dc.creatorMartinez-Mejia M.J.
dc.creatorRath S.
dc.date2015
dc.date2015-06-25T12:51:36Z
dc.date2015-11-26T14:18:13Z
dc.date2015-06-25T12:51:36Z
dc.date2015-11-26T14:18:13Z
dc.date.accessioned2018-03-28T21:19:28Z
dc.date.available2018-03-28T21:19:28Z
dc.identifier
dc.identifierJournal Of Pharmaceutical And Biomedical Analysis. Elsevier, v. 104, n. , p. 81 - 89, 2015.
dc.identifier7317085
dc.identifier10.1016/j.jpba.2014.11.026
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-84916880610&partnerID=40&md5=5535661c898be41a64c73f6449ff8895
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/85272
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/85272
dc.identifier2-s2.0-84916880610
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1243574
dc.descriptionAn HPLC-PAD method using a gold working electrode and a triple-potential waveform was developed for the simultaneous determination of streptomycin and dihydrostreptomycin in veterinary drugs. Glucose was used as the internal standard, and the triple-potential waveform was optimized using a factorial and a central composite design. The optimum potentials were as follows: amperometric detection, E1=-0.15V; cleaning potential, E2=+0.85V; and reactivation of the electrode surface, E3=-0.65V. For the separation of the aminoglycosides and the internal standard of glucose, a CarboPac™ PA1 anion exchange column was used together with a mobile phase consisting of a 0.070molL-1 sodium hydroxide solution in the isocratic elution mode with a flow rate of 0.8mLmin-1. The method was validated and applied to the determination of streptomycin and dihydrostreptomycin in veterinary formulations (injection, suspension and ointment) without any previous sample pretreatment, except for the ointments, for which a liquid-liquid extraction was required before HPLC-PAD analysis. The method showed adequate selectivity, with an accuracy of 98-107% and a precision of less than 3.9%.
dc.description104
dc.description
dc.description81
dc.description89
dc.descriptionMingeot-Leclercq, M.P., Glupczynski, Y., Tulkens, P.M., Aminoglycosides: activity and resistance (1999) Antimicrob. Agents Chemother., 43, pp. 727-737
dc.descriptionStreicher, W., Loibner, H., Hildebrandt, J., Tunrowsky, F., Synthesis and structure/activity relationships of new guanidino derivatives of aminoglycoside antibiotics (1983) Drugs Exp. Clin. Res., 98, pp. 591-598
dc.descriptionEdson, R.S., Terrell, C.L., The aminoglycosides (1999) Mayo Clinic Proceedings. Mayo Clinic, 74, pp. 519-528
dc.descriptionSarri, A.K., Megoulas, N.C., Koupparis, M.A., Development of a novel method based on liquid chromatography-evaporative light scattering detection for the direct determination of streptomycin and dihydrostreptomycin in raw materials, pharmaceutical formulations, culture media and plasma (2006) J. Chromatogr. A, 1122, pp. 275-278
dc.descriptionDouville, V., Lodi, A., Miller, J., Nicolas, A., Clarot, I., Prilleux, B., Megoulas, N., Koupparis, M., Evaporative light scattering detection (ELSD): a tool for improved quality control of drug substances (2006) Pharmeur. Sci. Notes, 2006, pp. 9-15
dc.descriptionGalanakis, E.G., Megoulas, N.C., Solich, P., Koupparis, M.A., Development and validation of a novel LC non-derivatization method for the determination of amikacin in pharmaceuticals based on evaporative light scattering detection (2006) J. Pharm. Biomed. Anal., 40, pp. 1114-1120
dc.descriptionAdams, E., Rafiee, M., Roets, E., Hoogmartens, J., Liquid chromatographic analysis of streptomycin sulfate (2000) J. Pharm. Biomed. Anal., 24, pp. 219-226
dc.descriptionAdams, E., Roets, E., Hoogmartens, J., Liquid chromatographic analysis of dihydrostreptomycin sulfate (1999) J. Pharm. Biomed. Anal., 21, pp. 715-722
dc.descriptionHosokawa, S., Nakamura, K., Fujita, Y., Horiuchi, R., Yamamoto, K., Determination of isepamicin in human plasma by HPLC with fluorescence detection after derivatization using 6-aminoquinolyl-N-hydroxysuccinimidyl-carbamate (2008) Biol. Pharm. Bull., 31, pp. 1866-1869
dc.descriptionPyun, C.W., Abd El-Aty, A.M., Hashim, M.M.M., Shim, J.H., Lee, S.K., Choi, K.D., Park, K.H., Lee, C., Monitoring of streptomycin and dihydrostreptomycin residual levels in porcine meat press juice and muscle via solid-phase fluorescence immunoassay and confirmatory analysis by liquid chromatography after post-column derivatization (2008) Biomed. Chromatogr., 22, pp. 254-259
dc.descriptionVinas, P., Balsalobre, N., Hernandez-Cordoba, M., Liquid chromatography on an amide stationary phase with post-column derivatization and fluorimetric detection for the determination of streptomycin and dihydrostreptomycin in foods (2007) Talanta, 72, pp. 808-812
dc.descriptionLaCourse, W.R., Johnson, D.C., Optimization of waveforms for pulsed amperometric detection (p.a.d.) of carbohydrates following separation by liquid chromatography (1991) Carbohydr. Res., 215, pp. 159-178
dc.descriptionTeófilo, R.F., Reis, E.L., Reis, C., Silva, D., Kubota, L.T., Experimental design employed to square wave voltammetry response optimization for the glyphosate determination (2004) J. Braz. Chem. Soc., 15, pp. 865-871
dc.descriptionAdams, E., Schepers, R., Roets, E., Hoogmartens, J., Determination of neomycin sulfate by liquid chromatography with pulsed electrochemical detection (1996) J. Chromatogr. A, 741, pp. 233-240
dc.descriptionAdams, E., Dalle, J., De Bie, E., De Smedt, I., Roets, E., Hoogmartens, J., Analysis of kanamycin sulfate by liquid chromatography with pulsed electrochemical detection (1997) J. Chromatogr. A, 766, pp. 133-139
dc.descriptionAdams, E., Puelings, D., Rafiee, M., Roets, E., Hoogmartens, J., Determination of netilmicin sulfate by liquid chromatography with pulsed electrochemical detection (1998) J. Chromatogr. A, 812, pp. 151-157
dc.descriptionSzúnyog, J., Adams, E., Roets, E., Hoogmartens, J., Analysis of tobramycin by liquid chromatography with pulsed electrochemical detection (2000) J. Pharm. Biomed. Anal., 23, pp. 891-896
dc.descriptionWang, J., Wang, D., Ni, K., Hu, X., Determination of four aminoglycoside antibiotics by liquid chromatography with pulsed electrochemical detection (2007) J. Liq. Chromatogr. Relat. Technol., 30, pp. 1001-1013
dc.descriptionBurke, L.D., O'Mullane, A.P., Generation of active surface states of gold and the role of such states in electrocatalysis (2000) J. Solid State Electrochem., 4, pp. 285-297
dc.descriptionCarvalhal, R.F., Sanches Freire, R., Kubota, L.T., Polycrystalline gold electrodes: a comparative study of pretreatment procedures used for cleaning and thiol self-assembly monolayer formation (2005) Electroanalysis, 17, pp. 1251-1259
dc.descriptionGuia de Validação e Controle de Qualidade Analítica. Medicamentos Veterinários e Fármacos em Produtos para Alimentação Animal. Ministério da Agricultura (2011) Pecuária e Abastecimento. SDA, Brasília
dc.descriptionde Souza, S.V.C., Junqueira, R.G., A procedure to assess linearity by ordinary least squares method (2005) Anal. Chim. Acta, 552, pp. 25-35
dc.descriptionFischer, L.M., Tenje, M., Heiskanen, A.R., Masuda, N., Castillo, J., Bentien, A., Émneus, J., Boisen, A., Gold cleaning methods for electrochemical detection applications (2009) Microelectron. Eng., 86, pp. 1282-1285
dc.descriptionLarew, L.A., Johnson, D.C., Concentration dependence of the mechanism of glucose oxidation at gold electrodes in alkaline media (1989) J. Electroanal. Chem., 262, pp. 167-182
dc.descriptionJohnson, D.C., Lacourse, W.R., Chapter 10 pulsed electrochemical detection of carbohydrates at gold electrodes following liquid chromatographic separation (1995) J. Chromatogr. Library, 58, pp. 391-429
dc.descriptionLaCourse, W.R., Dasenbrock, C.O., High-performance liquid chromatography-pulsed electrochemical detection for the analysis of antibiotics (1998) Adv. Chromatogr., 38, pp. 189-232
dc.descriptionLong, C., Yang, X., Lee, B., Ong, C., Optimizing the Triple - Potential Waveform for the Pulsed Amperometric Detection of Streptomycin (2005) Anal. Lett., 38, pp. 1759-1767
dc.descriptionCai, Y.Q., Mou, S.F., Optimizing the quadruple-potential waveform for the determination of gentamicin sulfate by high performance liquid chromatography with pulsed electrochemical detection (2005) Chinese J. Chem., 23, pp. 1207-1212
dc.descriptionCai, Y., Cai, Y., Cheng, J., Mou, S., Yiqiang, L., Comparative study on the analytical performance of three waveforms for the determination of several aminoglycoside antibiotics with high performance liquid chromatography using amperometric detection (2005) J. Chromatogr. A, 1085, pp. 124-130
dc.descriptionMaroto, A., Boqué, R., Riu, J., Rius, F.X., Evaluating uncertainty in routine analysis (1999) Trends Anal. Chem., 18, pp. 577-584
dc.languageen
dc.publisherElsevier
dc.relationJournal of Pharmaceutical and Biomedical Analysis
dc.rightsfechado
dc.sourceScopus
dc.titleUse Of Experimental Design To Optimize A Triple-potential Waveform To Develop A Method For The Determination Of Streptomycin And Dihydrostreptomycin In Pharmaceutical Veterinary Dosage Forms By Hplc-pad
dc.typeArtículos de revistas


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