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基于信号放大技术及DNA功能材料的生物传感器研究
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作者 朱亮 柴雅琴 《化学传感器》 CAS 2022年第1期1-10,共10页
临床相关分子(包括小分子、核酸和蛋白质)具有许多生物学功能,包括存储和传递遗传信息、调节生物活动、运输小分子和催化反应等等。此外,它们还可以作为许多疾病诊断的生物标记物。因此,这些小分子的精确检测对于疾病的诊断和治疗具有... 临床相关分子(包括小分子、核酸和蛋白质)具有许多生物学功能,包括存储和传递遗传信息、调节生物活动、运输小分子和催化反应等等。此外,它们还可以作为许多疾病诊断的生物标记物。因此,这些小分子的精确检测对于疾病的诊断和治疗具有十分重要的意义。生物传感器可以通过输出的信号对分析物进行定量分析,同时具有快速、灵敏和选择性高等特点,故而被广泛应用。近年来,随着DNA纳米技术的兴起,将DNA功能材料用于构建生物传感器对其灵敏度和特异性等性能的提高具有重要的意义。该论文将目标物循环扩增,杂交链式反应,滚环扩增及级联催化放大等信号放大技术和DNA功能材料相结合以增大信号响应,并以此构建不同的新型灵敏生物传感器。 展开更多
关键词 信号放大技术 dna功能材料 生物传感器
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Tuning the translational freedom of DNA for high speed AFM 被引量:3
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作者 Andrew J. Lee Michal Szymonik +1 位作者 Jamie K. Hobbs Christoph Walti 《Nano Research》 SCIE EI CAS CSCD 2015年第6期1811-1821,共11页
Direct observation is arguably the preferred way to investigate the interactions between two molecular complexes. With the development of high speed atomic force microscopy (AFM), it is becoming possible to observe ... Direct observation is arguably the preferred way to investigate the interactions between two molecular complexes. With the development of high speed atomic force microscopy (AFM), it is becoming possible to observe directly DNA-protein interactions with relevant spatial and temporal resolutions. These interactions are of central importance to biology, bionanotechnology, and functional biologically inspired materials. As in all microscopy studies, sample preparation plays a central role in AFM observation and minimal perturbation of the sample is desired. Here, we demonstrate the ability to tune the interactions between DNA molecules and the surface to create an association strong enough to enable high-resolution AFM imaging while also providing sufficient translational freedom to allow the relevant protein-DNA interactions to take place. Furthermore, we describe a quantitative method for measuring DNA mobility, while also determining the individual forces contributing to DNA movement. We found that for a weak surface association, a significant contribution to the movement arises from the interaction of the AFM tip with the DNA. In combination, these methods enable the tuning of the surface translational freedom of DNA molecules to allow the direct study of a wide range of nucleo-protein interactions by high speed atomic force microscopy. 展开更多
关键词 high speed atomic forcemicroscopy (HS-AFM) dna protein BIONANOTECHNOLOGY
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