. J. Lurie, Handbook of Analytical Chemistry, Mir Publishers(1975).
[22]. T. Gezahegn, B. Tegegne, F. Zewge, B.S. Chandravanshi, BMC Chem., 13, 28 (2019).
[23]. O. Alimohammadi, M. Ramezani, R. Noorossana, M. Alimoradi, J. Iran. Chem. Soc., 17, 167
(2020).
[24]. X.-H. Zang, Q.-H. Wu, M.-Y. Zhang, G.-H. Xi, Z. Wang, Chin J Anal Chem., 37, 161 (2009).
[25]. K. Mross, P. Maessen, W. Van Der Vijgh, H. Gall, E. Boven, H. Pinedo, J. Clin. Oncol., 6, 517
(1988).
[26]. M. Arvand, A. Masouleh, J. Iran. Chem. Soc., 14, 1673 (2017).
[27]. C. Sottani, G. Tranfo, M. Bettinelli, P. Faranda, M. Spagnoli, C. Minoia, Rapid Commun. Mass
Spectrom., 18, 2426 (2004).