Tran Damien, Moody A John, Fisher Andrew S, Foulkes Michael E, Jha Awadhesh N
Ecotoxicology and Stress Biology Research Centre, School of Biological Sciences, University of Plymouth, Drake Circus, Plymouth, Devon, PL4 8AA, UK.
Aquat Toxicol. 2007 Aug 15;84(1):11-8. doi: 10.1016/j.aquatox.2007.05.009. Epub 2007 May 24.
Little is known of the antioxidant role of selenium (Se) in aquatic invertebrates. We investigated the effects of Se on mercury-induced DNA damage in haemocytes from Mytilus edulis using alkaline single cell gel electrophoresis, that is, the Comet assay. The basal percentage tail DNA value for mussel haemocytes was 9.8+/-0.2% (mean+/-S.E.M., n=70). Exposing mussels to Hg(2+) (nominal concentration 20 microgL(-1)) for three days led to an increase in tail DNA to 61.1+/-1.8% (n=10). With added Se (as selenite, nominal concentration 4 microgL(-1)), Hg-induced DNA damage was reduced to 39.5+/-3.1% (n=10). Se pre-exposure also provided some protection against Hg-induced DNA damage (% tail DNA=51.0+/-2.9%, n=10). Basal glutathione peroxidase (GPx) activity in cell-free haemolymph was 93.7+/-3.5 nmol min(-1)mg(-1) (mean+/-S.E.M., n=70). Increases in GPx activity were seen when Se was added during and/or after exposure to Hg. For example, a 3-4-fold increase was seen after three days exposure to Hg in the presence of added Se. Interestingly GPx activity doubled after three days in the presence of added Se alone, but was unchanged after exposure to HgCl(2) alone. These results suggest that the availability of Se in the natural environment could affect the antioxidant status of mussels, and consequently could affect levels of DNA damage.
关于硒(Se)在水生无脊椎动物中的抗氧化作用,人们所知甚少。我们利用碱性单细胞凝胶电泳(即彗星试验),研究了硒对紫贻贝血细胞中汞诱导的DNA损伤的影响。贻贝血细胞的基础尾DNA百分比值为9.8±0.2%(平均值±标准误,n = 70)。将贻贝暴露于Hg(2+)(标称浓度20 μg L(-1))三天,导致尾DNA增加至61.1±1.8%(n = 10)。添加硒(以亚硒酸盐形式,标称浓度4 μg L(-1))后,汞诱导的DNA损伤降低至39.5±3.1%(n = 10)。预先暴露于硒也对汞诱导的DNA损伤提供了一定保护(尾DNA百分比 = 51.0±2.9%,n = 10)。无细胞血淋巴中的基础谷胱甘肽过氧化物酶(GPx)活性为93.7±3.5 nmol min(-1)mg(-1)(平均值±标准误,n = 70)。在暴露于汞期间和/或之后添加硒时,可以看到GPx活性增加。例如,在添加硒的情况下,暴露于汞三天后,GPx活性增加了3 - 4倍。有趣的是,仅添加硒三天后,GPx活性增加了一倍,但仅暴露于HgCl(2)后,GPx活性没有变化。这些结果表明,自然环境中硒的可利用性可能会影响贻贝的抗氧化状态,进而可能影响DNA损伤水平。