Zhang Yiting, Xing Hu, Li Runliu, Andersson Jakob, Bozdogan Anil, Strassl Robert, Draphoen Bastian, Lindén Mika, Henkel Marius, Knippschild Uwe, Hasler Roger, Kleber Christoph, Knoll Wolfgang, Kissmann Ann-Kathrin, Rosenau Frank
Institute of Pharmaceutical Biotechnology, Ulm University, Albert-Einstein-Allee 11, 89081, Ulm, Germany.
AIT Austrian Institute of Technology GmbH, Giefinggasse 4, Vienna, 1210, Austria.
Adv Healthc Mater. 2025 Feb;14(4):e2403827. doi: 10.1002/adhm.202403827. Epub 2024 Dec 11.
Roseburia intestinalis, enriched in the gut, is closely associated with obesity, intestinal inflammation, and other diseases. A novel detection method for R. intestinalis to replace the commonly used 16S rRNA sequencing technique is aim to developed, thus enabling real-time and low-cost monitoring of gut microbiota. The optimal solution is to utilize rGO-FET (reduced graphene oxide field-effect transistor) functionalized with aptamers. Due to the high sensitivity of graphene sensors to electronic changes in the system, it is anticipated to achieve detection sensitivity that traditional fluorescence detection techniques cannot attain. The previous work reported a nucleic acid aptamer library, Ri 7_2, capable of quantitatively tracking R. intestinalis in complex systems. However, due to the complexity of the aptamer library itself, large-scale industrial synthesis is challenging, significantly limiting its further commercial application potential. Therefore, in this study, through Next-Generation Sequencing analysis, four representative single aptamers from the aptamer library is strategically selected, named A-Rose 1, A-Rose 2, A-Rose 3, and A-Rose 4, and confirmed their excellent performance similar to the aptamer library Ri 7_2. Furthermore, aptamer-modified rGO-FET demonstrated universality in detecting R. intestinalis in a series of biochemical analyses, providing a novel and powerful diagnostic tool for the clinical diagnosis of R. intestinalis.
肠道罗氏菌在肠道中大量存在,与肥胖、肠道炎症及其他疾病密切相关。旨在开发一种新型的肠道罗氏菌检测方法,以取代常用的16S rRNA测序技术,从而实现对肠道微生物群的实时低成本监测。最佳解决方案是利用用适配体功能化的还原氧化石墨烯场效应晶体管(rGO-FET)。由于石墨烯传感器对系统中的电子变化具有高灵敏度,预计可实现传统荧光检测技术无法达到的检测灵敏度。先前的工作报道了一个核酸适配体文库Ri 7_2,它能够在复杂系统中定量追踪肠道罗氏菌。然而,由于适配体文库本身的复杂性,大规模工业合成具有挑战性,这显著限制了其进一步的商业应用潜力。因此,在本研究中,通过下一代测序分析,从适配体文库中策略性地选择了四个代表性的单适配体,命名为A-Rose 1、A-Rose 2、A-Rose 3和A-Rose 4,并证实它们具有与适配体文库Ri 7_2相似的优异性能。此外,适配体修饰的rGO-FET在一系列生化分析中检测肠道罗氏菌时表现出通用性,为肠道罗氏菌的临床诊断提供了一种新颖且强大的诊断工具。