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SQUID-Based Biosensor for Probing Ion Transporters in Cell Suspensions and Tissue

机译:基于SQUID的生物传感器,用于探测细胞悬浮液和组织中的离子转运蛋白

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We have developed a SQUID-based technique to probe membrane-bound proteins, such as cation transporters. The method involves excitation of a biological sample with a sinusoidal electric field (0–5 V/cm, 10–300 Hz), detection, with a SQUID magnetometer, of the magnetic field produced by ac currents in the tissue or cell suspension, and calculation of the Fast Fourier Transform (FFT) of the measured response to obtain a spectrum. We find that the harmonic response of budding yeast cells (S. cerevisiae, $10^{8}$ cells/ml) is sensitive to sodium metavanadate, an inhibitor of a proton pump known as ${rm H}^{+}$-ATPase, glucose, a substrate of ${rm H}^{+}$-ATPase, and gramicidin, a membrane depolarizer. SQUID-based field and frequency dependent harmonic response measurements are also made of a live earthworm (Lumbricus terrestris). Use of the SQUID significantly reduces spurious harmonics and distortion of the excitation field by the measurement electrodes.
机译:我们已经开发出一种基于SQUID的技术来探测膜结合蛋白,例如阳离子转运蛋白。该方法包括用正弦电场(0-5 V / cm,10-300 Hz)激发生物样品,用SQUID磁力计检测组织或细胞悬液中交流电流产生的磁场,以及计算测量响应的快速傅立叶变换(FFT),以获得频谱。我们发现,出芽的酵母细胞(酿酒酵母,$ 10 ^ {8} $细胞/ ml)的谐波响应对偏钒酸钠敏感,偏钒酸钠是质子泵的抑制剂,称为{{rm H} ^ {+} $- ATPase,葡萄糖($ {rm H} ^ {+} $-ATPase的底物)和gramicidin(膜去极化剂)。基于SQUID的与场和频率相关的谐波响应测量结果也来自活earth(Lumbricus terrestris)。使用SQUID可以大大减少测量电极的寄生谐波和激励场的失真。

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