Azadioxatriangulenium: a long fluorescence lifetime fluorophore for large biomolecule binding assay

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Standard

Azadioxatriangulenium : a long fluorescence lifetime fluorophore for large biomolecule binding assay . / Sørensen, Thomas Just; Thyrhaug, Erling; Szabelski, Mariusz; Luchowski, Rafal; Gryczynski, Ignacy; Gryczynski, Zygmunt; Laursen, Bo Wegge.

I: Methods and Applications in Fluorescence, Bind 1, Nr. 2, 025001, 2013.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Sørensen, TJ, Thyrhaug, E, Szabelski, M, Luchowski, R, Gryczynski, I, Gryczynski, Z & Laursen, BW 2013, 'Azadioxatriangulenium: a long fluorescence lifetime fluorophore for large biomolecule binding assay ', Methods and Applications in Fluorescence, bind 1, nr. 2, 025001. https://doi.org/10.1088/2050-6120/1/2/025001

APA

Sørensen, T. J., Thyrhaug, E., Szabelski, M., Luchowski, R., Gryczynski, I., Gryczynski, Z., & Laursen, B. W. (2013). Azadioxatriangulenium: a long fluorescence lifetime fluorophore for large biomolecule binding assay . Methods and Applications in Fluorescence, 1(2), [025001]. https://doi.org/10.1088/2050-6120/1/2/025001

Vancouver

Sørensen TJ, Thyrhaug E, Szabelski M, Luchowski R, Gryczynski I, Gryczynski Z o.a. Azadioxatriangulenium: a long fluorescence lifetime fluorophore for large biomolecule binding assay . Methods and Applications in Fluorescence. 2013;1(2). 025001. https://doi.org/10.1088/2050-6120/1/2/025001

Author

Sørensen, Thomas Just ; Thyrhaug, Erling ; Szabelski, Mariusz ; Luchowski, Rafal ; Gryczynski, Ignacy ; Gryczynski, Zygmunt ; Laursen, Bo Wegge. / Azadioxatriangulenium : a long fluorescence lifetime fluorophore for large biomolecule binding assay . I: Methods and Applications in Fluorescence. 2013 ; Bind 1, Nr. 2.

Bibtex

@article{48a603247e8146a3aa99445ffb898ec1,
title = "Azadioxatriangulenium: a long fluorescence lifetime fluorophore for large biomolecule binding assay ",
abstract = "Of the many optical bioassays available, sensing by fluorescence anisotropy have great advantages as it provides a sensitive, instrumentally simple, ratiometric method of detection. However, it is hampered by a severe limitation as the emission lifetime of the label needs to be comparable to the correlation lifetime (tumbling time) of the biomolecule which is labelled. For proteins of moderate size this is in the order of 20-200 ns, which due to practical issues currently limits the choice of labels to the dansyl-type dyes and certain aromatics dyes. These have the significant drawback of UV/blue absorption and emission as well as an often significant solvent sensitivity. Here, we report the synthesis and characterization of a new fluorescent label for high molecular weight biomolecules assay based on the azadioxatriangulenium motif. The NHS ester of the long fluorescence lifetime, red emitting fluorophore: azadioxatriangulenium (ADOTA-NHS) was conjugated to anti-rabbit Immunoglobulin G (antiIgG). The long fluorescence lifetime was exploited to determine the correlation time of the high molecular weight antibody and its complex with rabbit Immuniglobulin G (IgG) with steady-state fluorescence anisotropy and time-resolved methods: solution phase immuno-assay was performed following either steady-state or time-resolved fluorescence anisotropy. By performing a variable temperature experiment it was determined that the binding of the ligand resulted in an increase in correlation time by more than 75 %, and a change in the steady-state anisotropy increase of 18%. The results show that the triangulenium class of dyes can be used in anisotropy assay for detecting binding events involving biomolecules of far larger size than what is possible with the other red emitting organic dyes.",
author = "S{\o}rensen, {Thomas Just} and Erling Thyrhaug and Mariusz Szabelski and Rafal Luchowski and Ignacy Gryczynski and Zygmunt Gryczynski and Laursen, {Bo Wegge}",
year = "2013",
doi = "10.1088/2050-6120/1/2/025001",
language = "English",
volume = "1",
journal = "Methods and Applications in Fluorescence",
issn = "2050-6120",
publisher = "Institute of Physics Publishing Ltd",
number = "2",

}

RIS

TY - JOUR

T1 - Azadioxatriangulenium

T2 - a long fluorescence lifetime fluorophore for large biomolecule binding assay

AU - Sørensen, Thomas Just

AU - Thyrhaug, Erling

AU - Szabelski, Mariusz

AU - Luchowski, Rafal

AU - Gryczynski, Ignacy

AU - Gryczynski, Zygmunt

AU - Laursen, Bo Wegge

PY - 2013

Y1 - 2013

N2 - Of the many optical bioassays available, sensing by fluorescence anisotropy have great advantages as it provides a sensitive, instrumentally simple, ratiometric method of detection. However, it is hampered by a severe limitation as the emission lifetime of the label needs to be comparable to the correlation lifetime (tumbling time) of the biomolecule which is labelled. For proteins of moderate size this is in the order of 20-200 ns, which due to practical issues currently limits the choice of labels to the dansyl-type dyes and certain aromatics dyes. These have the significant drawback of UV/blue absorption and emission as well as an often significant solvent sensitivity. Here, we report the synthesis and characterization of a new fluorescent label for high molecular weight biomolecules assay based on the azadioxatriangulenium motif. The NHS ester of the long fluorescence lifetime, red emitting fluorophore: azadioxatriangulenium (ADOTA-NHS) was conjugated to anti-rabbit Immunoglobulin G (antiIgG). The long fluorescence lifetime was exploited to determine the correlation time of the high molecular weight antibody and its complex with rabbit Immuniglobulin G (IgG) with steady-state fluorescence anisotropy and time-resolved methods: solution phase immuno-assay was performed following either steady-state or time-resolved fluorescence anisotropy. By performing a variable temperature experiment it was determined that the binding of the ligand resulted in an increase in correlation time by more than 75 %, and a change in the steady-state anisotropy increase of 18%. The results show that the triangulenium class of dyes can be used in anisotropy assay for detecting binding events involving biomolecules of far larger size than what is possible with the other red emitting organic dyes.

AB - Of the many optical bioassays available, sensing by fluorescence anisotropy have great advantages as it provides a sensitive, instrumentally simple, ratiometric method of detection. However, it is hampered by a severe limitation as the emission lifetime of the label needs to be comparable to the correlation lifetime (tumbling time) of the biomolecule which is labelled. For proteins of moderate size this is in the order of 20-200 ns, which due to practical issues currently limits the choice of labels to the dansyl-type dyes and certain aromatics dyes. These have the significant drawback of UV/blue absorption and emission as well as an often significant solvent sensitivity. Here, we report the synthesis and characterization of a new fluorescent label for high molecular weight biomolecules assay based on the azadioxatriangulenium motif. The NHS ester of the long fluorescence lifetime, red emitting fluorophore: azadioxatriangulenium (ADOTA-NHS) was conjugated to anti-rabbit Immunoglobulin G (antiIgG). The long fluorescence lifetime was exploited to determine the correlation time of the high molecular weight antibody and its complex with rabbit Immuniglobulin G (IgG) with steady-state fluorescence anisotropy and time-resolved methods: solution phase immuno-assay was performed following either steady-state or time-resolved fluorescence anisotropy. By performing a variable temperature experiment it was determined that the binding of the ligand resulted in an increase in correlation time by more than 75 %, and a change in the steady-state anisotropy increase of 18%. The results show that the triangulenium class of dyes can be used in anisotropy assay for detecting binding events involving biomolecules of far larger size than what is possible with the other red emitting organic dyes.

U2 - 10.1088/2050-6120/1/2/025001

DO - 10.1088/2050-6120/1/2/025001

M3 - Journal article

C2 - 24058730

VL - 1

JO - Methods and Applications in Fluorescence

JF - Methods and Applications in Fluorescence

SN - 2050-6120

IS - 2

M1 - 025001

ER -

ID: 95172991