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Enantioselective degradation and bioaccumulation of sediment- associated fipronil in Lumbriculus variegatus: Toxicokinetic analysis

机译:Lumbriculus Variegatus中沉积物相关氟喹啉的对映选择性降解和生物累积:毒物动力学分析

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摘要

Enantioselective degradation and biotransformation are critical processes affecting the bioaccumulation and toxicity of chiral pesticides in the environment. In the present study, enantioselective uptake, biotransformation and elimination of a current use pesticide, fipronil in a benthic invertebrate. Lumbriculus variegatus were assessed using a sediment bioaccumulation test. Toxicokinetic models were constructed to quantitatively describe kinetic processes of fipronil enantiomers. The degradation of fipronil in sediment significantly affected chemical uptake. thus degradation kinetic model was incorporated into toxicokinetic modeling. It was shown that S-(+)-fipronil degraded faster than R-(-)-fipronil in sediment, with dissipation rate constants being 0.090 +/- 0.008 and 0.023 +/- 0.006 l/d, respectively. As a result, R-(-)-enantiomer preferentially accumulated in sediment over time. Similarly, higher concentrations of R-(-)-fipronil were detected in L. variegatus compared with S-(+)-fipronil. Toxicokinetic modeling showed R-(-)-fipronil had larger uptake and elimination rate coefficients and apparent maximum reaction rate, but a smaller apparent half-saturation constant than S-(+)-fipronil. Preferential uptake of R-(- )-fipronil from sediment to L. variegatus was the main reason for greater R-(-)-fipronil concentrations in organism. Biotransformation of fipronil in L. variegatus was also enantioselective, yet it played fewer roles on enantioselective bioaccumulation than uptake. Overall, our findings highlight the importance of selective degradation, uptake and biotransformation of sediment-associated fipronil on its enantioselective bioaccumulation in benthic invertebrates, which helps to improve the accuracy for assessing aquatic toxicity of the chiral pesticide. Capsule: Enantioselective bioaccumulation of sediment-associated fipronil in Lumbriculus variegatus was quantitatively explained by selective degradation, uptake, biotransformation and elimination parameters using a combination of degradation and toxicokinetic modeling. (C) 2019 Elsevier B.V. All rights reserved.
机译:对映选择性降解和生物转化是影响环境中手性农药的生物累积和毒性的关键过程。在目前的研究中,对终点的映射,生物转化和消除当前使用的农药,FIPRONIL在底栖无脊椎动物中。使用沉积物生物累积试验评估Lumbriculus Variegatus。构建毒物模型以定量描述氟诺硝基映体的动力学过程。沉积物中氟镍腈的降解显着影响了化学吸收。因此将降解动力学模型掺入毒性模型中。结果表明,S - (+) - FIPRONIL在沉积物中的R - ( - ) - FIPRONIL速度更快,耗散率常数分别为0.090 +/- 0.008和0.023 +/- 0.006L / d。结果,R - ( - ) - 映体优先在沉积物中积累。类似地,与S - (+) - FIPRONIL相比,在L.Variegatus中检测到较高浓度的R - ( - ) - FiPronil。诱导毒素模型显示R - ( - ) - 氟罗尼尔具有较大的摄取和消除率系数,并且表观最大反应速率,但表观半饱和度较小,而不是S - (+) - FIPRONIL。从沉淀物到L.Variegatus的R - ( - )-FiPronil的优先吸收是有机体更大的R - ( - ) - Fipronil浓度的主要原因。在L.Variegatus的FIPRONIL的生物转化也是对映选择性的,但它在对映射性生物累积的作用比吸收更少。总体而言,我们的研究结果突出了沉积物相关的FIPRONIL在底栖无脊椎动物上对沉淀物相关的FIPRONIL的选择性降解,摄取和生物转化的重要性,这有助于提高评估手性杀虫剂的水生毒性的准确性。胶囊:通过使用劣化和诱导毒性建模的组合,通过选择性降解,摄取,生物转化和消除参数定量解释沉积物相关的FIPRONIN的沉积物相关的FIPRONIL。 (c)2019 Elsevier B.v.保留所有权利。

著录项

  • 来源
    《The Science of the Total Environment》 |2019年第jul1期|335-341|共7页
  • 作者单位

    Chinese Acad Sci Guangzhou Inst Geochem State Key Lab Organ Geochem Guangzhou 510640 Guangdong Peoples R China|Jinan Univ Sch Environm Guangzhou 510632 Guangdong Peoples R China|Jinan Univ Guangdong Key Lab Environm Pollut & Hlth Guangzhou 510632 Guangdong Peoples R China|Southwest Petr Univ Sch Chem & Chem Engn Oil & Gas Field Appl Chem Key Lab Sichuan Prov Chengdu 610500 Sichuan Peoples R China|Univ Chinese Acad Sci Beijing 100049 Peoples R China;

    Jinan Univ Sch Environm Guangzhou 510632 Guangdong Peoples R China|Jinan Univ Guangdong Key Lab Environm Pollut & Hlth Guangzhou 510632 Guangdong Peoples R China;

    Jinan Univ Sch Environm Guangzhou 510632 Guangdong Peoples R China|Jinan Univ Guangdong Key Lab Environm Pollut & Hlth Guangzhou 510632 Guangdong Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Toxicokinetic modeling; Enantioselective degradation; Enantioselective biotransformation; Benthic invertebrates; Chiral pesticide;

    机译:诱导诱导;对映选择性的生物转化;底栖无脊椎动物;手性杀虫剂;

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