Department of Laboratory Medicine, Xiamen Key Laboratory of Genetic Testing, The First Affiliated Hospital of Xiamen University, School of Medicine, Xiamen University, Xiamen, Fujian, 361005, People's Republic of China.
Xiamen Key Laboratory of Reproduction and Genetics, Department of Reproductive Medicine, Women and Children's Hospital, School of Medicine, Xiamen University, Xiamen, Fujian, 361003, People's Republic of China.
Talanta. 2025 Jan 1;282:127042. doi: 10.1016/j.talanta.2024.127042. Epub 2024 Oct 11.
Excessive reactive oxygen species (ROS) in seminal plasma can trigger male infertility. Therefore, the development of simple and rapid ROS detection methods is urgently needed, particularly for the early self-screening of preconception couples. Herein, a gold nanobipyramid (Au NBP)-based colorimetric hydrogel for convenient and fast ROS detection is described. In the hydrogel, Au NBP is etched efficiently by ROS under the synergistic effect of Feand I, which finally causes color variations. Besides, agarose gel with the function of molecular sieve enables the separation of biomacromolecules, improving the interference resistance of the system and the stability of Au NBP. This chemical sensor can complete all the tests within 20 min, covering two detection range of 10-125 μM at relative low HO concentration and 125-1000 μM at relative high HO concentration, with the detection limits of 1.76 μM and 12.10 μM (S/N = 3) respectively. Furthermore, via visual observation of the color variations, it allows the initial interpretation of ROS concentration without any additional equipment. We applied this device to the detection of ROS in clinical seminal plasma samples and obtained promising results, demonstrating its potential for rapid and convenient detection in clinical applications.
精液中过量的活性氧(ROS)会引发男性不育。因此,迫切需要开发简单、快速的 ROS 检测方法,特别是用于孕前夫妇的早期自我筛查。本文介绍了一种基于金纳米双锥(Au NBP)的比色水凝胶,用于方便、快速地检测 ROS。在水凝胶中,ROS 在 Fe 和 I 的协同作用下有效地蚀刻 Au NBP,最终导致颜色变化。此外,具有分子筛功能的琼脂糖凝胶能够分离生物大分子,提高系统的抗干扰能力和 Au NBP 的稳定性。该化学传感器可以在 20 分钟内完成所有测试,涵盖相对低浓度 HO 下的 10-125 μM 和相对高浓度 HO 下的 125-1000 μM 两个检测范围,检测限分别为 1.76 μM 和 12.10 μM(S/N = 3)。此外,通过观察颜色变化,无需任何额外设备即可初步解释 ROS 浓度。我们将该装置应用于临床精液样本中 ROS 的检测,获得了有前景的结果,表明其在临床应用中具有快速、方便检测的潜力。