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- W2466658545 endingPage "1702" @default.
- W2466658545 startingPage "1683" @default.
- W2466658545 abstract "Nucleic acids are among the most researched and applied biomolecules. Their diverse two- and three-dimensional structures in conjunction with their robust chemistry and ease of manipulation provide a rare opportunity for sensor applications. Moreover, their high biocompatibility has seen them being used in the construction of in vivo assays. Various nucleic acid-based devices have been extensively studied as either the principal element in discrete molecule-like sensors or as the main component in the fabrication of sensing devices. The use of aptamers in sensors - aptasensors, in particular, has led to improvements in sensitivity, selectivity, and multiplexing capacity for a wide verity of analytes like proteins, nucleic acids, as well as small biomolecules such as glucose and adenosine triphosphate (ATP). This article reviews the progress in the use of aptamers as the principal component in sensors for optical detection of ATP with an emphasis on sensing mechanism, performance, and applications with some discussion on challenges and perspectives." @default.
- W2466658545 created "2016-07-22" @default.
- W2466658545 creator A5006671043 @default.
- W2466658545 creator A5022554369 @default.
- W2466658545 creator A5024338477 @default.
- W2466658545 creator A5051326531 @default.
- W2466658545 date "2016-01-01" @default.
- W2466658545 modified "2023-10-01" @default.
- W2466658545 title "Optical Aptasensors for Adenosine Triphosphate" @default.
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