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Real-time and noninvasive monitoring of respiration activity of fertilized ova using semiconductor-based biosensing devices

机译:使用基于半导体的生物传感设备实时,无创地监测受精卵的呼吸活动

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摘要

In this report, we propose a novel evaluation method of embryo activity, describing the real-time and noninvasive electrical monitoring of embryo activity, caused by fertilization of the sea urchin, using a biologically-coupled field-effect transistor (bio-FET) comprised of semiconductor-based biosensing devices. The detection principle of bio-FET is based on the potentiometric detection of charge density change at the gate insulator, which includes changes of hydrogen ion concentration corresponding to pH variation. The surface potential at the gate surface of the bio-FET increased after the introduction of sperms into the ova, resulting in fertilization on the gate sensing area. The positive shift of surface potential indicates the increase of positive charges of hydrogen ions generated by dissolved carbon dioxide in artificial sea water based on respiration activity of the embryo. Moreover, the electrical signal of embryo activity is suppressed due to the inhibition of cytokinesis by introduction of cytochalasin B. The platform based on the bio-FET is expected to be a real-time, label-free and noninvasive detection system, not only in fundamental studies of embryo activity but also in the evaluation of embryo quality for in vitro fertilization.
机译:在此报告中,我们提出了一种新颖的胚胎活动评估方法,该方法使用生物耦合的场效应晶体管(bio-FET)描述了对海胆受精引起的胚胎活动的实时和无创电监测基于半导体的生物传感设备。 bio-FET的检测原理基于电位测量法在栅极绝缘体处的电荷密度变化,该变化包括与pH值变化相对应的氢离子浓度变化。将精子引入卵子后,bio-FET栅极表面的表面电势增加,从而导致栅极感应区域受精。表面电位的正向变化表示,基于胚胎的呼吸活性,人造海水中溶解的二氧化碳产生的氢离子正电荷的增加。此外,由于引入细胞松弛素B可抑制胞质分裂,从而抑制了胚胎活动的电信号。基于bio-FET的平台有望成为一种实时,无标记且无创的检测系统,不仅在胚胎活性的基础研究,还用于评估体外受精的胚胎质量。

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