Simultaneous determination of methotrexate and calcium folinate with electrochemical method based on a poly-ABSA/functionalized MWNTs composite film modified electrode
暂无分享,去创建一个
[1] Hong Ding,et al. Electrochemical Determination of Methotrexate at a Disposable Screen-Printed Electrode and Its Application Studies , 2012 .
[2] P. Das,et al. Covalently functionalized single-walled carbon nanotubes at reverse micellar interface: a strategy to improve lipase activity. , 2012, Langmuir : the ACS journal of surfaces and colloids.
[3] A. Margeli,et al. Direct injection liquid chromatography/positive ion electrospray ionization mass spectrometric quantification of methotrexate, folinic acid, folic acid and ondansetron in human serum. , 2009, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[4] G. Hu,et al. Selective determination of uric acid in the presence of ascorbic acid at poly(p-aminobenzene sulfonic acid)-modified glassy carbon electrode , 2009 .
[5] Ke-Jing Huang,et al. Sensitive voltammetric determination of tyrosine using multi-walled carbon nanotubes/4-aminobenzeresulfonic acid film-coated glassy carbon electrode. , 2008, Colloids and surfaces. B, Biointerfaces.
[6] J. Kong,et al. Sensitive determination of phenylephrine and chlorprothixene at poly(4-aminobenzene sulfonic acid) modified glassy carbon electrode. , 2008, Talanta.
[7] Song Zhang,et al. Sensitive detection of trifluoperazine using a poly-ABSA/SWNTs film-modified glassy carbon electrode. , 2008, Talanta.
[8] Yuzhong Zhang,et al. Poly(p-aminobenzene sulfonic acid)-modified glassy carbon electrode for simultaneous detection of dopamine and ascorbic acid , 2005 .
[9] G. C. Peñalvo,et al. Capillary electrophoretic determination of methotrexate, leucovorin and folic acid in human urine. , 2005, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[10] Shengshui Hu,et al. A multiwall carbon nanotubes film-modified carbon fiber ultramicroelectrode for the determination of nitric oxide radical in liver mitochondria. , 2005, Bioelectrochemistry.
[11] L. Mao,et al. Novel electrochemical method for sensitive determination of homocysteine with carbon nanotube-based electrodes. , 2004, Biosensors & bioelectronics.
[12] Y. Bentur,et al. Emergency treatment of life-threatening intrathecal methotrexate overdose. , 2004, Neurotoxicology.
[13] Wei-Hua Huang,et al. Carbon fiber nanoelectrodes modified by single-walled carbon nanotubes. , 2003, Analytical chemistry.
[14] Shou‐Mei Wu,et al. Simultaneous determination of methotrexate and its eight metabolites in human whole blood by capillary zone electrophoresis. , 2003, Journal of chromatography. A.
[15] M. D. Rooij,et al. Electrochemical Methods: Fundamentals and Applications , 2003 .
[16] A. Ramanan,et al. Use of methotrexate in juvenile idiopathic arthritis , 2003, Archives of disease in childhood.
[17] Yuehe Lin,et al. Solubilization of carbon nanotubes by Nafion toward the preparation of amperometric biosensors. , 2003, Journal of the American Chemical Society.
[18] A. Taniguchi,et al. [Pharmacogenetics of disease modifying anti-rheumatic drugs]. , 2002, Nihon rinsho. Japanese journal of clinical medicine.
[19] M. Relling,et al. Methotrexate intracellular disposition in acute lymphoblastic leukemia: a mathematical model of gamma-glutamyl hydrolase activity. , 2002, Clinical cancer research : an official journal of the American Association for Cancer Research.
[20] Jun Chen,et al. High-performance liquid chromatographic method for determination of leucovorin in plasma: validation and application to a pharmacokinetic study in healthy volunteers. , 2002, Biomedical chromatography : BMC.
[21] Z. Gu,et al. Electrocatalytic oxidation of 3,4-dihydroxyphenylacetic acid at a glassy carbon electrode modified with single-wall carbon nanotubes , 2001 .
[22] G. Shi,et al. Sensitive determination of dopamine on poly(aminobenzoic acid) modified electrode and the application toward an experimental Parkinsonian animal model. , 2001, Talanta.
[23] J. Kremer. Rational Use of New and Existing Disease-Modifying Agents in Rheumatoid Arthritis , 2001, Annals of Internal Medicine.
[24] Z. Gu,et al. Investigation of the electrochemical and electrocatalytic behavior of single-wall carbon nanotube film on a glassy carbon electrode. , 2001, Analytical chemistry.
[25] J. Balthasar,et al. Highly sensitive high-performance liquid chromatographic assay for methotrexate in the presence and absence of anti-methotrexate antibody fragments in rat and mouse plasma. , 1999, Journal of chromatography. B, Biomedical sciences and applications.
[26] J. Verweij,et al. Liquid chromatographic analysis and preliminary pharmacokinetics of methotrexate in cancer patients co-treated with docetaxel. , 1999, Journal of Chromatography B: Biomedical Sciences and Applications.
[27] G. Erdoğdu,et al. Investigation and comparison of the electrochemical behavior of some organic and biological molecules at various conducting polymer electrodes. , 1997, Talanta.
[28] A. Nácher,et al. Evidence of competitive inhibition of methotrexate absorption by leucovorin calcium in rat small intestine , 1997 .
[29] T. Masujima,et al. On-line precolumn derivatization for HPLC determination of methotrexate using a column packed oxidant. , 1997, Biomedical chromatography : BMC.
[30] W. Hiddemann,et al. Highly sensitive coupled-column high-performance liquid chromatographic method for the separation and quantitation of the diastereomers of leucovorin and 5-methyltetrahydrofolate in serum and urine. , 1995, Journal of chromatography. B, Biomedical applications.
[31] S. Iijima. Helical microtubules of graphitic carbon , 1991, Nature.
[32] M. Pesce,et al. Evaluation of a fluorescence polarization immunoassay procedure for quantitation of methotrexate. , 1986, Therapeutic drug monitoring.
[33] V. Raso,et al. A rapid and specific radioimmunoassay for methotrexate. , 1975, Cancer research.