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A novel multicommutation stopped-flow system for the simultaneous determination of sulfamethoxazole and trimethoprim by differential pulse voltammetry on a boron-doped diamond electrode

机译:新型多换流停止流系统,用于同时测定硼掺杂金刚石电极上的差示脉冲伏安法测定磺胺甲恶唑和甲氧苄啶

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A method based on a multicommutation stopped-flow system was developed and applied in the simultaneous determination of sulfamethoxazole (SMX) and trimethoprim (TMP) in pharmaceutical formulations by differential pulse voltammetry (DPV) using a cathodically pre-treated hydrogen-terminated boron-doped diamond (HT-BDD) electrode. The obtained analytical curves were linear from 1.0 to 8.0 mg L?1 and 0.20 to 1.6 mg L?1 for SMX and TMP, respectively. The calculated LOD and LOQ values for SMX were 16.5 μg L?1 and 55.1 μg L?1 (or 65.1 nmol L?1 and 218 nmol L?1), respectively; for TMP, they were 18.3 μg L?1 and 61.1 μg L?1 (or 63.0 nmol L?1 and 210 nmol L?1), respectively. The optimization and application of the multicommutation stopped-flow system in the simultaneous electrochemical determination of SMX and TMP by DPV on the HT-BDD electrode yielded an excellent sample throughput (30 h?1). Addition and recovery studies indicated that the matrix effect did not present any significant interference in the determinations. Thus, the proposed method was successfully applied in the determination of SMX and TMP in two different commercial pharmaceutical formulations with results similar (at 95% confidence level) to those obtained using the USP method (HPLC). The obtained performance allowed concluding that the proposed method is quite advantageous and that its total automation can lead to rapid, sensitive, precise, and accurate results, with an excellent sample throughput...
机译:开发了一种基于多换向停止流系统的方法,并将该方法用于通过阴极预处理的氢掺杂硼掺杂的差示脉冲伏安法(DPV)同时测定药物制剂中的磺胺甲恶唑(SMX)和甲氧苄啶(TMP)金刚石(HT-BDD)电极。对于SMX和TMP,所获得的分析曲线分别为1.0-8.0mg L-1和0.20-1.6mg L-1。 SMX的LOD和LOQ计算值分别为16.5μgL?1和55.1μgL?1(或65.1 nmol L?1和218 nmol L?1);对于TMP,它们分别为18.3μgL?1和61.1μgL?1(或63.0 nmol L?1和210 nmol L?1)。在HT-BDD电极上通过DPV同时电化学测定SMX和TMP时,多换向停止流系统的优化和应用产生了极好的样品通量(30 h?1)。加法和回收率研究表明,基质效应对测定没有任何明显的干扰。因此,该方法成功地用于两种不同商业药物配方中SMX和TMP的测定,结果与USP方法(HPLC)相似(95%置信水平)。所获得的性能可以证明所提出的方法是非常有利的,并且其完全自动化可以导致快速,灵敏,精确和准确的结果,并具有出色的样品通量...

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