Advantages of a synchrotron light source for fluorescence-detected linear dichroism

Nykola C. Jones*, Alison Rodger*, Søren V. Hoffmann

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

Fluorescence-detected linear dichroism (FD-LD) enables one to collect linear dichroism spectra for oriented fluorophores in the presence of other absorbing species and light scattering. The experiment proceeds by scanning the excitation wavelength and using a filter to collect only emitted photons from the fluorophore. Thus, it has the potential to give data with enhanced selectivity and quality. By using a synchrotron radiation light source and fluorescence-detection, we show data for a range of fluorophores in different orienting environments. Film and flow-oriented FD-LD spectra were collected down to 170 nm. Even for flow-oriented liposomes, we have data collected down to 210 nm. For strongly scattering samples, for example, liposomes, FD-LD has the clear advantage that scattering is absent for the longer wavelength fluorescence photons. The collimated and smaller beam size of the synchrotron radiation also gives rise to sharper and more well-defined features in the spectra.Fluorescence-detected linear dichroism (FD-LD) enables one to collect linear dichroism spectra for oriented fluorophores in the presence of other absorbing species and light scattering. This work uses a synchrotron radiation light source and fluorescence-detection to collect film and flow-oriented FD-LD spectra down to 170 nm. image
Original languageEnglish
Article numbere23667
Number of pages9
JournalChirality
Volume36
Issue number4
DOIs
Publication statusPublished - Apr 2024

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