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Titlebook: Biosensors Based on Sandwich Assays; Fan Xia,Xiaojin Zhang,Quan Yuan Book 2018 Springer Nature Singapore Pte Ltd. 2018 Analytic methods.Bi

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https://doi.org/10.1007/978-1-4842-5943-6scence resonance energy transfer (FRET) and DNA hybridization-induced fluorescence enhancement. Furthermore, we discuss the limitations and challenges in the development of fluorescent sandwich assays regarding sensitivity and multiple detection capacity, thus providing an overview of the developing
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Fluorescence Sandwich Assays for Nucleic Acid Detection,scence resonance energy transfer (FRET) and DNA hybridization-induced fluorescence enhancement. Furthermore, we discuss the limitations and challenges in the development of fluorescent sandwich assays regarding sensitivity and multiple detection capacity, thus providing an overview of the developing
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Fluorescence Sandwich Assays for Protein Detection,andwich assays have been developed for multivalent proteins detection and have been prevailing for decades in the field of clinical diagnostics and bio-detection. The sandwich assays usually give a high sensitivity and selectivity because of the usage of a couple of match recognition probe and signa
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Electrochemical Sandwich Assays for Protein Detection, this goal, numerous researchers have devoted great efforts to develop a variety of approaches for protein detections, among which electrochemical sandwich assay appears as a very promising one because their signaling mechanism between redox-active tags and electrode renders this approach to be high
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Colorimetric Sandwich Assays for Nucleic Acid Detection,pter, we summarized the development of colorimetric sandwich assay employed nanoparticles-, traditional enzyme-, and DNAzyme-based sensor, aiming at providing a general guide for designing colorimetric sandwich assay for the detection of nucleic acid. Furthermore, we discussed the challenges in the
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