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Aptamer optical switches: From biosensing to intracellular sensing

期刊

SENSORS AND ACTUATORS REPORTS
卷 3, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.snr.2021.100030

关键词

Aptamers; Optical switch; Luminescence; Surface plasmon resonance; Nanomaterials; Intracellular sensing

资金

  1. Italian Ministry for University and Research in the framework of Bando PRIN [2017YER72K]

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Aptamers are a powerful and versatile tool in biosensing, offering a wide range of possibilities for constructing biosensing methods for various targets. By utilizing the conformational changes of aptamers when binding to targets, they can be labeled and coupled to other DNA sequences, nanomaterials, or polymers to develop optical biosensing systems. This review focuses on recent research on aptamers as optical switches in biosensing, discussing various optical approaches and the combination of aptamer optical switches and nanomaterials.
Aptamers are the evidence of the power and versatility of DNA. In the biosensing field, if the important properties of aptamers together with all the many different conformations they can adopt are coupled to the proper transduction system, an unthinkable amount of possibilities is open up to construct biosensing methods for, in principle, any imaginable target. Inspired by classical molecular beacons, by using the intrinsic property of aptamers of changing their conformation when binding to the target and the possibility of labelling and coupling them to other DNA sequences, nanomaterials or polymers, a large variety of turn on or turn off' optical biosensing systems, can be developed. This review gives an overview of the recent works dealing with aptamers as optical switches in biosensing. Several optical approaches based on luminescence are considered, ranging from fluorescence, to chemi/bio luminescence, to plasmon field-enhanced fluorescence. The attractive combination of aptamer optical switches and nanomaterials is also discussed. Finally, the appealing and challenging application of aptamer optical switches to intracellular sensing and imaging is presented.

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