Determining the toxicity of organic compounds to the nematode Caenorhabditis elegans based on aqueous concentrations

被引:0
作者
Sebastian Höss
David Sanders
Roger van Egmond
机构
[1] Ecossa,Unilever, Safety & Environmental Assurance Centre
[2] Giselastr,undefined
[3] Colworth Science Park,undefined
来源
Environmental Science and Pollution Research | 2023年 / 30卷
关键词
Aquatic toxicity testing; Organic chemicals; Freely dissolved concentrations;
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学科分类号
摘要
Caenorhabditis elegans is used for assessing the toxicity of chemicals in aqueous medium. However, chemicals can absorb to the bacterial food, which reduces the freely dissolved concentrations of the tested compounds. Thus, based on total or nominal concentrations, toxicity is underestimated, resulting in misleading assumptions on toxicity mechanisms or comparisons to other test organisms. As the verification of freely dissolved exposure concentrations (Cfree) is challenging in small test systems, simple partitioning models might by a good option for estimating Cfree. Therefore, C. elegans was exposed to seven differently acting organic chemicals with varying hydrophobicities, thus also different affinities to bind to the food of C. elegans. Measured concentrations of the dissolved aqueous and the bacterial-bound fraction allowed the calculation of binding constants (Kb). Experimental Kb were comparable to literature data of hydrophobic chemicals and correlated well with their hydrophobicity, expressed as log KOW. The chronic toxicity of the various compounds on C. elegans’ reproduction, based on their aqueous concentration, was weakly related to their log KOW. Toxicity expressed based on chemical activity and comparisons with a baseline toxicity model, nevertheless, suggested a narcotic mode of action for most hydrophobic compounds (except methylisothiazolinone and trichlorocarbanilide). Although revealing a similar toxicity ranking than Daphnia magna, C. elegans was less sensitive, probably due to its ability to reduce its internal concentrations by means of its very impermeable cuticle or by efficient detoxification mechanisms. It could be shown that measured aqueous concentrations in the nematode test system corresponded well with freely dissolved concentrations that were modeled using simple mass-balance models from nominal concentrations. This offers the possibility to estimate freely dissolved concentrations of chemicals from nominal concentrations, making routine testing of chemicals and their comparison to other species more accurate.
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页码:96290 / 96300
页数:10
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共 162 条
  • [41] Haegerbaeumer A(2017) mortality test using passive dosing Environ Pollut 230 31-886
  • [42] Höss S(2019)Acute, reproductive, and developmental toxicity of essential oils assessed with alternative in vitro and in vivo systems Environ Pollut 248 782-2033
  • [43] Heininger P(2018)Triclosan (TCS) and triclocarban (TCC) induce systemic toxic effects in a model organism the nematode Chemosphere 208 880-804
  • [44] Traunspurger W(2013)The physicochemical basis of QSARs for baseline toxicity Environ Sci Technol 47 2026-1850
  • [45] Helmcke KJ(2007)QSARs for aquatic toxicity: celebrating, extending and displaying the pioneering contributions of Ferguson, Konemann and Veith Environ Int 33 798-824
  • [46] Avila DS(2015)Can highly hydrophobic organic substances cause aquatic baseline toxicity and can they contribute to mixture toxicity? Environ Sci Technol 49 1842-313
  • [47] Aschner M(2018)Surface-related toxicity of polystyrene beads to nematodes and the role of food availability Environ Pollut 235 814-318
  • [48] Höss S(2013)Assessing the importance of dietborne cadmium and particle characteristics on bioavailability and bioaccumulation in the nematode ACS Chem Biol 8 309-250
  • [49] Ahlf W(2009)The C. elegans glycosyltransferase BUS-8 has two distinct and essential roles in epidermal morphogenesis Chemosphere 75 310-131
  • [50] Fahnenstich C(1997)Toxicity in relation to mode of action for the nematode Environ Toxicol Chem 16 245-491