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首页> 外文期刊>Sensors and Actuators >Determination of lactate levels in biological fluids using a disposable ion- selective potentiometric sensor based on polypyrrole films
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Determination of lactate levels in biological fluids using a disposable ion- selective potentiometric sensor based on polypyrrole films

机译:使用基于聚吡咯膜的一次性离子选择电位传感器测定生物液体中的乳酸水平

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摘要

In this work, we present a lactate-selective potentiometric sensor as simple, low cost and non-enzymatic alternative for application in three different biological fluids. The selectivity of proposed sensor is based on a polypyrrole matrix doped with lactate ions in its structure which occurs during galvanostatic polymerization step. After optimization, the device showed a wide linear range between 0.1 and 10.0 mmol L-1 with a slope of 23.7 +/- 0.2 mV dec(-1), a limit of detection (LOD) of 81 mu mol L-1, and excellent repeatability (RSD = 2.1%) and reproducibility (RSD = 2.7%). Tests to evaluate the influence of possible interferences were performed, in which the sensor showed good selectivity to lactate ions. The sensor was applied to evaluate lactate levels in human tear samples and a linear correlation with lactate levels in blood samples (R-2 = 0.977) was found. In order to assess lactate levels before and after intense physical activity, blood samples from rats and human sweat samples were analyzed. For both fluids the potential variation was obtained, and in comparison to the lactate analysis in blood by portable device, the human sweat response was confirmed by the proposed method. Thus, the developed sensor demonstrated a viable and efficient electroanalytical tool to the current commercial devices, especially to support in physical performance evaluations.
机译:在这项工作中,我们提出了一种乳酸选择性电位传感器,它是简单,低成本和非酶替代品,可用于三种不同的生物液体中。所提出的传感器的选择性是基于在结构上掺有乳酸盐离子的聚吡咯基质,该乳吡咯基质在恒电流聚合步骤中发生。经过优化后,该器件显示出0.1至10.0 mmol L-1的宽线性范围,斜率为23.7 +/- 0.2 mV dec(-1),检测限(LOD)为81μmol L-1,并且极好的可重复性(RSD = 2.1%)和可重复性(RSD = 2.7%)。进行了评估可能的干扰影响的测试,其中传感器对乳酸离子表现出良好的选择性。该传感器用于评估人眼泪样品中的乳酸水平,并且与血液样品中的乳酸水平线性相关(R-2 = 0.977)。为了评估剧烈运动前后的乳酸水平,分析了来自大鼠的血液样本和人类汗液样本。对于这两种液体,均获得了电位变化,并且与便携式设备在血液中进行的乳酸分析相比,通过提出的方法证实了人类的出汗反应。因此,开发的传感器向当前的商用设备展示了一种可行且高效的电分析工具,尤其是在物理性能评估方面提供了支持。

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