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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >A low volume, high-throughput forward mutation assay in Salmonella typhimurium based on fluorouracil resistance.
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A low volume, high-throughput forward mutation assay in Salmonella typhimurium based on fluorouracil resistance.

机译:基于氟尿嘧啶耐药性的鼠伤寒沙门氏菌中的小体积,高通量正向突变分析。

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A forward mutation assay based on 5-fluorouracil (FU) resistance has been developed using a strain of Salmonella typhimurium derived from the Ames strain TA100. The sensitivity of the assay benefits from the genetic characteristics present in the standard Ames strain that enhances the response to genotoxic agents. A mutation conferring resistance to 5-fluorouridine was also introduced into the test strain to avoid unwanted toxicity resulting from cross-feeding of 5-fluorouridine between wild-type and FU-resistant (FU(R)) cells during selection with FU. In the mutation assay 1 ml aliquots of exponentially growing bacteria are exposed to the test agent for 2 h in the presence and absence of a rat-liver S-9 metabolizing system. The aliquots are then diluted, allowed to grow for 3 h, and assessed for treatment-related toxicity/inhibition by optical density. The cultures are diluted a second time and grown overnight to permit full recovery from toxicity and to allow expression of the FU(R) phenotype. Samples of the cultures are then plated in 384-well microtiter dishes in the presence of 2 microg/ml FU and the pH-sensitive indicator bromcresol purple. Three days later positive wells containing FU(R) colonies are detected by their yellow color and enumerated. Results were obtained using a variety of 45 compounds to validate the assay. Of the 25 mutagens and 20 non-mutagens tested, the results correlated 100% with those collected using the battery of standard Ames reversion strains, further supporting the use of the FU Assay as an alternative screen to the Ames assay. The use of a single strain exposed in liquid suspension permits assessment of high concentrations of test compound but with a low overall compound requirement (30 mg total). The highly parallel nature of culture handling/dilution and use of standard microtiter plates also offers the possibility of assay automation.
机译:已经使用衍生自Ames菌株TA100的鼠伤寒沙门氏菌菌株开发了基于5-氟尿嘧啶(FU)抗性的正向突变测定法。该测定的灵敏度得益于标准Ames菌株中存在的遗传特性,该特性可增强对遗传毒性剂的响应。也将赋予对5-氟尿嘧啶抗性的突变引入测试菌株,以避免在用FU进行选择期间在野生型和对FU耐药的(FU)细胞之间交叉馈入5-氟尿苷引起的不希望的毒性。在突变试验中,在有和没有大鼠肝脏S-9代谢系统的情况下,将1 ml指数增长细菌的等分试样暴露于测试剂2小时。然后将等分试样稀释,使其生长3小时,并通过光密度评估与治疗相关的毒性/抑制作用。将培养物第二次稀释并过夜生长,以使毒性完全恢复并表达FU(R)表型。然后将培养物样品在2微克/毫升FU和pH敏感指示剂溴甲酚紫存在下,置于384孔微量滴定皿中。三天后,通过黄色检测含有FU(R)菌落的阳性孔并进行计数。使用多种45种化合物获得结果以验证测定。在测试的25种诱变剂和20种非诱变剂中,结果与使用一系列标准Ames回复菌株收集的结果具有100%的相关性,进一步支持了使用FU分析作为Ames分析的替代筛选。使用暴露于液体悬浮液中的单一菌株可以评估高浓度的测试化合物,但总体化合物需求较低(总计30 mg)。培养物处理/稀释和标准微量滴定板的高度平行性也提供了测定自动化的可能性。

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