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A 2D transition-metal dichalcogenide MoS2 based novel nanocomposite and nanocarrier for multiplex miRNA detectiont

机译:基于2 d过渡金属dichalcogenide二硫化钼新型纳米复合材料和nanocarrier多路复用

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Nanoscale MoS2 has attracted extensive attention for sensing due to its superior properties. This study outlines a microfluidic and electrochemical biosensing methodology for the multiplex detection of paratuberculosis-specific miRNAs. Herein, we report the synthesis of MoS2 nanosheets decorated with a copper ferrite (CuFe2O4) nanoparticle composite and molecular probe immobilized MoS2 nanosheets as nanocarriers for the electrochemical detection of miRNAs. Paratuberculosis is a bacterial infection of the intestinal tract of dairy cattle, and is a cause of substantial economic and animal losses all over the world. The designed biosensing electrode was modified with the synthesized MoS2-CuFe2O4 nanocomposites for a highly amplified signal generation. Additionally, selective detection of miRNAs was accomplished by functionalizing the MoS2 nanosheets with a miRNA-specific biotin-tagged thiolated molecular probe and ferrocene thiol. The presence of target miRNA triggered the opening of the molecular probe present on the nanocarriers. The interaction of the molecular probe and miRNA resulted in an increase in the electrochemical signal from ferrocene. The optimized microfluidic biosensor was employed to detect a range of miRNA concentrations from the target analyte. Using square wave voltammetric analysis, a detection limit of 0.48 pM was calculated, with a detection range of 1 pM to 1.5 nM. The application of the biosensor was also assessed by detecting miRNAs in spiked serum and positive clinical samples. The developed nanomaterial enabled biosensor easily discriminated between the target miRNAs and other interfering molecules. The developed microfluidic biosensor has the potential to be used as a point-of-care, miRNA based diagnostic tool for paratuberculosis in dairy cows.
机译:纳米级二硫化钼吸引了广泛关注对传感由于其优越的性能。研究了微流体和电化学若多路复用的方法检测paratuberculosis-specific microrna。在此,我们报告的合成二硫化钼nanosheets装饰着一个铜铁氧体(CuFe2O4)纳米复合材料和分子探针固定化二硫化钼nanosheets人们microrna的电化学检测。副结核是一种细菌感染的奶牛的肠道,是一个原因重大的经济损失和动物在世界各地。与合成MoS2-CuFe2O4修改吗纳米复合材料的一个高度放大的信号的一代。microrna是通过构建二硫化钼nanosheets miRNA-specificbiotin-tagged硫醇盐分子探针和二茂铁硫醇。引发的分子探针现在的人们。分子探针和microrna的导致了增加的电化学信号二茂铁。是用来检测一系列microrna的从目标分析物的浓度。方波伏安分析、检测下午0.48极限计算,检测下午1点到1.5纳米的范围。生物传感器也评估了检测microrna在血清和积极的临床样本。启用了发展纳米材料生物传感器容易目标microrna之间的歧视和其他干扰分子。微流控生物传感器有潜力用作医疗点,microrna的诊断副结核在奶牛的工具。

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