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单鼠李糖脂的特定作用机制和整体生物毒性。

Mechanism-specific and whole-organism ecotoxicity of mono-rhamnolipids.

机构信息

Department of Ecosystem Analysis, Inst. for Environmental Research (Biology V), Worringerweg 1, 52074 Aachen, Germany.

Department of Ecosystem Analysis, Inst. for Environmental Research (Biology V), Worringerweg 1, 52074 Aachen, Germany.

出版信息

Sci Total Environ. 2016 Apr 1;548-549:155-163. doi: 10.1016/j.scitotenv.2016.01.066. Epub 2016 Jan 20.

Abstract

Biosurfactants like rhamnolipids are promising alternatives to chemical surfactants in a range of applications. A wider use requires an analysis of their environmental fate and their ecotoxicological potential. In the present study mono-rhamnolipids produced by a recombinant Pseudomonas putida strain were analyzed using the Green Toxicology concept for acute and mechanism-specific toxicity in an ecotoxicological test battery. Acute toxicity tests with the invertebrate Daphnia magna and with zebrafish embryos (Danio rerio) were performed. In addition, microbial and fungicidal effectiveness was investigated. Mutagenicity of the sample was tested by means of the Ames fluctuation assay. A selected mono-rhamnolipid was used for model simulations regarding mutagenicity and estrogenic activity. Our results indicate that mono-rhamnolipids cause acute toxicity to daphnids and zebrafish embryos comparable to or even lower than chemical surfactants. Rhamnolipids showed very low toxicity to the germination of Aspergillus niger spores and the growth of Candida albicans. No frameshift mutation or base substitutions were observed using the Ames fluctuation assay with the two tester strains TA98 and TA100. This result was confirmed by model simulations. Likewise it was computed that rhamnolipids have no estrogenic potential. In conclusion, mono-rhamnolipids are an environmental friendly alternative to chemical surfactants as the ecotoxicological potential is low.

摘要

生物表面活性剂,如鼠李糖脂,在一系列应用中是有前途的化学表面活性剂替代品。更广泛的应用需要分析它们的环境归宿和生态毒性潜力。在本研究中,使用绿色毒理学概念,对由重组假单胞菌菌株产生的单鼠李糖脂进行了分析,该概念用于生态毒理学测试组合中的急性和特定机制毒性。对无脊椎动物大型溞和斑马鱼胚胎(Danio rerio)进行了急性毒性测试。此外,还研究了微生物和杀菌效果。通过艾姆斯波动试验测试了样品的致突变性。选择了一种单鼠李糖脂用于关于致突变性和雌激素活性的模型模拟。我们的结果表明,单鼠李糖脂对大型溞和斑马鱼胚胎的急性毒性与化学表面活性剂相当,甚至更低。鼠李糖脂对黑曲霉孢子的萌发和白色念珠菌的生长表现出非常低的毒性。使用两种测试菌株 TA98 和 TA100 的艾姆斯波动试验未观察到移码突变或碱基取代。该结果通过模型模拟得到了证实。同样,计算结果表明鼠李糖脂没有雌激素潜力。总之,单鼠李糖脂是化学表面活性剂的环保替代品,因为其生态毒性潜力较低。

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