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quantum dot-based fluorescence resonance energy transfer  (Quantum Dot Inc)

 
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    Quantum Dot Inc quantum dot-based fluorescence resonance energy transfer
    Quantum Dot Based Fluorescence Resonance Energy Transfer, supplied by Quantum Dot Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/quantum+dot-based+fluorescence+resonance+energy+transfer/quantum+dot+based+f%C3%B6rster+resonance+energy+transfer/pm35213135-207-7-5
    Average 90 stars, based on 1 article reviews
    quantum dot-based fluorescence resonance energy transfer - by Bioz Stars, 2026-09
    90/100 stars

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    Related Articles

    Amplification:

    Article Title: Semiconductor Nanocrystals Hybridized with Functional Ligands: New Composite Materials with Tunable Properties
    Article Snippet: Quantum dot-based fluorescence resonance energy transfer with improved FRET efficiency in capillary flows.

    Article Title: Substrate Metabolism-Driven Assembly of High-Quality CdS x Se 1- x Quantum Dots in Escherichia coli: Molecular Mechanisms and Bioimaging Application.
    Article Snippet: Subscriber access provided by BUFFALO STATE is published by the American Chemical Society.. 1155 Sixteenth Street N.W., Washington, DC 20036 Published by American Chemical Society.. Copyright © American Chemical Society.

    Article Title: Monitoring botulinum neurotoxin a activity with peptide-functionalized quantum dot resonance energy transfer sensors.
    Article Snippet: Kim E. Sapsford,†* Jessica Granek, Jeffrey R. Deschamps, Kelly Boeneman, Juan Bautista Blanco-Canosa, Philip E. Dawson, Kimihiro Susumu, Michael H. Stewart, and Igor L. Medintz* Division of Biology, Office of Science and Engineering Laboratories, U.S. Food and Drug Administration, Silver Spring, Maryland 20993, United States, Center for Bio/Molecular Science and Engineering Code 6900, and Optical Sciences Division Code 5600, U.S.. Naval Research Laboratory 4555 Overlook Avenue, S.W., Washington, D.C. 20375, United States, and Departments of Cell Biology and Chemistry, The Scripps Research Institute, La Jolla, California 92037, United States

    Article Title: Simultaneous Imaging of Dual microRNAs in Cancer Cells through Catalytic Hairpin Assembly on a DNA Tetrahedron.
    Article Snippet: Accurate detection and imaging of tumor-related microRNA (miRNA) in living cells hold great promise for early cancer diagnosis and prognosis.. One of the challenges is to develop methods that enable the identification of multiple miRNAs simultaneously to further improve the detection accuracy.. Herein, a simultaneous detection and imaging method of two miRNAs was established by using a programmable designed DNA tetrahedron nanostructure (DTN) probe that includes a nucleolin aptamer (AS1411), two miRNA capture strands, and two pairs of metastable catalytic hairpins at different vertexes.

    Article Title: Complex Förster energy transfer interactions between semiconductor quantum dots and a redox-active osmium assembly.
    Article Snippet: Michael H. Stewart,* Alan L. Huston, Amy M. Scott, Alexander L. Efros, Joseph S. Melinger, Kelly BoenemanGemmill, ) Scott A. Trammell, ) Juan B. Blanco-Canosa, Philip E. Dawson, and Igor L.Medintz ),* Optical Sciences Division, Code 5611, Center for Computational Materials Science, Code 6393, Electronic Science and Technology, Code 6812, and Center for Bio/Molecular Science and Engineering, Code 6900, U.S.. Naval Research Laboratory, Washington, D.C. 20375, United States, Department of Chemistry, Columbia University, New York, New York 10027, United States, and Departments of Cell Biology and Chemistry, The Scripps Research Institute, La Jolla, California 92037, United States.. Contributed equally.

    Article Title: Single-Molecule Measurements of Quenching and Photophysical Heterogeneity in Phycobiliproteins
    Article Snippet: 2584-Pos Board B600 Quantum Dot-based Fluorescence Resonance Energy Transfer through Exciton Dynamics in DNA-Templated J-Aggregates Sarthak Mandal1, Xu Zhou2, Nour Eddine Fahmi2, Su Lin1,3, Hao Yan2,3, Neal Woodbury1,3.

    Article Title: When Nanoworlds Collide: Implementing DNA Amplification, Nanoparticles, Molecules, and FRET into a Single MicroRNA Biosensor.
    Article Snippet: Integration of Isothermal Amplification with Quantum Dot-Based Fluorescence Resonance Energy Transfer for Simultaneous Detection of Multiple MicroRNAs.

    Fluorescence:

    Article Title: Semiconductor Nanocrystals Hybridized with Functional Ligands: New Composite Materials with Tunable Properties
    Article Snippet: Quantum dot-based fluorescence resonance energy transfer with improved FRET efficiency in capillary flows.

    Article Title: Substrate Metabolism-Driven Assembly of High-Quality CdS x Se 1- x Quantum Dots in Escherichia coli: Molecular Mechanisms and Bioimaging Application.
    Article Snippet: Subscriber access provided by BUFFALO STATE is published by the American Chemical Society.. 1155 Sixteenth Street N.W., Washington, DC 20036 Published by American Chemical Society.. Copyright © American Chemical Society.

    Article Title: Monitoring botulinum neurotoxin a activity with peptide-functionalized quantum dot resonance energy transfer sensors.
    Article Snippet: Kim E. Sapsford,†* Jessica Granek, Jeffrey R. Deschamps, Kelly Boeneman, Juan Bautista Blanco-Canosa, Philip E. Dawson, Kimihiro Susumu, Michael H. Stewart, and Igor L. Medintz* Division of Biology, Office of Science and Engineering Laboratories, U.S. Food and Drug Administration, Silver Spring, Maryland 20993, United States, Center for Bio/Molecular Science and Engineering Code 6900, and Optical Sciences Division Code 5600, U.S.. Naval Research Laboratory 4555 Overlook Avenue, S.W., Washington, D.C. 20375, United States, and Departments of Cell Biology and Chemistry, The Scripps Research Institute, La Jolla, California 92037, United States

    Article Title: Simultaneous Imaging of Dual microRNAs in Cancer Cells through Catalytic Hairpin Assembly on a DNA Tetrahedron.
    Article Snippet: Accurate detection and imaging of tumor-related microRNA (miRNA) in living cells hold great promise for early cancer diagnosis and prognosis.. One of the challenges is to develop methods that enable the identification of multiple miRNAs simultaneously to further improve the detection accuracy.. Herein, a simultaneous detection and imaging method of two miRNAs was established by using a programmable designed DNA tetrahedron nanostructure (DTN) probe that includes a nucleolin aptamer (AS1411), two miRNA capture strands, and two pairs of metastable catalytic hairpins at different vertexes.

    Article Title: Complex Förster energy transfer interactions between semiconductor quantum dots and a redox-active osmium assembly.
    Article Snippet: Michael H. Stewart,* Alan L. Huston, Amy M. Scott, Alexander L. Efros, Joseph S. Melinger, Kelly BoenemanGemmill, ) Scott A. Trammell, ) Juan B. Blanco-Canosa, Philip E. Dawson, and Igor L.Medintz ),* Optical Sciences Division, Code 5611, Center for Computational Materials Science, Code 6393, Electronic Science and Technology, Code 6812, and Center for Bio/Molecular Science and Engineering, Code 6900, U.S.. Naval Research Laboratory, Washington, D.C. 20375, United States, Department of Chemistry, Columbia University, New York, New York 10027, United States, and Departments of Cell Biology and Chemistry, The Scripps Research Institute, La Jolla, California 92037, United States.. Contributed equally.

    Article Title: Single-Molecule Measurements of Quenching and Photophysical Heterogeneity in Phycobiliproteins
    Article Snippet: 2584-Pos Board B600 Quantum Dot-based Fluorescence Resonance Energy Transfer through Exciton Dynamics in DNA-Templated J-Aggregates Sarthak Mandal1, Xu Zhou2, Nour Eddine Fahmi2, Su Lin1,3, Hao Yan2,3, Neal Woodbury1,3.

    Article Title: When Nanoworlds Collide: Implementing DNA Amplification, Nanoparticles, Molecules, and FRET into a Single MicroRNA Biosensor.
    Article Snippet: Integration of Isothermal Amplification with Quantum Dot-Based Fluorescence Resonance Energy Transfer for Simultaneous Detection of Multiple MicroRNAs.

    Förster Resonance Energy Transfer:

    Article Title: Semiconductor Nanocrystals Hybridized with Functional Ligands: New Composite Materials with Tunable Properties
    Article Snippet: Quantum dot-based fluorescence resonance energy transfer with improved FRET efficiency in capillary flows.

    Article Title: Substrate Metabolism-Driven Assembly of High-Quality CdS x Se 1- x Quantum Dots in Escherichia coli: Molecular Mechanisms and Bioimaging Application.
    Article Snippet: Subscriber access provided by BUFFALO STATE is published by the American Chemical Society.. 1155 Sixteenth Street N.W., Washington, DC 20036 Published by American Chemical Society.. Copyright © American Chemical Society.

    Article Title: Monitoring botulinum neurotoxin a activity with peptide-functionalized quantum dot resonance energy transfer sensors.
    Article Snippet: Kim E. Sapsford,†* Jessica Granek, Jeffrey R. Deschamps, Kelly Boeneman, Juan Bautista Blanco-Canosa, Philip E. Dawson, Kimihiro Susumu, Michael H. Stewart, and Igor L. Medintz* Division of Biology, Office of Science and Engineering Laboratories, U.S. Food and Drug Administration, Silver Spring, Maryland 20993, United States, Center for Bio/Molecular Science and Engineering Code 6900, and Optical Sciences Division Code 5600, U.S.. Naval Research Laboratory 4555 Overlook Avenue, S.W., Washington, D.C. 20375, United States, and Departments of Cell Biology and Chemistry, The Scripps Research Institute, La Jolla, California 92037, United States

    Article Title: Simultaneous Imaging of Dual microRNAs in Cancer Cells through Catalytic Hairpin Assembly on a DNA Tetrahedron.
    Article Snippet: Accurate detection and imaging of tumor-related microRNA (miRNA) in living cells hold great promise for early cancer diagnosis and prognosis.. One of the challenges is to develop methods that enable the identification of multiple miRNAs simultaneously to further improve the detection accuracy.. Herein, a simultaneous detection and imaging method of two miRNAs was established by using a programmable designed DNA tetrahedron nanostructure (DTN) probe that includes a nucleolin aptamer (AS1411), two miRNA capture strands, and two pairs of metastable catalytic hairpins at different vertexes.

    Article Title: Complex Förster energy transfer interactions between semiconductor quantum dots and a redox-active osmium assembly.
    Article Snippet: Michael H. Stewart,* Alan L. Huston, Amy M. Scott, Alexander L. Efros, Joseph S. Melinger, Kelly BoenemanGemmill, ) Scott A. Trammell, ) Juan B. Blanco-Canosa, Philip E. Dawson, and Igor L.Medintz ),* Optical Sciences Division, Code 5611, Center for Computational Materials Science, Code 6393, Electronic Science and Technology, Code 6812, and Center for Bio/Molecular Science and Engineering, Code 6900, U.S.. Naval Research Laboratory, Washington, D.C. 20375, United States, Department of Chemistry, Columbia University, New York, New York 10027, United States, and Departments of Cell Biology and Chemistry, The Scripps Research Institute, La Jolla, California 92037, United States.. Contributed equally.

    Article Title: Single-Molecule Measurements of Quenching and Photophysical Heterogeneity in Phycobiliproteins
    Article Snippet: 2584-Pos Board B600 Quantum Dot-based Fluorescence Resonance Energy Transfer through Exciton Dynamics in DNA-Templated J-Aggregates Sarthak Mandal1, Xu Zhou2, Nour Eddine Fahmi2, Su Lin1,3, Hao Yan2,3, Neal Woodbury1,3.

    Article Title: When Nanoworlds Collide: Implementing DNA Amplification, Nanoparticles, Molecules, and FRET into a Single MicroRNA Biosensor.
    Article Snippet: Integration of Isothermal Amplification with Quantum Dot-Based Fluorescence Resonance Energy Transfer for Simultaneous Detection of Multiple MicroRNAs.



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