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Time-Dependent Effects in Algae for Chemicals with Different Adverse Outcome Pathways: A Novel Approach

机译:藻类中具有不同不利结果途径的化学物质的时间依赖性效应:一种新方法

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摘要

Chemicals affect unicellular algae as a result of toxicokinetic and toxicodynamic processes. The internal concentration of chemicals in algae cells typically reaches equilibrium within minutes, while damage cumulatively increases over hours. The time gap between the steady state of internal exposure and damage development is thus suspected to span up to hours, mainly due to toxicodynamic processes. The quantification of rate-limited toxicodynamic processes, aggregated as a progressive effect from an initiating molecular event through biological key events toward the adverse outcome on algae growth inhibition, might discriminate between different adverse outcome pathways (AOPs). To support our hypothesis, we selected six chemicals according to different physicochemical properties and three distinctly dissimilar AOPs. The time courses of internal concentrations were linked to the observed affected Scenedesmus vacuolatus growth using toxicokinetic-toxicodynamic modeling. Effects on cell growth were explained by effect progression and not by the time to reach internal equilibrium concentration. Effect progression rates ranged over 6 orders of magnitude for all chemicals but varied by less than 1 order of magnitude within similar AOP (photosystem Ⅱ inhibitors > reactive chemicals > lipid biosynthesis inhibitors), meaning that inhibitors of photosystem Ⅱ advance an effect toward algae growth fastest compared to reactive chemicals and inhibitors of lipid biosynthesis.
机译:毒物动力学和毒物动力学过程的结果是化学物质影响单细胞藻类。藻类细胞中化学物质的内部浓度通常在数分钟内达到平衡,而损伤则在数小时内累积增加。因此,内部暴露的稳态与损害发展之间的时间间隔被怀疑长达数小时,这主要是由于毒物动力学过程造成的。限速毒理动力学过程的量化,从分子生物学事件开始到生物学关键事件逐步发展为对藻类生长抑制的不利结果的逐步影响,可能会区分不同的不良结果途径(AOP)。为支持我们的假设,我们根据不同的理化性质和三种截然不同的AOP选择了六种化学物质。使用毒物动力学-毒物动力学模型,将内部浓度的时程与观察到的受影响的浮游藻的生长联系起来。对细胞生长的影响是通过作用的进展而不是达到内部平衡浓度的时间来解释的。所有化学物质的作用进展速率均超过6个数量级,但在相似的AOP(光系统Ⅱ抑制剂>反应性化学物质>脂质生物合成抑制剂)中变化小于1个数量级,这意味着光系统Ⅱ的抑制剂对藻类生长的影响最快。与活性化学物质和脂质生物合成抑制剂相比。

著录项

  • 来源
    《Environmental Science & Technology》 |2016年第14期|7770-7780|共11页
  • 作者单位

    Department of Bioanalytical Ecotoxicology, Helmholtz Centre for Environmental Research, Leipzig, Germany,Institute of Environmental Medicine, Karolinska Institutet, SE-171 77, Stockholm, Sweden;

    Department of Bioanalytical Ecotoxicology, Helmholtz Centre for Environmental Research, Leipzig, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 13:58:47

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