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The Journal of Physical Chemistry Letters|August 13, 2015
Tyrosine Photophysics During the Early Stages of β-Amyloid Aggregation Leading to Alzheimer'sOlaf J Rolinski, Thorben Wellbrock, David J S Birch, et al.
ACS Omega|August 29, 2019
Tyrosine Rotamer States in Beta Amyloid: Signatures of Aggregation and FibrillationOnorio Mancini, Olaf J Rolinski, Karina Kubiak-Ossowska, et al.
Methods and Applications in Fluorescence|August 16, 2017
Resolving environmental microheterogeneity and dielectric relaxation in fluorescence kinetics of proteinOlaf J Rolinski, Damien McLaughlin, David J S Birch, et al.
Methods and Applications in Fluorescence|November 18, 2017
Initial stages of beta-amyloid Aβ<sub>1-40</sub> and Aβ<sub>1-42</sub> oligomerization observed using fluorescence decay and molecular dynamics analyses of tyrosineMariana Amaro, Karina Kubiak-Ossowska, David J S Birch, et al.
Physical Chemistry Chemical Physics : PCCP|January 25, 2018
Probing beta amyloid aggregation using fluorescence anisotropy: experiments and simulationOnorio Mancini, Thorben Wellbrock, Olaf J Rolinski, et al.
Archives of Biochemistry and Biophysics|April 22, 2021
Detecting beta-amyloid glycation by intrinsic fluorescence - Understanding the link between diabetes and Alzheimer's diseaseAbeer Alghamdi, Shareen Forbes, David J S Birch, et al.
The Journal of Physical Chemistry. B|September 24, 2021
Collagen Glycation Detected by Its Intrinsic FluorescenceRhona Muir, Shareen Forbes, David J S Birch, et al.
Methods and Applications in Fluorescence|December 21, 2022
Keratin intrinsic fluorescence as a mechanism for non-invasive monitoring of its glycationRhona Muir, Shareen Forbes, David J S Birch, et al.
Chemphyschem : a European Journal of Chemical Physics and Physical Chemistry|September 21, 2019
Cu<sup>2+</sup> Effects on Beta-Amyloid Oligomerisation Monitored by the Fluorescence of Intrinsic TyrosineAbeer Alghamdi, Thorben Wellbrock, David J S Birch, et al.
Annals of the New York Academy of Sciences|July 4, 2008
Toward single-metal-ion sensing by Förster resonance energy transferJens U Sutter, Alexander M Macmillan, David J S Birch, et al.
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