首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Location-dependent sensing of nitric oxide and calcium ions in living rat kidney using an amperometric/potentiometric dual microsensor
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Location-dependent sensing of nitric oxide and calcium ions in living rat kidney using an amperometric/potentiometric dual microsensor

机译:使用安培/电位双微传感器对大鼠肾脏中一氧化氮和钙离子进行位置依赖性传感

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In this paper, we report the fabrication of a dual microsensor for sensing nitric oxide (NO) and calcium ions (Ca2+) and its application for simultaneous NO/Ca2+ measurements in living rat kidney tissue. NO and Ca2+ have very important physiological functions and are both intricately involved in many biological processes. The dual NO/Ca2+ sensor is prepared based on a dual recessed electrode possessing Pt (diameter, 25 mu m) and Ag (diameter, 76 mu m) microdisks. The Pt disk surface (WE1) is electrodeposited with porous Pt black and then coated with fluorinated xerogel; and used for amperometric sensing of NO. The Ag disk surface (WE2) is chloridated to AgCl, followed by silanization and then Ca2+ selective membrane loading; and used for potentiometric sensing of Ca2+. The dual sensor exhibits high sensitivity of WE1 to NO (40.8 +/- 6.5 pA mu M-1, n = 10) and reliable Nerntian response of WE2 to Ca2+ changes (25.7 +/- 0.5 mV pCa(-1), n = 10) with excellent selectivity to only NO and Ca2+ over common interferents and reliable stability (up to similar to 4 h tissue experiment). The prepared sensor is employed for real-time monitoring of the dynamic changes of NO and Ca2+ levels of a rat kidney, which is induced by the administration of 10 mM L-NG-nitroarginine methyl ester (L-NAME, a NO synthase inhibitor). Due to the small sensor dimension, location-dependent analyses of NO and Ca2+ are carried out at two different regions of a kidney (renal medulla and cortex). Higher NO and Ca2+ levels are observed at the medulla than at the cortex. This study verifies the feasibility for real-time monitoring of intimately connected Ca2+ and endogenous NO production; and also for localized concentration assessments of both NO and Ca2+.
机译:在本文中,我们报告了一种用于感测一氧化氮(NO)和钙离子(Ca2 +)的双微传感器的制造及其在活大鼠肾脏组织中同时测量NO / Ca2 +的应用。 NO和Ca2 +具有非常重要的生理功能,并且都复杂地参与了许多生物过程。基于具有Pt(直径25微米)和Ag(直径76微米)微盘的双凹电极制备双NO / Ca2 +传感器。 Pt盘表面(WE1)用多孔Pt黑色电沉积,然后涂上氟化干凝胶;并用于NO的安培感测。将Ag圆盘表面(WE2)氯化为AgCl,然后进行硅烷化处理,然后加载Ca2 +选择性膜。并用于Ca2 +的电位传感。双传感器具有WE1对NO的高灵敏度(40.8 +/- 6.5 pA mu M-1,n = 10)和WE2对Ca2 +变化的可靠的Nerntian响应(25.7 +/- 0.5 mV pCa(-1),n = 10)对常见的干扰物仅对NO和Ca2 +具有优异的选择性,并且具有可靠的稳定性(与4 h组织实验相似)。所制备的传感器用于实时监测大鼠肾脏中NO和Ca2 +水平的动态变化,这是通过给予10 mM L-NG-硝基精氨酸甲酯(L-NAME,NO合酶抑制剂)诱导的。 。由于传感器尺寸较小,因此在肾脏的两个不同区域(肾髓质和皮层)进行了NO和Ca2 +的位置相关分析。在髓质处比在皮质处观察到更高的NO和Ca2 +水平。这项研究验证了实时监测紧密连接的Ca2 +和内源性NO产生的可行性;以及用于NO和Ca2 +的局部浓度评估。

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