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Novel nitric oxide microsensor and its application to the study of smooth muscle cells

机译:新型一氧化氮微传感器及其在平滑肌细胞研究中的应用

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摘要

A novel sensitive, selective and stable nitric oxide (NO) microsensor is described, which is modified by nano Au colloid and Nafion. As determined by atomic forced microscopy (AFM), the diameter fo Au colloid particles is from 7 to 14 nm. The detection of NO is based on the nano Au particles catalysis of NO oxidation at an anodic potential of +0.74 V (versus saturated calomel electrode (SCE)). The microsensor showed a low detection limit, high selectivity and sensitivity for NO determination. The oxidation current (measured by differential pulse amperometric technique) was linear with NO concentration ranging from 1.0 X 10~(-7) to 4.0 X 10~(-5) mol/l with a calculated detection limit of 5.0 X 10~(-8) mol/l (S/N = 3). Using the microsensor, the direct real time production of NO in the smooth muscle cells was continuously measured, which showed the NO levels was increased by stimulating with L-arginine (L-Arg), acetylcholine (Ach) and a self-made flavonoid medicine.
机译:描述了一种新颖的,灵敏的,选择性的和稳定的一氧化氮(NO)微传感器,该传感器经过纳米金胶体和Nafion的修饰。如通过原子强制显微镜(AFM)确定的,Au胶体颗粒的直径为7至14nm。 NO的检测基于纳米金颗粒在+0.74 V的阳极电势下(相对于饱和甘汞电极(SCE))对NO氧化的催化作用。该微传感器显示出低的检测限,高的选择性和对NO测定的灵敏度。氧化电流(通过差分脉冲安培法测量)呈线性,NO浓度范围为1.0 X 10〜(-7)至4.0 X 10〜(-5)mol / l,计算出的检出限为5.0 X 10〜(- 8)mol / l(S / N = 3)。使用微传感器连续测量平滑肌细胞中NO的直接实时产生,这表明通过刺激L-精氨酸(L-Arg),乙酰胆碱(Ach)和自制的类黄酮药物可增加NO水平。

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