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dc.contributorInterdisciplinary Division of Biomedical Engineeringen_US
dc.contributor.advisorYang, Mo (BME)-
dc.creatorTan, Xiaoying-
dc.identifier.urihttps://theses.lib.polyu.edu.hk/handle/200/8419-
dc.languageEnglishen_US
dc.publisherHong Kong Polytechnic University-
dc.rightsAll rights reserveden_US
dc.titleGraphene quantum dots-aptamer and graphene oxide based fluorescence resonance energy transfer biosensor for the detection of EpCAM protein and breast cancer cell (MCF-7)en_US
dcterms.abstractFluorescence resonance energy transfer (FRET) is a nano-scale technique that has already been developed since the early years. Nowadays, FRET phenomenon has been used in biosensing, imaging and diseases treatment mutually. This study introduces a novel material to construct FRET biosensing platform for protein and cell detection. Comparing to traditional organic donors, graphene quantum dots bring various benefits for biosensor such as stable optical properties and longer life time. And with a wide absorption spectrum and excellent quenching ability, graphene oxide is as a perfect quencher in FRET biosensor. In this dissertation, graphene quantum dots functionalized by aptamer and graphene oxide based FRET biosensor platform was developed for sensitive and specific detection of EpCAM protein and MCF-7 breast cancer cells. The GQDs-aptamer acts as the donor is quenched by GO acceptor. As the interaction of GQDs-aptamer complex with GO is broken in favour for a stronger and more specific binding with the target protein, the fluorescent signal was restored and the existence of target was detected sensitively and selectively.en_US
dcterms.extentx, 59 pages : color illustrationsen_US
dcterms.isPartOfPolyU Electronic Thesesen_US
dcterms.issued2015en_US
dcterms.educationalLevelAll Masteren_US
dcterms.educationalLevelM.Sc.en_US
dcterms.LCSHBiosensors.en_US
dcterms.LCSHFluorescent probes.en_US
dcterms.LCSHFluorescence.en_US
dcterms.LCSHHong Kong Polytechnic University -- Dissertationsen_US
dcterms.accessRightsrestricted accessen_US

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Please use this identifier to cite or link to this item: https://theses.lib.polyu.edu.hk/handle/200/8419