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Non-Invasive Screening for Alzheimer’s Disease by Sensing Salivary Sugar Using Drosophila Cells Expressing Gustatory Receptor (Gr5a) Immobilized on an Extended Gate Ion-Sensitive Field-Effect Transistor (EG-ISFET) Biosensor

机译:使用固定在扩展门离子敏感场效应晶体管(EG-ISFET)生物传感器上的表达性受体(Gr5a)的果蝇细胞感测唾液糖无创性筛查阿尔茨海默氏病

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摘要

Body fluids are often used as specimens for medical diagnosis. With the advent of advanced analytical techniques in biotechnology, the diagnostic potential of saliva has been the focus of many studies. We recently reported the presence of excess salivary sugars, in patients with Alzheimer’s disease (AD). In the present study, we developed a highly sensitive, cell-based biosensor to detect trehalose levels in patient saliva. The developed biosensor relies on the overexpression of sugar sensitive gustatory receptors (Gr5a) in Drosophila cells to detect the salivary trehalose. The cell-based biosensor was built on the foundation of an improved extended gate ion-sensitive field-effect transistor (EG-ISFET). Using an EG-ISFET, instead of a traditional ion-sensitive field-effect transistor (ISFET), resulted in an increase in the sensitivity and reliability of detection. The biosensor was designed with the gate terminals segregated from the conventional ISFET device. This design allows the construction of an independent reference and sensing region for simultaneous and accurate measurements of samples from controls and patients respectively. To investigate the efficacy of the cell-based biosensor for AD screening, we collected 20 saliva samples from each of the following groups: participants diagnosed with AD, participants diagnosed with Parkinson’s disease (PD), and a control group composed of healthy individuals. We then studied the response generated from the interaction of the salivary trehalose of the saliva samples and the Gr5a in the immobilized cells on an EG-ISFET sensor. The cell-based biosensor significantly distinguished salivary sugar, trehalose of the AD group from the PD and control groups. Based on these findings, we propose that salivary trehalose, might be a potential biomarker for AD and could be detected using our cell-based EG-ISFET biosensor. The cell-based EG-ISFET biosensor provides a sensitive and direct approach for salivary sugar detection and may be used in the future as a screening method for AD.
机译:体液经常被用作医学诊断的标本。随着生物技术中先进分析技术的出现,唾液的诊断潜力已成为许多研究的重点。我们最近报道了阿尔茨海默氏病(AD)患者中唾液糖过多的情况。在本研究中,我们开发了一种高度敏感的基于细胞的生物传感器来检测患者唾液中的海藻糖水平。研发的生物传感器依靠果蝇细胞中糖敏感味觉受体(Gr5a)的过表达来检测唾液海藻糖。基于细胞的生物传感器建立在改进的扩展栅极离子敏感场效应晶体管(EG-ISFET)的基础上。使用EG-ISFET代替传统的离子敏感场效应晶体管(ISFET),可以提高检测的灵敏度和可靠性。该生物传感器的栅极端子与常规ISFET器件隔离。这种设计允许构建一个独立的参考和传感区域,以便同时,准确地分别测量来自对照和患者的样品。为了研究基于细胞的生物传感器进行AD筛查的功效,我们从以下各组中收集了20份唾液样本:诊断为AD的参与者,诊断为帕金森氏病(PD)的参与者以及由健康个体组成的对照组。然后,我们研究了在EG-ISFET传感器上固定化细胞中唾液样品唾液海藻糖与Gr5a相互作用产生的响应。基于细胞的生物传感器可显着区分AD组的唾液糖,海藻糖与PD组和对照组。基于这些发现,我们建议唾液海藻糖可能是AD的潜在生物标志物,并且可以使用我们基于细胞的EG-ISFET生物传感器进行检测。基于细胞的EG-ISFET生物传感器为唾液糖的检测提供了一种灵敏而直接的方法,将来可能用作AD的筛查方法。

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