Ismail Abu Bakar Md, Yoshinobu Tatsuo, Iwasaki Hiroshi, Sugihara Hirokazu, Yukimasa Tetsuo, Hirata Isao, Iwata Hiroo
Department of Applied Physics and Electronics, Rajshahi University, Rajshahi 6205, Bangladesh.
Biosens Bioelectron. 2003 Oct 15;18(12):1509-14. doi: 10.1016/s0956-5663(03)00129-5.
This article reports an investigation on light-addressable potentiometric sensor (LAPS) to be used as a possible biological cell-semiconductor hybrid that will enable us to make an interface between the physical and biological system. To increase the surface potential sensitivity, we used a LAPS structure with single insulator (SiO2) coated with poly-L-ornithine and laminin (PLOL) on Si. Efficient culturing of PC-12 and nerve cells of Lymnaea stagnalis on PLOL-coated Si3N4 and SiO2 was achieved. The thickness of the PLOL layer was found to be about 4 nm by the atomic force microscope (AFM) measurement. Using the advantage of this thin layer of PLOL, we compared the performance of a novel structure to the previously reported "PLOL-coated Si3N4/SiO2/Si" structure. Due to high insulating capacitance, the photocurrent response of the novel LAPS was found to be very steep. As a result, higher sensitivity was achieved. This steepness did not degrade during 10 days when the sensor surface was kept in contact with the cell culture medium and environment. The thickness of PLOL layer, its ability to improve the biological cell adhesion, enhanced sensitivity, and experiment with simulated neural action potential (AP) applied to the novel LAPS show a good promise for LAPS to be a biological cell-semiconductor hybrid.
本文报道了一项关于光寻址电位传感器(LAPS)的研究,该传感器可作为一种可能的生物细胞 - 半导体混合体,使我们能够在物理系统和生物系统之间建立接口。为了提高表面电位灵敏度,我们使用了一种LAPS结构,即在硅(Si)上涂覆有聚 - L - 鸟氨酸和层粘连蛋白(PLOL)的单绝缘体(SiO₂)。在涂有PLOL的Si₃N₄和SiO₂上实现了PC - 12细胞和椎实螺神经细胞的高效培养。通过原子力显微镜(AFM)测量发现PLOL层的厚度约为4纳米。利用这一薄层PLOL的优势,我们将一种新型结构的性能与先前报道的“涂有PLOL的Si₃N₄/SiO₂/Si”结构进行了比较。由于高绝缘电容,发现新型LAPS的光电流响应非常陡峭。结果,实现了更高的灵敏度。当传感器表面与细胞培养基和环境接触时,这种陡峭度在10天内没有降低。PLOL层的厚度、其改善生物细胞粘附的能力、增强的灵敏度以及应用于新型LAPS的模拟神经动作电位(AP)实验表明,LAPS作为生物细胞 - 半导体混合体具有良好的前景。