AI Article Synopsis

  • taDTGuo is a nucleoside analogue being studied for its potential as a photodynamic therapy (PDT) agent, especially effective for deep-seated tumors.
  • Its two-photon absorption spectrum showed a significant peak at 556 nm and a high absorption cross-section of 26 ± 3 GM, surpassing other nucleobases.
  • The research indicates that taDTGuo's unique chemical structure contributes to its enhanced absorption properties, marking a breakthrough in thionucleoside analogue studies for cancer treatment.

Article Abstract

2',3',5'-Tri--acetyl-6,8-dithioguanosine (taDTGuo) is an analogue of nucleosides and currently under investigation as a potential agent for photodynamic therapy (PDT). Excitation by simultaneous two-photon absorption of visible or near-infrared light would provide an efficient PDT for deep-seated tumors. The two-photon absorption spectrum of taDTGuo was obtained by optical-probing photoacoustic spectroscopy (OPPAS). A two-photon absorption band corresponding to the S ← S transition was observed at 556 nm, and the two-photon absorption cross-section σ was determined to be 26 ± 3 GM, which was much larger than that of other nucleobases and nucleosides. Quantum chemical calculations suggested that the large σ value of taDTGuo was responsible for large transition dipole moments and small detuning energy resulting from the thiocarbonyl group at 6- and 8-positions. This is the first report on two-photon absorption spectra and cross-sections of thionucleoside analogues, which could be used to develop a more specific PDT for cancers in deep regions.

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Source
http://dx.doi.org/10.1021/acs.jpca.0c03747DOI Listing

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