An application of Doehlert matrix optimization on developing of flow injection analysis of neomycin in pharmaceutical samples

P. M. Frugeri, C. Marchioni, Ronaldo Gonçalves Gonzaga
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Abstract

This work proposes a Flow Injection Analysis (FIA) system to determine neomycin in pharmaceutical formulation, utilizing ninhydrin as chromogenic reagent, with absorbance signal measured at 570 nm. To check the significant flow parameters, a screening with 2 4 full factorial designs was optimized, and a Doehlert matrix used to obtain the optimum variable values. The method presents two linear responses ranging from 29.8 up to 300 mg L -1 (r 2 =0.9933) and 800.0 up to 2500 mg L -1 (r 2 =0.9926). The Limits of Detection and Quantifications were 8.94 mg L -1 and 29.8 mg L -1 , respectively. The readings frequency was of 33 reading h -1 . The method accuracy was checked through comparison with HPLC method and the results found were similar (t-test, 95% confidence level). The method was applied in pharmaceutical samples with very good performance and the precision (RSD) was always below 8.0%. The reagent and sample consumption was very low, what is in agreement with the green chemistry concept
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Doehlert矩阵优化在药品样品中新霉素流动注射分析中的应用
本文提出了一种以茚三酮为显色剂,在570 nm处测量吸光度信号的流动注射分析(FIA)系统。为了检查显著的流量参数,优化了24个全因子设计的筛选,并使用Doehlert矩阵获得最佳变量值。该方法在29.8 ~ 300 mg L -1 (r2 =0.9933)和800.0 ~ 2500 mg L -1 (r2 =0.9926)范围内呈线性响应。检出限为8.94 mg L -1,定量限为29.8 mg L -1。读数频率为33次,读数h -1。与高效液相色谱法比较,结果相似(t检验,95%置信水平)。该方法适用于药品样品,精密度(RSD)均在8.0%以下,性能良好。试剂和样品消耗非常低,符合绿色化学的理念
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