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首页> 外文期刊>Journal of Pharmaceutical Analysis >The pharmacokinetic study of rutin in rat plasma based on an electrochemically reduced graphene oxide modified sensor
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The pharmacokinetic study of rutin in rat plasma based on an electrochemically reduced graphene oxide modified sensor

机译:基于电化学还原氧化石墨烯修饰传感器的芦丁在大鼠血浆中的药代动力学研究

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An electrochemical method based on a directly electrochemically reduced graphene oxide (ERGO) film coated on a glassy carbon electrode (GCE) was developed for the rapid and convenient determination of rutin in plasma. ERGO was modified on the surface of GCE by one-step electro-deposition method. Electrochemical behavior of rutin on ERGO/GCE indicated that rutin underwent a surface-controlled quasi-reversible process and the electrochemical parameters such as charge transfer coefficient ( α ), electron transfer number ( n ) and electrode reaction standard rate constant ( k s ) were 0.53, 2 and 3.4 s ? 1 , respectively. The electrochemical sensor for rutin in plasma provided a wide linear response range of 4.70×10 ?7 ?1.25×10 ?5 M with the detection limit ( s / n =3) of 1.84×10 ?8 M. The assay was successfully used to the pharmacokinetic study of rutin. The pharmacokinetic parameters such as elimination rate?half-life ( t 1/2 ), area under curve (AUC), and plasma clearance (CL) were calculated to be 3.345±0.647 min, 5750±656.0 μg min/mL, and 5.891±0.458 mL/min/kg, respectively. The proposed method utilized a small sample volume of 10 μL and had no complicated sample pretreatment (without deproteinization), which was simple, eco-friendly, and time- and cost-efficient for rutin pharmacokinetic studies.
机译:为了快速方便地测定血浆中的芦丁,开发了一种基于直接电化学还原的氧化石墨烯(ERGO)膜的电化学方法,该膜涂覆在玻璃碳电极(GCE)上。 ERGO通过一步电沉积法在GCE表面进行了修饰。芦丁在ERGO / GCE上的电化学行为表明,芦丁经历了表面控制的准可逆过程,其电荷转移系数(α),电子转移数(n)和电极反应标准速率常数(ks)等电化学参数为0.53 ,2和3.4 s? 1。血浆中芦丁的电化学传感器提供了4.70×10×7×1.25×10×5 M的宽线性响应范围,检测极限(s / n = 3)为1.84×10×8M。对芦丁的药代动力学研究。计算得出的消除动力学率,半衰期(t 1/2),曲线下面积(AUC)和血浆清除率(CL)等药代动力学参数分别为3.345±0.647 min,5750±656.0μgmin / mL和5.891分别为±0.458 mL / min / kg。所提出的方法使用了10μL的小样品量,并且没有复杂的样品前处理(无脱蛋白),这对于芦丁药代动力学研究是简单,环保,省时且经济的。

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