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Development of an on-animal separation-based sensor for monitoring drug metabolism in freely roaming sheep

机译:基于动物分离的传感器的开发,用于监测自由漫游绵羊的药物代谢

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The development of an on-animal separation-based sensor that can be employed for monitoring drug metabolism in a freely roaming sheep is described. The system consists of microdialysis sampling coupled to microchip electrophoresis with electrochemical detection (MD-ME-EC). Separations were accomplished using an all-glass chip with integrated platinum working and reference electrodes. Discrete samples from the microdialysis flow were introduced into the electrophoresis chip using a flow-gated injection approach. Electrochemical detection was accomplished in-channel using a two-electrode isolated potentiostat. Nitrite was separated by microchip electrophoresis using reverse polarity and a run buffer consisting of 50 mM phosphate at pH 7.4. The entire system was under telemetry control. The system was first tested with rats to monitor the production of nitrite following perfusion of nitroglycerin into the subdermal tissue using a linear probe. The data acquired using the on-line MD-ME-EC system were compared to those obtained by off-line analysis using liquid chromatography with electrochemical detection (LC-EC), using a second microdialysis probe implanted parallel to the first probe in the same animal. The MD-ME-EC device was then used on-animal to monitor the subdermal metabolism of nitroglycerin in sheep. The ultimate goal is to use this device to simultaneously monitor drug metabolism and behavior in a freely roaming animal.
机译:描述了基于动物分离的传感器的开发,该传感器可用于监视自由漫游的绵羊中的药物代谢。该系统由微透析采样与电化学检测(MD-ME-EC)结合的微芯片电泳组成。使用具有集成铂工作电极和参比电极的全玻璃芯片完成分离。使用流控进样方法将来自微透析流的离散样品引入电泳芯片。使用两电极隔离恒电位仪在通道内完成电化学检测。通过微芯片电泳,使用反极性和运行缓冲液(pH 7.4的50 mM磷酸盐)分离亚硝酸盐。整个系统处于遥测控制之下。首先用大鼠测试该系统,以监测使用线性探针将硝酸甘油灌注到皮下组织后亚硝酸盐的产生。将使用在线MD-ME-EC系统获取的数据与使用液相色谱和电化学检测(LC-EC)进行离线分析所获得的数据进行比较,方法是使用与第一探针平行植入的第二微透析探针动物。然后将MD-ME-EC设备用于动物,以监测绵羊体内硝酸甘油的皮下代谢。最终目标是使用该设备同时监视自由漫游动物中的药物代谢和行为。

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