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碳纳米管增强无标记免疫传感器用于鱼类卵母细胞成熟诱导激素的电流测定。

Carbon nanotube enhanced label-free immunosensor for amperometric determination of oocyte maturation-inducing hormone in fish.

机构信息

Faculty of Marine Science, Tokyo University of Marine Science and Technology, 4-5-7, Konan, Minato-ku, Tokyo 108-8477, Japan.

出版信息

Fish Physiol Biochem. 2013 Apr;39(2):299-308. doi: 10.1007/s10695-012-9700-7. Epub 2012 Aug 3.

Abstract

Maintaining high-quality fish eggs stably and efficiently is important for aquaculture. We developed a label-free immunosensor system for measuring 17,20β-dihydroxy-4-pregnen-3-one (DHP). DHP is suddenly secreted before ovulation as a maturation-inducing hormone in fish, and therefore, DHP levels are an indicator for predicting ovulation. The method is based on immunologic reactions and amperometric measurement using cyclic voltammetry (CV). For biomolecular immobilization on the surface of sensing electrode, Au electrode, we used self-assembled monolayers of thiol-containing compounds to fix anti-DHP immunoglobulin. In addition, we used a single-walled carbon nanotube to improve sensitivity. Using this electrode, we were able to determine the CV signal change caused by the antigen-antibody complex. The proposed immunosensor system showed a linear correlation (correlation coefficient: 0.9827) between the anodic peak current of the CV and the DHP level in range from 15.6 to 50,000 pg ml(-1). The sensor system was then applied to monitor DHP of goldfish (Carassius auratus). Blood plasma of fish was collected every 3 h after administering a DHP inducer. In the measurement, the anodic peak current of the CV showed distinct changes depending on DHP levels in the blood plasma. A good relationship was observed between DHP levels determined by our proposed system and the conventional method (correlation coefficient: 0.9351).

摘要

稳定且高效地保持高质量鱼卵对于水产养殖非常重要。我们开发了一种用于测量 17β-羟基-4-孕烯-3,20-二酮(DHP)的无标记免疫传感器系统。DHP 作为鱼类排卵前的诱导成熟激素突然分泌,因此 DHP 水平是预测排卵的指标。该方法基于免疫反应和安培测量,使用循环伏安法(CV)。为了在传感电极的表面上进行生物分子固定,我们使用含有硫醇的化合物的自组装单层来固定抗 DHP 免疫球蛋白。此外,我们使用了单壁碳纳米管来提高灵敏度。使用该电极,我们能够确定 CV 信号变化引起的抗原-抗体复合物。所提出的免疫传感器系统在 15.6 至 50,000 pg ml(-1)的范围内显示出 CV 的阳极峰电流与 DHP 水平之间的线性相关性(相关系数:0.9827)。然后将该传感器系统应用于监测金鱼(Carassius auratus)的 DHP。在给予 DHP 诱导剂后,每 3 小时收集一次鱼的血浆。在测量中,CV 的阳极峰电流根据血浆中的 DHP 水平显示出明显的变化。通过我们提出的系统确定的 DHP 水平与传统方法(相关系数:0.9351)之间存在良好的关系。

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