Using Biological Photophysics to Map the Excited‐State Topology of Molecular Photosensitizers for Photodynamic Therapy

GND
127911357X
Zugehörigkeit
Leibniz-Institute of Photonic Technology Jena
Chettri, Avinash;
GND
1299758878
Zugehörigkeit
Leibniz-Institute of Photonic Technology Jena
Yang, Tingxiang;
Zugehörigkeit
Department of Chemistry and Biochemistry The University of Texas at Arlington Arlington TX-76019 USA
Cole, Houston D.;
Zugehörigkeit
Department of Chemistry and Biochemistry The University of Texas at Arlington Arlington TX-76019 USA
Shi, Ge;
Zugehörigkeit
Department of Chemistry and Biochemistry The University of Texas at Arlington Arlington TX-76019 USA
Cameron, Colin G.;
Zugehörigkeit
Department of Chemistry and Biochemistry The University of Texas at Arlington Arlington TX-76019 USA
McFarland, Sherri A.;
GND
131343971
ORCID
0000-0002-2842-3537
Zugehörigkeit
Leibniz-Institute of Photonic Technology Jena
Dietzek‐Ivanšić, Benjamin

This study employs TLD1433, a Ru II ‐based photodynamic therapy (PDT) agent in human clinical trials, as a benchmark to establish protocols for studying the excited‐state dynamics of photosensitizers (PSs) in cellulo , in the local environment provided by human cancer cells. Very little is known about the excited‐state properties of any PS in live cells, and for TLD1433, it is terra incognita . This contribution targets a general problem in phototherapy, which is how to interrogate the light‐triggered, function‐determining processes of the PSs in the relevant biological environment, and establishes methodological advances to study the ultrafast photoinduced processes for TLD1433 when taken up by MCF7 cells. We generalize the methodological developments and results in terms of molecular physics by applying them to TLD1433’s analogue TLD1633, making this study a benchmark to investigate the excited‐state dynamics of phototoxic compounds in the complex biological environment.

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