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Toxicokinetics/toxicodynamics links bioavailability for assessing arsenic uptake and toxicity in three aquaculture species

机译:毒物动力学/毒理动力学联系了生物利用度,以评估三种水产养殖物种的砷吸收和毒性

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The purpose of this study was to link toxicokinetics/toxicodynamics (TK/TD) and bioavailability-based metal uptake kinetics to assess arsenic (As) uptake and bioaccumulation in three common farmed species of tilapia {Oreochromis mossambicus), milkfish {Chanos chanos), and freshwater clam (Corbicula fluminea). We developed a mechanistic framework by linking damage assessment model (DAM) and bioavailability-based Michaelis-Menten model for describing TK/TD and As uptake mechanisms. The proposed model was verified with published acute toxicity data. The estimated TK/TD parameters were used to simulate the relationship between bioavailable As uptake and susceptibility probability. The As toxicity was also evaluated based on a constructed elimination-recovery scheme. Absorption rate constants were estimated to be 0.025, 0.016, and 0.175 mL g~(-1) h~(-1) and As uptake rate constant estimates were 22.875, 63.125, and 788.318 ng g~(-1) h~(-1) for tilapia, milkfish, and freshwater clam, respectively. Here we showed that a potential trade-off between capacities of As elimination and damage recovery was found among three farmed species. Moreover, the susceptibility probability can also be estimated by the elimination-recovery relations. This study suggested that bioavailability-based uptake kinetics and TK/TD-based DAM could be integrated for assessing metal uptake and toxicity in aquatic organisms. This study is useful to quantitatively assess the complex environmental behavior of metal uptake and implicate to risk assessment of metals in aquaculture systems.
机译:这项研究的目的是将毒物动力学/毒物动力学(TK / TD)与基于生物利用度的金属吸收动力学联系起来,以评估三种常见养殖罗非鱼(Oreochromis mossambicus),遮目鱼(Chanos chanos)的砷(As)吸收和生物积累。和淡水蛤((Corbicula fluminea)。我们通过将损害评估模型(DAM)和基于生物利用度的Michaelis-Menten模型联系起来,建立了一个机械框架,用于描述TK / TD和As吸收机制。所提出的模型已用已发布的急性毒性数据进行了验证。估计的TK / TD参数用于模拟生物利用As吸收与药敏概率之间的关系。还基于构造的消除-回收方案评估了As毒性。吸收速率常数估计为0.025、0.016和0.175 mL g〜(-1)h〜(-1),而As吸收速率常数估计为22.875、63.125和788.318 ng g〜(-1)h〜(- 1)分别用于罗非鱼,遮目鱼和淡水蛤。在这里,我们表明在三个养殖物种中发现了砷消除能力和损害恢复之间的潜在权衡。此外,还可以通过消除-恢复关系来估计易感性概率。这项研究表明,可以综合使用基于生物利用度的吸收动力学和基于TK / TD的DAM来评估水生生物中的金属吸收和毒性。这项研究对于定量评估金属吸收的复杂环境行为是有用的,并暗示了水产养殖系统中金属的风险评估。

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