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Brain DNA damaging effects of volatile anesthetics and 1 and 2 Gy gamma irradiation in vivo: Preliminary results (CROSBI ID 319015)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Benković, Vesna ; Milić, Mirta ; Oršolić, Nada ; Horvat Knežević, Anica ; Brozović, Gordana ; Borojević, Nikola Brain DNA damaging effects of volatile anesthetics and 1 and 2 Gy gamma irradiation in vivo: Preliminary results // Toxicology and industrial health, (2023), 1-14. doi: 10.1177/07482337221145599

Podaci o odgovornosti

Benković, Vesna ; Milić, Mirta ; Oršolić, Nada ; Horvat Knežević, Anica ; Brozović, Gordana ; Borojević, Nikola

engleski

Brain DNA damaging effects of volatile anesthetics and 1 and 2 Gy gamma irradiation in vivo: Preliminary results

Although both can cause DNA damage, the combined impact of volatile anesthetics halothane/sevoflurane/ isoflurane and radiotherapeutic exposure on sensitive brain cells in vivo has not been previously analyzed. Healthy Swiss albino male mice (240 in total, 48 groups) were exposed to either halothane/sevoflurane/ isoflurane therapeutic doses alone (2 h) ; 1 or 2 gray of gamma radiation alone ; or combined exposure. Frontal lobe brain samples from five animals were taken immediately and 2, 6, and 24 h after exposure. DNA damage and cellular repair index were analyzed using the alkaline comet assay and the tail intensity parameter. Elevated tail intensity levels for sevoflurane/halothane were the highest at 6 h and returned to baseline within 24 h for sevoflurane, but not for halothane, while isoflurane treatment caused lower tail intensity than control values. Combined exposure demonstrated a slightly halothane/sevoflurane protective and isoflurane protective effect, which was stronger for 2 than for 1 gray. Cellular repair indices and tail intensity histograms indicated different modes of action in DNA damage creation. Isoflurane/sevoflurane/halothane preconditioning demonstrated protective effects in sensitive brain cells in vivo. Owing to the constant increases in the combined use of radiotherapy and volatile anesthetics, further studies should explore the mechanisms behind these effects, including longer and multiple exposure treatments and in vivo brain tumor models.

Cellular DNA repair index ; DNA damage ; Ionizing radiation ; Volatile anesthetics ; Tail intensity ; Protective effect

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Podaci o izdanju

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2023.

1-14

objavljeno

0748-2337

1477-0393

10.1177/07482337221145599

Povezanost rada

Biologija, Biotehnologija u biomedicini (prirodno područje, biomedicina i zdravstvo, biotehničko područje), Dentalna medicina, Farmacija, Fizika

Poveznice
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