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Reaction-Based Turn-on Electrochemiluminescent Sensor with a Ruthenium(II) Complex for Selective Detection of Extracellular Hydrogen Sulfide in Rat Brain

机译:基于反应的具有钌(II)配合物的开启式化学发光传感器,用于选择性检测大鼠脑中的细胞外硫化氢

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Hydrogen sulfide (H2S) has been drawing increasing attention because it plays an important role in the nervous system and has been deemed as a third endogenous gas signal molecule besides nitric oxide (NO) and carbon monoxide (CO). In this study, using a ruthenium complex, [Ru(bpy)(2)(bpy-DPA)Cu](4+) (where bpy = 2,2'-bipyridine and bpy-DPA = 4-methyl-4'-[N,N-bis(2-picolyl)aminomethylene]-2,2'-bipyridine) as recognition unit, we report a new reaction-based turn-on electrochemiluminescent (ECL) sensor to selectively detect extracellular H2S in rat brain, coupled with in vivo microdialysis for dialysate sampling. To prepare the sensor for sensing endogenous H2S, [Ru(bpy)(2)(bpy-DPA)](2+) is first designed and synthesized, showing high ECL efficiency with tri-n-propylamine (TPA) as a coreactant and quenching after reaction with Cu2+ (forming [Ru(bpy)(2)(bpy-DPA)Cu](4+)). Then a Nafion membrane is coated on the surface of glassy carbon (GC) electrode and [Ru(bpy)(2)(bpy-DPA)Cu](4+) is confined onto the Nafion membrane through ion exchange. The resulting [Ru(bpy)(2)(bpy-DPA)Cu](4+)/Nafion/GC sensor exhibits a low ECL signal. The [Ru(bpy)(2)(bpy-DPA)Cu](4+)/Nafion/GC sensor demonstrates enhanced ECL signal after reacting with volatile H2S due to the high-affinity binding between sulfur and Cu2+, returning to [Ru(bpy)(2)(bpy-DPA)](2+)/Nafion/GC. The changes of ECL signal at the sensor depend linearly on the concentration of Na2S in the range from 0.5 to 10 mu M, with a detection limit of 0.25 mu M. Moreover, the sensor demonstrates high selectivity, free from interference especially by other nonvolatile thiol-containing species, such as cysteine and glutathione. The basal dialysate level of H2S in the microdialysate from the cortex of adult male Sprague-Dawley rats is determined to be 2.3 +/- 0.9 mu M (n = 4). This method is reliable and is envisaged to help understand the regulation of H2S in physiological and pathological events.
机译:硫化氢(H2S)在神经系统中起着重要的作用,因此已引起越来越多的关注,并且被视为除一氧化氮(NO)和一氧化碳(CO)之外的第三种内源性气体信号分子。在这项研究中,使用钌配合物[Ru(bpy)(2)(bpy-DPA)Cu](4+)(其中bpy = 2,2'-联吡啶,bpy-DPA = 4-甲基-4'- [N,N-双(2-picolyl)氨基亚甲基] -2,2'-联吡啶)作为识别单元,我们报告了一种新的基于反应的开启式电致发光(ECL)传感器,可选择性地检测大鼠脑中的细胞外H2S,耦合体内微透析用于透析液采样。为了制备用于感测内源性H2S的传感器,首先设计并合成了[Ru(bpy)(2)(bpy-DPA)](2+),该化合物以三正丙胺(TPA)为共反应剂具有很高的ECL效率,并且与Cu2 +反应后淬灭(形成[Ru(bpy)(2)(bpy-DPA)Cu](4+))。然后将Nafion膜涂覆在玻璃碳(GC)电极的表面上,并通过离子交换将[Ru(bpy)(2)(bpy-DPA)Cu](4+)限制在Nafion膜上。所得的[Ru(bpy)(2)(bpy-DPA)Cu](4 +)/ Nafion / GC传感器显示出低ECL信号。 [Ru(bpy)(2)(bpy-DPA)Cu](4 +)/ Nafion / GC传感器在与挥发性H2S反应后,由于硫和Cu2 +之间的高亲和力结合,显示出增强的ECL信号,返回到[Ru (bpy)(2)(bpy-DPA)](2 +)/ Nafion / GC。传感器上ECL信号的变化与Na2S浓度在0.5至10μM范围内线性相关,检测极限为0.25μM。此外,该传感器显示出高选择性,不受其他非挥发性硫醇的干扰含半胱氨酸和谷胱甘肽的物种。将成年雄性Sprague-Dawley大鼠皮层微透析液中H2S的基础透析液水平确定为2.3 +/- 0.9μM(n = 4)。此方法是可靠的,可以帮助理解生理和病理事件中H2S的调节。

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