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纳米材料和核酸扩增在适体传感器中用于小分子污染物检测的信号增强策略。

Signal enhancing strategies in aptasensors for the detection of small molecular contaminants by nanomaterials and nucleic acid amplification.

机构信息

College of Pharmaceutical Engineering of Traditional Chinese Medicine, Tianjin University of Traditional Chinese Medicine, Tianjin, 301617, China.

College of Pharmaceutical Engineering of Traditional Chinese Medicine, Tianjin University of Traditional Chinese Medicine, Tianjin, 301617, China; State Key Laboratory of Component-based Chinese Medicine, Tianjin University of Traditional Chinese Medicine, Tianjin, 301617, China.

出版信息

Talanta. 2022 Jan 1;236:122866. doi: 10.1016/j.talanta.2021.122866. Epub 2021 Sep 9.

Abstract

Small molecular contaminants (such as mycotoxins, antibiotics, pesticide residues, etc.) in food and environment have given rise to many biological and ecological toxicities, which has attracted worldwide attention in recent years. Meanwhile, due to the advantages of aptamers such as high specificity and stability, easy synthesis and modification, as well as low cost and immunogenicity, various aptasensors for the detection of small molecular contaminants have been flourishing. An aptasensor as a whole is composed of an aptamer-based target recognizer and a signal transducer, which are fields of concentrated research. In the practical detection applications, in order to achieve the quantitative detection of small molecular contaminants at low abundance in real samples, a large number of signal enhancing strategies have been utilized in the development of aptasensors. Recent years is a vintage period for efficient signal enhancing strategies of aptasensors by the aid of nanomaterials and nucleic acid amplification that are applied in the elements for target recognition and signal conversion. Therefore, this paper meticulously reviews the signal enhancing strategies based on nanomaterials (including the (quasi-)zero-dimensional, one-dimensional, two-dimensional and three-dimensional nanomaterials) and nucleic acid amplification (including enzyme-assisted nucleic acid amplification and enzyme-free nucleic acid amplification). Furthermore, the challenges and future trends of the abovementioned signal enhancing strategies for application are also discussed in order to inspire the practitioners in the research and development of aptasensors for small molecular contaminants.

摘要

食品和环境中的小分子污染物(如真菌毒素、抗生素、农药残留等)引起了许多生物和生态毒性,近年来引起了全世界的关注。同时,由于适配体具有高特异性和稳定性、易于合成和修饰、成本低、免疫原性低等优点,各种用于检测小分子污染物的适配体传感器如雨后春笋般涌现。适配体传感器整体由基于适配体的靶标识别器和信号转换器组成,这是集中研究的领域。在实际检测应用中,为了实现对实际样品中低丰度小分子污染物的定量检测,在适配体传感器的开发中利用了大量的信号增强策略。近年来,借助纳米材料和核酸扩增的适配体传感器的高效信号增强策略取得了丰硕的成果,这些策略应用于靶标识别和信号转换元件中。因此,本文详细综述了基于纳米材料(包括(准)零维、一维、二维和三维纳米材料)和核酸扩增(包括酶辅助核酸扩增和无酶核酸扩增)的信号增强策略。此外,还讨论了上述信号增强策略在应用中的挑战和未来趋势,以期为小分子污染物适配体传感器的研究和开发人员提供灵感。

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