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Biochemical Studies on the Toxicity of Tetraethyl Lead and Other Organo-Lead Compounds

机译:四乙基铅和其他有机铅化合物毒性的生化研究

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摘要

The actions of purified tetra-, tri-, and di-ethyl lead on rats and rat brain slices and brain brei have been examined. A method based on a reaction with dithizone and capable of estimating tri- and di-ethyl tin in rat tissues has been developed.After injection into rats tetraethyl lead is converted into triethyl lead and this is responsible for the toxic effects. Diethyl lead is much less toxic and the effects are different. The utilization of lactate and the oxidation of glucose by brain brei and slices respectively are inhibited by triethyl lead. A similar effect is seen in slices taken from rats poisoned with tetra- or tri-ethyl lead. Rat liver cell microsomes readily convert tetraethyl to triethyl lead and the latter is stable and remains in the animal tissues for several days. The concentration of triethyl lead in the brain is not high in comparison with other tissues but brain tissue appears to be unduly sensitive to its toxic action.Neither tetra- nor tri-ethyl lead reacts with B.A.L. or ethylene-diamine-tetra-acetic acid (E.D.T.A.). Diethyl lead reacts with B.A.L. but not with E.D.T.A.
机译:已经研究了纯化的四乙基,三乙基和二乙基铅对大鼠,大鼠脑切片和脑血脂的作用。已开发出一种基于与双硫zone反应的方法,能够估计大鼠组织中的三乙基和二乙基锡。将四乙基铅注入大鼠体内后转化为三乙基铅,这是造成毒性作用的原因。二乙基铅的毒性小得多,其作用也不同。三乙基铅可抑制乳酸的利用和脑白质和切片对葡萄糖的氧化作用。在从被四乙基铅或三乙基铅中毒的大鼠的切片中可以看到类似的效果。大鼠肝细胞微粒体很容易将四乙基铅转化为三乙基铅,后者很稳定,并在动物组织中保留了几天。与其他组织相比,大脑中三乙基铅的浓度不高,但大脑组织似乎对其毒性作用不敏感。四乙基铅或三乙基铅均不会与B.A.L.或乙二胺四乙酸(E.D.T.A.)。二乙基铅与B.A.L.但没有E.D.T.A.

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