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A new model for predicting time course toxicity of heavy metals based on Biotic Ligand Model (BLM)

机译:基于生物配体模型(BLM)的重金属时程毒性预测新模型

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摘要

A new model for predicting time course toxicity of heavy metals was developed by extending the effective ratio of biotic ligand binding with toxic heavy metals to the total biotic ligand for 50% of test organisms (f50) derived by the Biotic Ligand Model (BLM). BLM has been well-known as a useful model for prediction of heavy metal toxicity. BLM can consider the effect of exposure conditions such as pH and Ca2+ on heavy metal toxicity. In addition to the exposure conditions, heavy metal toxicity is strongly dependent on exposure time. In this study, BLM is extended to predict time dependency of heavy metal toxicity by connecting with the concept of primary reaction. The model developed in this study also generates the estimation of the 50% effect concentration (EC50) for toxicologically unknown organisms and heavy metals. Two toxicological and kinetic constants, f50,0 and k, were derived from the initial value of f50 (f50,0) and a time constant (k) independent of time. The model developed in this study enables us to acquire information on the toxicity of heavy metals such as Cu, Cd and Co easily.
机译:通过将生物配体模型(BLM)衍生的50%的受试生物(f50)的生物配体与有毒重金属结合的有效比例扩展到总生物配体,开发了一种预测重金属时程毒性的新模型。 BLM是众所周知的预测重金属毒性的有用模型。 BLM可以考虑诸如pH和Ca2 +等暴露条件对重金属毒性的影响。除了暴露条件外,重金属的毒性还取决于暴露时间。在这项研究中,通过与主要反应的概念相联系,将BLM扩展为预测重金属毒性的时间依赖性。在这项研究中开发的模型还可以估算出毒理学未知生物和重金属的50%效应浓度(EC50)。从f50的初始值(f50,0)和与时间无关的时间常数(k)得出两个毒理学和动力学常数f50,0和k。本研究开发的模型使我们能够轻松获取有关重金属(例如Cu,Cd和Co)毒性的信息。

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