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Improvement of sensitivity of the light-addressable potentiometric sensors for the purpose of noninvasive measurement of electrical activity of biological cells

机译:以无创方式测量生物细胞电活动的目的,提高了光寻址电位传感器的灵敏度

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The possibility of measurement of the electrical activity of neurons by Light-Addressable Potentiometric Sensor (LAPS) is investigated in this article. For the measurement of the extracellular transient of the neural action potential, which is very low, at the surface of a LAPS heterostructure, a simple structure like SiO/sub 2//Si, instead of the conventional Si/sub 3/N/sub 4//SiO/sub 2//Si heterostructure, is studied. The SiO/sub 2/ surface was modified by Poly-L-Ornithine and Laminin (PLOL). Experimental results show that the PLOL coating on the SiO/sub 2/ surface not only prevents the hydration of the SiO/sub 2/ layer and thus enables us to use SiO/sub 2/ only as the insulating layer, but also, provides an efficient culturing of neurons of Lymnaea stagnalis, a kind of sea snail, on the SiO/sub 2/ surface. The PLOL modified SiO/sub 2/ layer of the novel LAPS heterostructure, is kept in contact with the neuron-culture medium for ten days mimicking the maximum cell-culturing period. There is no appreciable change in the sensor response was observed during this period. A DC bias, superimposed by a 2 mV/sub p-p/ and 800 Hz AC was applied to the sensor to simulate an extracellular transient of 2 mV/sub p-p/ to the surface and the response of the sensor shows the possibility of the measurement of the neural action potential by the LAPS.
机译:本文研究了通过可光可寻度电位传感器(圈)测量神经元电活性的可能性。为了测量神经动作电位的细胞外瞬态,这在圈状异质结构的表面上非常低,如SiO / Sub 2 // Si等简单的结构,而不是传统的Si / Sub 3 / N / Sub研究了4 // SIO / SUB 2 // SI异质结构。通过聚-1鸟氨酸和层粘连蛋白(PLOL)改性SiO / sub 2 /表面。实验结果表明,SiO / Sub 2 /表面上的PLOL涂层不仅可以防止SIO / SUB 2 /层的水合作,因此使我们能够使用SIO / SUB 2 /仅作为绝缘层,还提供了在SiO / Sub 2 /表面上高效培养Lymnaea Stagnalis的神经元,一种海蜗牛。新型圈型异质结构的脐部改性的SiO /亚2 /层与神经元培养基保持接触,以瞄准最大细胞培养期的十天。在此期间观察到传感器响应没有明显的变化。叠加2mV / sub pp /和800 Hz AC的直流偏压,施加到传感器上,以模拟2 mV / sub pp /到表面的细胞外瞬态,传感器的响应显示测量的可能性圈的神经动作潜力。

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