• This record comes from PubMed

Microhydration Prevents Fragmentation of Uracil and Thymine by Low-Energy Electrons

. 2016 Sep 01 ; 7 (17) : 3401-5. [epub] 20160817

Language English Country United States Media print-electronic

Document type Letter

When ionizing radiation passes biological matter, a large number of secondary electrons with very low energies (<3 eV) is produced. It is known that such electrons cause an efficient fragmentation of isolated nucleobases via dissociative electron attachment. We present an experimental study of the electron attachment to microhydrated nucleobases. Our novel approach allows significant control over the hydration of molecules studied in the molecular beam. We directly show for the first time that the presence of a few water molecules suppresses the dissociative channel and leads exclusively to formation of intact molecular and hydrated anions. The suppression of fragmentation is ascribed to caging-like effects and fast energy transfer to the solvent. This is in contrast with theoretical prediction that microhydration strongly enhances the fragmentation of nucleobases. The current observation impacts mechanisms of reductive DNA strand breaks proposed to date on the basis of gas-phase experiments.

References provided by Crossref.org

Newest 20 citations...

See more in
Medvik | PubMed

Condensed Matter Systems Exposed to Radiation: Multiscale Theory, Simulations, and Experiment

. 2024 Jul 10 ; 124 (13) : 8014-8129. [epub] 20240606

Stabilization of benzene radical anion in ammonia clusters

. 2022 Nov 18 ; 24 (44) : 27128-27135. [epub] 20221118

Low-Energy Electron Induced Reactions in Metronidazole at Different Solvation Conditions

. 2022 Jun 02 ; 15 (6) : . [epub] 20220602

5-Nitro-2,4-Dichloropyrimidine as an Universal Model for Low-Energy Electron Processes Relevant for Radiosensitization

. 2020 Oct 31 ; 21 (21) : . [epub] 20201031

Ring Formation and Hydration Effects in Electron Attachment to Misonidazole

. 2019 Sep 06 ; 20 (18) : . [epub] 20190906

Low-energy electrons transform the nimorazole molecule into a radiosensitiser

. 2019 Jun 03 ; 10 (1) : 2388. [epub] 20190603

Suppression of low-energy dissociative electron attachment in Fe(CO)5 upon clustering

. 2017 ; 8 () : 2200-2207. [epub] 20171020

Find record

Citation metrics

Loading data ...

    Archiving options