Mechanisms of action of mineral fibres in a placental syncytiotrophoblast model: An in vitro toxicology study
Asbestos has been widely used due to its unique characteristics. It is known that exposure to asbestos causes serious damage to health but one species, chrysolite, is still used because it is considered less toxic and not biopersistent in some countries. The aim of our study was to investigate if ce...
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Veröffentlicht in: | Chemico-biological interactions 2024-02, Vol.390, p.110895-110895, Article 110895 |
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Zusammenfassung: | Asbestos has been widely used due to its unique characteristics. It is known that exposure to asbestos causes serious damage to health but one species, chrysolite, is still used because it is considered less toxic and not biopersistent in some countries. The aim of our study was to investigate if cellular process underlying the proliferation, differentiation and cell death of placental tissues could be modify in presence of asbestos fibres (50 μg/ml final concentration), long chrysolite fibres (CHR-L) and short chrysolite fibres (CHR-S), using BeWo cell line, an in vitro model that mimics the syncytiotrophoblast (STB), the outer layer of placental villi. Our data demonstrated that none of the fibres analysed alter syncytiotrophoblast formation but all of them induce ROS formation and reduced cell proliferation. Moreover, we showed that only CHR-L fibre induced was able to induce irreversible DNA alterations that carried cells to apoptosis. In fact, BeWo cells exposed to CHR-L fibre showed a significant increase in cleaved CASP3 protein, a marker of apoptosis. These data suggest that CHR-L may induce death of the placental villi leading to impaired placental development. The impairment of placental development is the basis of many gestational pathologies such as preeclampsia and intrauterine growth retardation. Since these pathologies are very dangerous for foetal and maternal life, we suggest to the gynaecologists to carefully evaluate the area of maternal residence, the working environment, the food used, and the materials used daily to avoid contact with these fibres as much as possible.
•We analysed wollastonite, long (CHR-L), short chrysotile fibres (CHR-S) in BeWo cells.•These fibres have a cytotoxic effect in BeWo cells.•The asbestos fibres altered cell cycle, damage and repair mechanisms in BeWo cells.•Only CHR-L fibres caused irreparable damages leading the cells in apoptosis.•CHR-L fibres can have an implication in placental villous death during gestation. |
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ISSN: | 0009-2797 1872-7786 |
DOI: | 10.1016/j.cbi.2024.110895 |