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Use of the microorganism Bacillus stearothermophilus as a model to evaluate toxicity of the lipophilic environmental pollutant endosulfan

机译:微生物嗜热脂肪芽孢杆菌作为模型评估亲脂性环境污染物硫丹的毒性

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摘要

Microorganisms are very powerful tools for the supply of information about the toxic effects of lipophilic compounds, since an impairment of cell growth usually occurs as a result of perturbations related, in most cases, with the partition of toxicants in membranes. The thermophilic eubacterium Bacillus stearothermophilus has been used as a model system to identify [alpha]- and [beta]-endosulfan interactions with the membrane possibly related with the insecticide toxicity. Two approaches have been pursued: (a) bacterial growth is followed and the effects of endosulfan isomers determined; (b) biophysical studies with the fluorescent fluidity probe 1,6-diphenyl-1,3,5-hexatriene (DPH) were performed to assess the effects of [alpha]- and [beta]-endosulfan on the organization of the membrane lipid bilayer. The effects on growth were quantitatively evaluated by determination of growth parameters, namely the lag phase, the specific growth rate and the cell density reached by cultures in the stationary phase. Growth inhibition by [alpha] and [beta]-endosulfan dependent on the concentration is diminished or removed by the addition of 2.5 m Ca2+ to bacterial cultures. Fluorescence DPH polarization consistently showed opposite effects of Ca2+ and [alpha]- and [beta]-endosulfan on the physical state of bacterial polar lipid dispersions.
机译:微生物是提供有关亲脂性化合物毒性作用信息的非常有力的工具,因为通常在大多数情况下,与膜中毒物的分配有关的扰动会导致细胞生长受损。嗜热的真细菌嗜热脂肪芽孢杆菌已用作模型系统,以鉴定α-和β-硫丹与膜的相互作用,可能与杀虫剂毒性有关。已经采取了两种方法:(a)遵循细菌生长并确定硫丹异构体的作用; (b)用荧光流动性探针1,6-二苯基-1,3,5-己三烯(DPH)进行生物物理研究,以评估α-和β-硫丹对膜脂质组织的影响。双层。通过确定生长参数,即停滞期,比生长速率和静止期培养物达到的细胞密度,定量评估对生长的影响。通过向细菌培养物中添加2.5 m Ca 2+,可以减少或消除α和β-硫丹取决于浓度的生长抑制。荧光DPH极化始终显示出Ca 2+和α-和β-硫丹对细菌极性脂质分散体的物理状态的相反作用。

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