Ferreira C, Lynch E, O'Herlihy A, Barry F, Nagle L C, Teixeira S R, Galvin P
Tyndall National Institute, University College Cork, Lee Maltings, T12 R5CP Cork, Ireland.
Biosensors (Basel). 2025 May 10;15(5):304. doi: 10.3390/bios15050304.
The rapid growth of the dairy sector requires advanced monitoring tools to ensure sustainable practices that benefit the environment, economy, and human health. Current monitoring devices often lack multi-parametric capabilities, limiting their ability to provide comprehensive data on critical chemical and biochemical parameters. To address this challenge, this work presented the integration of a real-time multi-parametric device with sensors for pH, temperature, nitrate, and nitrite, providing a comprehensive solution to dairy cattle health monitoring. This solution included an electrochemical platform, Portable Unit for Lab-on-Site Electrochemistry (PULSE), and an application for data processing and display. In-house fabricated flexible gold-printed electrodes demonstrated accurate detection of nitrite and nitrate when integrated with the PULSE, achieving sensitivities of 6.32 μA/ppm/cm2 in artificial interstitial fluid and 1.92 μA/ppm/cm2 in phosphate buffered saline, respectively. The PULSE achieved 65.83% and 58.3% lower limits of detection in phosphate buffered saline than a benchtop potentiostat, for nitrate and nitrite, respectively, along with a 24.5% increase in nitrite sensitivity, enhancing its ability to detect lower analyte concentrations. pH sensing was carried out with a commercial screen-printed electrode coated with a layer of iridium oxide. The pH was tested in ruminal complex fluid, obtaining a pH sensitivity of -59.63 mV/pH and an accuracy of 98.9%. These findings highlighted the potential of this technology as an effective tool for dairy cattle health monitoring and its deployment in real-world scenarios.
乳制品行业的快速发展需要先进的监测工具,以确保有利于环境、经济和人类健康的可持续发展实践。目前的监测设备往往缺乏多参数功能,限制了它们提供关键化学和生化参数全面数据的能力。为应对这一挑战,本研究展示了一种实时多参数设备与用于pH值、温度、硝酸盐和亚硝酸盐的传感器的集成,为奶牛健康监测提供了全面的解决方案。该解决方案包括一个电化学平台、现场电化学实验室便携式单元(PULSE)以及一个用于数据处理和显示的应用程序。内部制造的柔性金印刷电极与PULSE集成时,分别在人工组织液和磷酸盐缓冲盐水中实现了对亚硝酸盐和硝酸盐的准确检测,灵敏度分别为6.32 μA/ppm/cm2和1.92 μA/ppm/cm2。与台式恒电位仪相比,PULSE在磷酸盐缓冲盐水中对硝酸盐和亚硝酸盐的检测下限分别降低了65.83%和58.3%,同时亚硝酸盐灵敏度提高了24.5%,增强了其检测更低分析物浓度的能力。pH传感采用涂有一层氧化铱的商用丝网印刷电极进行。在瘤胃复合液中测试pH值,获得的pH灵敏度为-59.63 mV/pH,准确度为98.9%。这些发现突出了该技术作为奶牛健康监测有效工具的潜力及其在实际场景中的应用前景。