Xing Hu, Kissmann Ann-Kathrin, Raber Heinz Fabian, Krämer Markus, Amann Valerie, Kohn Kathrin, Weil Tanja, Rosenau Frank
Institute for Pharmaceutical Biotechnology, Ulm University, Albert-Einstein-Allee 11, 89081 Ulm, Germany.
Max Planck Institute for Polymer Research Mainz, Ackermannweg 10, 55128 Mainz, Germany.
Microorganisms. 2021 Nov 2;9(11):2284. doi: 10.3390/microorganisms9112284.
Single-stranded DNA aptamers as affinity molecules for the rapid, reliable detection of intestinal bacteria are of particular interest to equip health systems with novel robust and cheap diagnostic tools for monitoring the success of supplementation strategies with selected probiotic gut bacteria in the fight against major widespread threats, such as obesity and neurodegenerative diseases. The human gut bacterium () is positively associated with diseases such as obesity, non-alcoholic fatty liver disease and multiple sclerosis with reduced cell counts in these diseases and is thus a promising potential probiotic bacterium for future microbial supplementation. In this paper we report on the evolution of a specific polyclonal aptamer library by the fluorescence based FluCell-SELEX directed against whole cells of that specifically and efficiently binds and labels . The aptamer library showed high binding affinity and was suited to quantitatively discriminate from other prominent gut bacteria also in mixtures. We believe that this library against a promising probiotic bacterium as a prototype may open new routes towards the development of novel biosensors for the easy and efficient quantitative monitoring of microbial abundance in human microbiomes in general.
单链DNA适配体作为用于快速、可靠检测肠道细菌的亲和分子,对于为卫生系统配备新型强大且廉价的诊断工具尤为重要,这些工具可用于监测在对抗肥胖和神经退行性疾病等主要广泛威胁中使用特定益生菌肠道细菌的补充策略的成效。人类肠道细菌()与肥胖、非酒精性脂肪性肝病和多发性硬化症等疾病呈正相关,在这些疾病中其细胞数量减少,因此是未来微生物补充的一种有前景的潜在益生菌。在本文中,我们报告了通过基于荧光的FluCell-SELEX针对的全细胞进化出的特异性多克隆适配体文库,该文库能特异性且高效地结合并标记。该适配体文库显示出高结合亲和力,并且还适用于在混合物中从其他突出的肠道细菌中定量区分。我们相信,作为原型的针对一种有前景的益生菌的这个文库,可能会为开发新型生物传感器开辟新途径,以便总体上轻松、高效地定量监测人类微生物群中的微生物丰度。