首页> 外文期刊>The Analyst >High temporal resolution coupling of low-flow push-pull perfusion to capillary electrophoresis for ascorbate analysis at the rat vitreoretinal interface
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High temporal resolution coupling of low-flow push-pull perfusion to capillary electrophoresis for ascorbate analysis at the rat vitreoretinal interface

机译:低时间推挽式灌注与毛细管电泳的高时间分辨率耦合,用于大鼠玻璃体视网膜界面的抗坏血酸分析

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摘要

A system is presented demonstrating the high-temporal resolution coupling of low-flow push-pull perfusion sampling (LFPS) to capillary electrophoresis for the absorbance measurement of ascorbate at the rat vitreoretinal interface. This system holds all separation components at a low pressure as the means for withdrawing sample during LFPS. The system uses a flow-gated interface to directly couple the withdrawal capillary from the LFPS probe to a separation capillary and eliminates the need for any offline sample handling. The temporal resolution of the system was limited by injection time and is less than 16 s. This high temporal resolution was applied to the monitoring of in vivoascorbate levels at the rat vitreoretinal interface. Baseline concentrations of ascorbate were found to be 86 µM ± 18 µM at the vitreoretinal interface. Baseline concentrations matched well with those obtained for the postmortem bulk vitreous analysis. Upon stimulation with 145 mM K+, a maximum increase in baseline values between 32–107% for n = 3 was observed. This system demonstrates the first in vivo temporal study of ascorbate at the rat vitreoretinal interface.
机译:提出了一个系统,该系统演示了低流量推挽灌注采样(LFPS)与毛细管电泳在大鼠玻璃体视网膜界面上抗坏血酸的吸光度测量中的高时间分辨率耦合。该系统将所有分离成分保持在低压下,作为在LFPS期间提取样品的手段。该系统使用流控接口将从LFPS探针引出的毛细管直接耦合到分离毛细管,从而无需进行任何离线样品处理。系统的时间分辨率受到注入时间的限制,并且小于16 s。这种高时间分辨率可用于监测大鼠玻璃体视网膜界面的体内抗坏血酸水平。发现玻璃体视网膜界面的抗坏血酸基线浓度为86 µM±18 µM。基线浓度与尸体玻璃体分析获得的浓度非常匹配。在用145 mM K +刺激后,观察到n = 3时基线值在32–107%之间最大增加。该系统证明了大鼠玻璃体视网膜界面抗坏血酸的首次体内时间研究。

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  • 来源
    《The Analyst》 |2009年第2期|p.401-406|共6页
  • 作者单位

    Department of Chemistry (M/C 111), University of Illinois at Chicago, 845 W. Taylor St. Room 4500, Chicago, Illinois 60607-7061, USA. E-mail: sshippy@uic.edu, Fax: +1 312-996-0431, Tel: +1 312-355-2426,;

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