2011
DOI: 10.1590/s0103-50532011000800025
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Electrochemical behavior of Propranolol and its major metabolites, 4'-hydroxypropranolol and 4'-hydroxypropranolol Sulfate, on glassy carbon electrode

Abstract: Foi estudado o comportamento eletroquímico do propranolol (PRO) e seus principais metabólitos. Medidas voltamétricas foram realizadas em eletrodo de carbono vítreo (GCE). Todos os compostos examinados sofrem oxidação via eletroquímica. Em todos os casos foi observada uma separação dos picos de oxidação, sugerindo a possibilidade de eletroanálise simultânea de propranolol e seus metabólitos. A linearidade das curvas de calibração foi obtida para concentrações entre 4,22×10 -6 -1,35×10 -4 mol L -1 para PRO, 4,00… Show more

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Cited by 19 publications
(10 citation statements)
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“…With increasing pH, the peak potentials (Ep) were moved to the more negative potential direction (Figure 4b) based on a relation between Ep and pH expressed as Ep (V)=−0.0532 pH+1.0473 (R 2 =0.998). Regarding the slope of this equation, it can be inferred that the electrochemical oxidation of PRO includes the reaction in which the number of transferred electrons and protons are equal [46]. To optimize the concentration of electrolyte solution, different concentrations of H 2 SO 4 solution were used and their effect on the peak current of PRO was investigated.…”
Section: Resultsmentioning
confidence: 99%
“…With increasing pH, the peak potentials (Ep) were moved to the more negative potential direction (Figure 4b) based on a relation between Ep and pH expressed as Ep (V)=−0.0532 pH+1.0473 (R 2 =0.998). Regarding the slope of this equation, it can be inferred that the electrochemical oxidation of PRO includes the reaction in which the number of transferred electrons and protons are equal [46]. To optimize the concentration of electrolyte solution, different concentrations of H 2 SO 4 solution were used and their effect on the peak current of PRO was investigated.…”
Section: Resultsmentioning
confidence: 99%
“…Indeed, the diameter of pores obtained by electrochemically assisted self-assembly is around 2-3 nm [14], which is large enough to allow diffusion of small redox-active species and at the same time small enough to prevent diffusion of proteins. As a small organic redox-active molecule, we have selected propranolol, a -blocker often used in the treatment of hypertension and which can be detected electrochemically [15][16][17]. As a surface-fouling agent, we have used haemoglobin, whose dimensions are larger than the pore diameter [18].…”
Section: Introductionmentioning
confidence: 99%
“…In this case, a slope of 0.5 was obtained, confirming that the oxidation process controlled by diffusion of the species. 49,50 The performance of CG/Au electrode was evaluated in the simultaneous detection of DA and UA (Fig. 12).…”
Section: Electrochemical Detection Of Dopamine and Uric Acidmentioning
confidence: 99%