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Genetic instability of a single exposure to sevoflurane at different concentrations in monitored mice

七氟醚 遗传毒性 吸入 DNA损伤 麻醉剂 微核 彗星试验 微核试验 毒性 麻醉 毒理 化学 异氟醚 药理学 医学 生物 DNA 内科学 生物化学
作者
Maria Vitória Destro,Mariane A. P. Silva,Tony Fernando Grassi,Lídia Raquel de Carvalho,Daisy Maria Fávero Salvadori,Leandro Gobbo Braz,Mariana G. Braz
出处
期刊:Environmental and Molecular Mutagenesis [Wiley]
卷期号:66 (1-2): 58-68 被引量:1
标识
DOI:10.1002/em.22647
摘要

Abstract Sevoflurane is an inhalation anesthetic widely used for general anesthesia, but its genotoxic potential is controversial in clinical studies. It is unknown whether the effects are due to surgery or the anesthetic. Thus, for the first time, the present study investigated genotoxicity in peripheral blood cells and in target organs (liver, lung, and kidney) and micronucleus (MN) in the bone marrow of a single exposure to sevoflurane at three different concentrations in monitored mice. Ninety Swiss mice were distributed into the following groups: exposure to sevoflurane at 3.3% (low), 4.5% (intermediate), and 6.0% (high) in 40% oxygen (O 2 ) for 2 h; negative control (no exposure); negative control with O 2 ; and positive control. The exposed animals were heated, monitored for vital signs (temperature, O 2 saturation, heart rate/pulse, and respiratory rate), and anesthetized via a modern low‐flow digital system. Mice were euthanized 2 and 24 h after exposure for evaluation by the comet assay and MN test, respectively. No DNA damage occurred in the 3.3% group for any of the organs evaluated, and no genotoxic or mutagenic effects were observed at any sevoflurane concentration in the peripheral blood or liver cells. However, a significant increase in DNA damage was observed at higher concentrations in kidney (4.5%) and lung cells (6.0%) and in the MN frequency (groups 4.5% and 6.0%). No cytotoxicity or histological alterations were observed. In conclusion, high concentrations of sevoflurane induce DNA damage, but concentrations equivalent to those used in clinical practice do not demonstrate genotoxic or mutagenic effects.
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