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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >High-performance portable graphene field-effect transistor device for detecting Gram-positive and -negative bacteria
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High-performance portable graphene field-effect transistor device for detecting Gram-positive and -negative bacteria

机译:用于检测革兰氏阳性和阴性细菌的高性能便携式石墨烯场效应晶体管装置

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摘要

Current techniques for Gram-typing and for diagnosing a pathogen at the early infection stage rely on Gram stains, cultures, Enzyme linked immunosorbent assay (ELISA), polymerase chain reaction (PCR), and gene microarrays, which are labor-intensive and time-consuming approaches. In addition, a delayed or imprecise diagnosis of clinical pathogenic bacteria leads to a life-threatening emergency or overuse of antibiotics and a high-rate occurrence of antimicrobial-resistance microbes. Herein, we report high-performance antibiotics (as bioprobes) conjugated graphene micropattern field-effect transistors (ABX-GMFETs) to facilitate on-site Gram-typing and help in the detection of the presence or absence of Gram-negative and -positive bacteria in the samples. The ABX-GMFET platform, which consists of recognition probes and GM transistors conjugated with novel interfacing chemical compounds, was integrated into the microfluidics to minimize the required human intervention and facilitate automation. The mechanism of binding of ABX-GMFET was based on a charge or chemical moiety interaction between the bioprobes and target bacteria. Subsequently, ABX-GMFETs exhibited unprecedented high sensitivity with a limit of detection (LOD) of 10(0) CFU/mL (1-9 CFU/mL), real-time target specificity.
机译:克型和用于诊断早期感染阶段的病原体的当前技术依赖于克染色,培养物,酶联免疫吸附测定(ELISA),聚合酶链式反应(PCR)和基因微阵列,它们是劳动密集型和时间 - 消耗方法。此外,对临床病原细菌的延迟或不精确的诊断导致危及生命的紧急或过度使用的抗生素和抗菌性抗性微生物的高速率发生。在此,我们报告了高性能抗生素(作为生物体)共轭石墨烯微型局部效应晶体管(ABX-GMFET),以促进现场革兰氏键入,并有助于检测革兰氏阴性和阳性细菌的存在或不存在在样品中。由识别探针和与新型接口化学化合物共轭的识别探针和GM晶体管组成的ABX-GMFET平台被整合到微流体中,以最大限度地减少所需的人类干预并促进自动化。 ABX-GMFET的结合机制基于生物体和靶细菌之间的电荷或化学部分相互作用。随后,ABX-GMFET具有前所未有的高灵敏度,其检测极限(LOD)为10()CFU / mL(1-9CFU / mL),实时靶标特异性。

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