Nagabooshanam Shalini, Talluri Bhusankar, Thomas Tiju, Krishnamurthy Satheesh, Mathur Ashish
Department of Mechanical Engineering, Indian Institute of Technology Madras, Chennai 600036, India.
Amity Institute of Nanotechnology, Amity University Uttar Pradesh, Sector-125, Noida 201301, India.
Micromachines (Basel). 2022 Aug 25;13(9):1385. doi: 10.3390/mi13091385.
The extensive use of organophosphates (OPs) pollutes the environment, leading to serious health hazards for human beings. The current need is to fabricate a sensing platform that will be sensitive and selective towards the detection of OPs at trace levels in the nM to fM range. With this discussed in the present report, an ultra-sensitive immunosensing platform is developed using digestive-ripened copper oxide quantum dots grafted on a gold microelectrode (Au-µE) for the impedimetric detection of parathion (PT). The copper oxide quantum dots utilized in this study were of ultra-small size with a radius of approximately 2 to 3 nm and were monodispersed with readily available functional groups for the potential immobilization of antibody parathion (Anti-PT). The miniaturization is achieved by the utilization of Au-µE and the microfluidic platform utilized has the sample holding capacity of about 2 to 10 µL. The developed immunosensor provided a wide linear range of detection from 1 µM to 1 fM. The lower Limit of Detection (LoD) for the developed sensing platform was calculated to be 0.69 fM, with the sensitivity calculated to be 0.14 kΩ/nM/mm. The stability of the sensor was found to be ~40 days with good selectivity. The developed sensor has the potential to integrate with a portable device for field applications.
有机磷酸酯(OPs)的广泛使用污染了环境,对人类健康造成严重危害。当前的需求是构建一个传感平台,该平台能够对纳摩尔(nM)至飞摩尔(fM)范围内的痕量OPs进行灵敏且选择性的检测。本报告讨论了这一问题,通过将消化成熟的氧化铜量子点接枝到金微电极(Au-µE)上,开发了一种超灵敏免疫传感平台,用于对硫磷(PT)进行阻抗检测。本研究中使用的氧化铜量子点尺寸超小,半径约为2至3纳米,且单分散,具有易于利用的官能团,可用于固定抗硫磷抗体(Anti-PT)。通过使用Au-µE实现了小型化,所使用的微流控平台的样品容纳量约为2至10微升。所开发的免疫传感器提供了从1微摩尔到1飞摩尔的宽检测线性范围。所开发传感平台的检测下限(LoD)经计算为0.69飞摩尔,灵敏度经计算为0.14千欧/纳摩尔/毫米。该传感器的稳定性约为40天,具有良好的选择性。所开发的传感器有潜力与便携式设备集成用于现场应用。