Attomolar label-free detection of DNA hybridization with electrolyte-gated graphene field-effect transistors.

ACS sensors(2019)

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摘要
In this work, we develop a field-effect transistor with a two-dimensional channel made of a single graphene layer to achieve label-free detection of DNA hybridization down to attomolar concentration, while being able to discriminate a single nucleotide polymorphism (SNP). The SNP-level target specificity is achieved by immobilization of probe DNA on the graphene surface through a pyrene-derivative heterobifunctional linker. Biorecognition events result in a posi-tive gate voltage shift of the graphene charge neutrality point. The graphene transistor biosensor displays a sensitivity of 24 mV/dec with a detection limit of 25 aM: the lowest target DNA concentration for which the sensor can discrimi-nate between a perfect-match target sequence and SNP-containing one.
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关键词
biosensor,graphene,DNA,EGFET (electrolyte-gated field-effect transistor),planar technology,receded gate transistor,surface functionalization
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