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A sensitive and selective protein biosensor was proposed based on cationic conjugated polymer (PFP -induced signal amPFP -inducedwith the aid of terminal protection of signalmolecule-linked DNamplificationd graphene oxide (GO).
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In this study, a novel label-free fluorescent biosensor for Pb2+ was proposed based on Pb2+-induced allosteric G-quadruplex (PS2.M).
In this paper, a novel label-free fluorescent biosensor for terbium (Tb3+) was proposed based on structural conversion of G-quadruplex DNA mediated by Thioflavin T (ThT) and Tb3+.
A highly selective and accurate on-off ratiometric electrochemical biosensor to detect glucose was proposed based on gold nanoparticles (AuNPs -glucose oxidAuNPs -glucosecoxidasees as the catalyst for both the oxidation of GODcose ananocompositeschemicas reducthen of O2 and the thionine as the inner referencatalystl for the first time.
A rapid and simple approach of lactose analysis is proposed based on 3rd generation amperometric biosensors employing cellobiose dehydrogenase (CDH) from Trametes villosa or Phanerochaete sordida immobilised on screen-printed carbon electrodes (SPCEs).
In this study, an enzyme-free and selective fluorescence biosensor is proposed for β-thalassemia SNV detection based on X-shaped probe, locked nucleic acid (LNA), and toehold-mediated strand-displacement reaction (TMSDR -assisted recycling TMSDR -assisted
Surface plasmon resonance based silicon-chip biosensor is proposed for the detection of different human blood groups in near infrared region.
In this work, a novel PC-based nanofluidic biosensor structure was proposed, simulated, and fabricated.
A nanofluidic biosensor based on nanoreplica molding photonic crystal (PC) was proposed.
Thus, the prepared GOD/PtAuNP/ss-DNA/GR electrode was proposed as a biosensor for the quantification of glucose.
A model was proposed to guide the design of such a planar waveguide-based evanescent wave biosensor.
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