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四溴雙酚A對秀麗隱桿線蟲壽命的影響及作用機製的研究

Lifespan and underlying mechanism of tetrabromobisphenol A in Caenorhabditis elegans

  • 摘要: 四溴雙酚A(tetrabromobisphenol A, TBBPA)是一種應用廣泛的新型溴系阻燃劑📬,其是否存在生態環境風險的問題,引起了全球廣泛的關註。選用秀麗隱桿線蟲作為受試生物,探究TBBPA在近環境濃度(1~200 µg·L–1)下對線蟲自L1期亞急性暴露72 h,線蟲的壽命、超氧化物歧化酶🔃、過氧化氫酶👩🏻‍🏭、丙二醛含量及脅迫相關基因表達的影響。結果表明👨🏻‍🌾,與對照組相比,當TBBPA暴露濃度大於等於10 µg·L–1時線蟲的平均壽命發生顯著性抑製🥅。隨著TBBPA暴露濃度的增加線蟲體內的超氧化物歧化酶🤹🏽、過氧化氫酶及丙二醛的累積程度逐漸增強。脅迫相關基因的表達最為敏感,經突變體驗證所得ctl-2基因參與調控線蟲的壽命。結合皮爾遜相關性分析結果🚥,TBBPA誘導產生自由基對線蟲機體造成的傷害可作用於其壽命,超氧化物歧化酶及過氧化氫酶參與了TBBPA誘導毒性效應過程中的解毒機製。

     

    Abstract: Tetrabromobisphenol A (TBBPA) is a widely used new brominated flame retardant, the ecological risk of TBBPA received increasing attention. In current study, the nematode Caenorhabditis elegans (C. elegans) was selected to investigate the toxic effects of TBBPA at environmentally realistic concentrations (1~200 µg·L–1) from L1 larvae after 72 h subacute exposure, the endpoints including longevity, superoxide dismutase enzyme, catalase enzyme, malondialdehyde content and stress-related gene expressions were measured. The results showed that the average lifespan of C. elegans was significantly inhibited at TBBPA exposure concentrations greater than or equal to 10 µg·L–1. The levels of superoxide dismutase enzyme, catalase enzyme and malondialdehyde content in nematode gradually enhanced with the increasing TBBPA exposure concentrations. The stress-related gene expressions showed the highest sensitive. The text of mutant nematodes validated that the ctl-2 gene is involved in determining the lifespan of C. elegans. Pearson correlation analysis indicating that the damage of free radicals to C. elegans induced by TBBPA could further act on its lifespan, while superoxide dismutase enzyme and catalase enzyme worked as a detoxification in the process.

     

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