Department of Biology, Faculty of Sciences, Shahid Bahonar University of Kerman, Kerman, Iran.
Department of Biology, Faculty of Sciences, Shahid Bahonar University of Kerman, Kerman, Iran.
Int J Biol Macromol. 2018 Aug;115:1241-1248. doi: 10.1016/j.ijbiomac.2018.04.077. Epub 2018 Apr 14.
Changes in choline levels can be associated with diseases such as Alzheimer, Parkinson, Huntington, fatty liver, interstitial lung abnormalities, autism and so on. Therefore, quantitative determination of choline is important in the biological and clinical analysis. So far, several methods have been investigated for measuring choline in the body fluids, each of which has disadvantages such as the need for specialist ability, complexity, and high cost. For this purpose, a facile and sensitive colorimetric biosensor based on DNAzyme-choline oxidase coupling used for the determination of choline. In this method, the first, choline oxidase produces HO and betaine in the presence of choline and oxygen, then, the DNAzyme converts colorless ABTS into green ABTS radicals. Compared to the previous methods, the linear range and the limit of detection of this talented biosensor were 0.1-25 μM and 22 nM. Choline measurement using this biosensor has shown satisfactory selectivity and repeatability. Its recovery was 96.9-103.7%, which shows the reliability of biosensor assay in biological samples. Simplicity, low cost, naked eye, high sensitivity, and precision are the benefits of this biosensor. Taken to gather, the proposed system can be considered as a great biosensor for measuring choline levels especially in point of care diagnostic.
胆碱水平的变化可能与阿尔茨海默病、帕金森病、亨廷顿病、脂肪肝、间质性肺病异常、自闭症等疾病有关。因此,定量测定胆碱在生物和临床分析中非常重要。到目前为止,已经研究了几种测量体液中胆碱的方法,每种方法都有需要专业能力、复杂和高成本等缺点。为此,我们提出了一种基于 DNA 酶-胆碱氧化酶偶联的简便灵敏比色生物传感器,用于测定胆碱。在该方法中,首先,胆碱氧化酶在胆碱和氧气的存在下产生 HO 和甜菜碱,然后,DNA 酶将无色 ABTS 转化为绿色 ABTS 自由基。与以前的方法相比,该生物传感器的线性范围和检测限分别为 0.1-25 μM 和 22 nM。使用该生物传感器进行胆碱测量显示出令人满意的选择性和重现性。其回收率为 96.9-103.7%,表明生物传感器在生物样品中的测定具有可靠性。该生物传感器具有简单、低成本、肉眼观察、高灵敏度和精度的优点。综上所述,该系统可以被认为是一种用于测量胆碱水平的优秀生物传感器,特别是在即时诊断方面。