Prospects of in vivo singlet oxygen luminescence monitoring: Kinetics at different locations on living mice

Photodiagnosis Photodyn Ther. 2016 Jun:14:204-10. doi: 10.1016/j.pdpdt.2016.03.002. Epub 2016 Mar 15.

Abstract

Background: Singlet oxygen observation is considered a valuable tool to assess and optimize PDT treatment. In complex systems, such as tumors in vivo, only the direct, time-resolved singlet oxygen luminescence detection can give reliable information about generation and interaction of singlet oxygen. Up to now, evaluation of kinetics was not possible due to insufficient signal-to-noise ratio. Here we present high signal-to-noise ratio singlet oxygen luminescence kinetics obtained in mouse tumor model under PDT relevant conditions.

Methods: A highly optimized system based on a custom made laser diode excitation source and a high aperture multi-furcated fiber, utilizing a photomultiplier tube with a multi photon counting device was used.

Results: Luminescence kinetics with unsurpassed signal-to-noise ratio were gained from tumor bearing nude mice in vivo upon topic application, subcutaneous injection as well as intravenous injection of different photosensitizers (chlorin e6 and dendrimer formulations of chlorin e6). Singlet oxygen kinetics in appropriate model systems are discussed to facilitate the interpretation of complex kinetics obtained from in vivo tumor tissue.

Conclusions: This is the first study addressing the complexity of singlet oxygen luminescence kinetics in tumor tissue. At present, further investigations are needed to fully explain the processes involved. Nevertheless, the high signal-to-noise ratio proves the applicability of direct time-resolved singlet oxygen luminescence detection as a prospective tool for monitoring photodynamic therapy.

MeSH terms

  • Administration, Intravenous
  • Administration, Topical
  • Animals
  • Kinetics
  • Luminescent Measurements
  • Mice
  • Mice, Nude
  • Models, Animal
  • Photochemotherapy*
  • Photosensitizing Agents / administration & dosage*
  • Photosensitizing Agents / therapeutic use
  • Signal-To-Noise Ratio
  • Singlet Oxygen / analysis*
  • Singlet Oxygen / chemistry

Substances

  • Photosensitizing Agents
  • Singlet Oxygen