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Inverse Molecular Sentinel-Integrated Fiberoptic Sensor for Direct and in Situ Detection of miRNA Targets

机译:反相分子局部纤维纤维传感器,用于直接和原位检测miRNA靶标

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摘要

Molecular advances have been made in analysis systems for a wide variety of applications ranging from biodiagnostics, biosafety, bioengineering, and biofuel research applications. There are, however, limited practical tools necessary for in situ and accurate detection of nucleic acid targets during field work. New technology is needed to translate these molecular advances from laboratory settings into the real-life practical monitoring realm. The exquisite characteristics (e.g., sensitivity and adaptability) of plasmonic nanosensors have made them attractive candidates for field-ready sensing applications. Herein, we have developed a fiber-based plasmonic sensor capable of direct detection (i.e., no washing steps required) of nucleic acid targets, which can be detected simply by immerging the sensor in the sample solution. This sensor is composed of an optical fiber that is decorated with plasmonic nanoprobes based on silver-coated gold nanostars (AuNS@Ag) to detect target nucleic acids using referred to as inverse molecular sentinels (iMS). These fiber-optrodes can be reused for several detection-regeneration cycles (>6). The usefulness and applicability of the iMS fiber-sensors was tested by detecting target miRNA in extracts from leaves of plants that were induced to have different expression levels of miRNA targets. These fiber-optrodes enable direct detection of miRNA in plant tissue extract without the need for complex assays by simply immersing the fiber in the sample solution. The results indicate the fiber-based sensors developed herein have the potential to be a powerful tool for field and in situ analysis of nucleic acid samples.
机译:用于分析系统的分析系统,用于各种应用,包括生物诊断,生物安全,生物工程和生物燃料研究应用。然而,在现场工作期间,原位和准确地检测核酸靶的有限实用工具。需要新技术将这些分子进步转化为实验室进入真实实际监测领域。等级体纳米传感器的精致特征(例如,灵敏度和适应性)使其成为现场阅读应用的吸引力候选者。在此,我们开发了一种能够直接检测(即,不需要洗涤步骤)的基于纤维的等离子体传感器,其可以简单地通过浸入样品溶液中的传感器来检测。该传感器由基于银色纳米素(AUNS @ AG)的等离子体纳米体纳米体(AUNS @ AG)装饰的光纤组成,以检测使用称为逆分子哨片(IMS)的靶核酸。这些纤维磷光渗透可重复使用几个检测再生循环(> 6)。通过检测诱导的植物叶子中的靶miRNA具有不同表达水平的miRNA靶标的靶miRNA来测试IMS纤维传感器的有用性和适用性。这些纤维磷光孔能够直接检测植物组织提取物中的miRNA,而无需通过简单地浸入样品溶液中的纤维来进行复杂的测定。结果表明,本文开发的基于纤维的传感器具有对现场的强大工具以及核酸样品的原位分析。

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