In this work we report the effects of exposure of mammalian cells to α-pinene, a bicyclic monoterpene founded in essential oils and used in insecticides, solvents, perfumes, etc.. Morphological analysis, performed in V79 cells exposed to increasing doses(25μM up to 50μM) of α-pinene, indicated a increase of dose-related nuclear abnormalities; apoptotic cells were seen at higher doses. Immunofluorescence with anti β- tubulin antibody showed that monoterpene induced genomic instability by interfering with mitotic process; in fact, 50% (vs 19% in the control cells) of irregular mitosis with multipolar or not correctly localized spindles were detected, suggesting that α-pinene affects cell stability by disturbing chromosome segregation. Cytogenetic analysis demonstrated that frequency of hypodiploid metaphases increased in a dose-dependent manner and, moreover, α-pinene induced endoreduplicated cells and double strand breaks. Alkaline comet confirmed that monoterpene exposure induced DNA lesions; in fact, OTM increased significantly in a dose-dependent manner. In order to assess whether the severe DNA damage evidenced by comet assay was originated through the ROS production, cells were incubated with CM-H2DCFDA and then analysed by flow cytometry. Results demonstrated an increase in fluorescence intensity after α-pinene treatment indicating an increased oxidative stress. On the whole, these findings strongly suggest that α-pinene is able to compromise genome stability preferentially through mitotic alterations and to damage DNA through reactive oxigen species production.

Barbata, G., Caradonna, F., Catanzaro, I., Saverini, M., Sciandrello, G. (2009). Biological effects of alpha-pinene in cultured mammalian cells. In Excerpts from DBCS (pp. 33-33). Palermo.

Biological effects of alpha-pinene in cultured mammalian cells

BARBATA, Giuseppa;CARADONNA, Fabio;CATANZARO, Irene;SAVERINI, Marghereth;SCIANDRELLO, Giulia
2009-01-01

Abstract

In this work we report the effects of exposure of mammalian cells to α-pinene, a bicyclic monoterpene founded in essential oils and used in insecticides, solvents, perfumes, etc.. Morphological analysis, performed in V79 cells exposed to increasing doses(25μM up to 50μM) of α-pinene, indicated a increase of dose-related nuclear abnormalities; apoptotic cells were seen at higher doses. Immunofluorescence with anti β- tubulin antibody showed that monoterpene induced genomic instability by interfering with mitotic process; in fact, 50% (vs 19% in the control cells) of irregular mitosis with multipolar or not correctly localized spindles were detected, suggesting that α-pinene affects cell stability by disturbing chromosome segregation. Cytogenetic analysis demonstrated that frequency of hypodiploid metaphases increased in a dose-dependent manner and, moreover, α-pinene induced endoreduplicated cells and double strand breaks. Alkaline comet confirmed that monoterpene exposure induced DNA lesions; in fact, OTM increased significantly in a dose-dependent manner. In order to assess whether the severe DNA damage evidenced by comet assay was originated through the ROS production, cells were incubated with CM-H2DCFDA and then analysed by flow cytometry. Results demonstrated an increase in fluorescence intensity after α-pinene treatment indicating an increased oxidative stress. On the whole, these findings strongly suggest that α-pinene is able to compromise genome stability preferentially through mitotic alterations and to damage DNA through reactive oxigen species production.
2009
alpha-pinene; V79 cells;
978-88-904055-1-8
Barbata, G., Caradonna, F., Catanzaro, I., Saverini, M., Sciandrello, G. (2009). Biological effects of alpha-pinene in cultured mammalian cells. In Excerpts from DBCS (pp. 33-33). Palermo.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/44890
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