氧毒性与时间和Po2的关系。

Q3 Pharmacology, Toxicology and Pharmaceutics
Ran Arieli
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引用次数: 0

摘要

0 2毒性作为暴露时间(t)和Po2的函数的量化主要基于经验矩形双曲线。恒定Po2条件下02-损伤生理变量(DMG)随时间的非线性响应可能与dDMG/dt对DMG的依赖性有关。02衍生化学物质的动力学表明DMG和Po2之间存在幂函数关系,而不是线性关系。结合时间和Po2的考虑,可以得到两个模型:1)DMG = a(ebt - l) po2c和2)DMG = a- tbpo2c,其中a、b和c为常数。对0 2毒性各参数进行非线性回归,结果表明模型2更优,b=2。讨论了0 - 2毒性动力学的可能机制以及该方程用于其预测的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Oxygen Toxicity as a Function of Time and Po2.

The quantification of 0 2 toxicity as a function of exposure time (t) and Po2 has been based mainly on the empirical rectangular hyperbola. The non-linear response of the 02-damaged physiological variable (DMG) as a function of time at constant Po2 can be related to the dependence of dDMG/dt on the DMG. The kinetics of the 02 - derived chemical species suggests a power relationship between the DMG and Po2 rather than a linear relationship. The combination of time and Po2 considerations suggests two models: 1) DMG = a(ebt - l)Po2 c and 2) DMG = a-tbPo2 c, where a, b and c are constant. Non-linear regression of the different parameters of 0 2 toxicity showed a preference for model 2, with b=2. Possible mechanisms underlying the kinetics of 0 2 toxicity and the use of the equation for its prediction are discussed.

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来源期刊
Journal of Basic and Clinical Physiology and Pharmacology
Journal of Basic and Clinical Physiology and Pharmacology Pharmacology, Toxicology and Pharmaceutics-Pharmacology
CiteScore
3.90
自引率
0.00%
发文量
53
期刊介绍: The Journal of Basic and Clinical Physiology and Pharmacology (JBCPP) is a peer-reviewed bi-monthly published journal in experimental medicine. JBCPP publishes novel research in the physiological and pharmacological sciences, including brain research; cardiovascular-pulmonary interactions; exercise; thermal control; haematology; immune response; inflammation; metabolism; oxidative stress; and phytotherapy. As the borders between physiology, pharmacology and biochemistry become increasingly blurred, we also welcome papers using cutting-edge techniques in cellular and/or molecular biology to link descriptive or behavioral studies with cellular and molecular mechanisms underlying the integrative processes. Topics: Behavior and Neuroprotection, Reproduction, Genotoxicity and Cytotoxicity, Vascular Conditions, Cardiovascular Function, Cardiovascular-Pulmonary Interactions, Oxidative Stress, Metabolism, Immune Response, Hematological Profile, Inflammation, Infection, Phytotherapy.
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