The ability of vitamin E to prevent or treat experimental lead intoxication was investigated in rats.Lead ingestion(10 mg/kg,lead as lead acetate,orally fbr 6 weeks)significantly inhibited the activity of blood δ-ami...The ability of vitamin E to prevent or treat experimental lead intoxication was investigated in rats.Lead ingestion(10 mg/kg,lead as lead acetate,orally fbr 6 weeks)significantly inhibited the activity of blood δ-aminolevulinic acid dehydratase(ALAD),reduced the brain dopamine (DA)contents,enhanced the blood zinc protoporphyrin,and enhanced the urinary excretion of δ-aminolevulinic acid(ALA).Lead exposure also elevated brain norepinephrine,homovanillic acid,and 5-hydroxyindole acetic acid(5-HIAA)levels and concentration of lead in blood and tissue.Simultaneous supplementation of vitamin E along with lead significantly reduced the inhibition of blood ALAD activity,brain DA and 5-HIAA levels,and elevation of urinary ALA excretion.Blood and liver lead concentrations were also significantly reduced by simultaneous supplementation with vitamin E.Postlead exposure treatment with vitamin E was ineffective in reducing the lead-induced effects,except that the inhibition of blood ALAD activity was slightly reduced.The present results suggest that vitamin E given simultaneously with lead is effective in reducing the severity of lead intoxication.1989 Academic Press.Inc.展开更多
Selenium plays various biological functions in the form of selenoprotein in human body. Brain is one of the most abundant organs of selenoprotein, which plays an important role in maintaining brain redox homeostasis, ...Selenium plays various biological functions in the form of selenoprotein in human body. Brain is one of the most abundant organs of selenoprotein, which plays an important role in maintaining brain redox homeostasis, signal transduction pathway regulation and neuroimmune regulation. Yet, nano-selenium have attracted much attention for their high bioavailability and low toxicity. Nano-selenium are of great application potential in field of biomedical nervous system. Recently, investigation on selenoprotein and nano-selenium has gradually become a new hotspot for the important functions of selenium in human nervous system. In this article, we wish to review recent progresses and give a perspective.展开更多
文摘The ability of vitamin E to prevent or treat experimental lead intoxication was investigated in rats.Lead ingestion(10 mg/kg,lead as lead acetate,orally fbr 6 weeks)significantly inhibited the activity of blood δ-aminolevulinic acid dehydratase(ALAD),reduced the brain dopamine (DA)contents,enhanced the blood zinc protoporphyrin,and enhanced the urinary excretion of δ-aminolevulinic acid(ALA).Lead exposure also elevated brain norepinephrine,homovanillic acid,and 5-hydroxyindole acetic acid(5-HIAA)levels and concentration of lead in blood and tissue.Simultaneous supplementation of vitamin E along with lead significantly reduced the inhibition of blood ALAD activity,brain DA and 5-HIAA levels,and elevation of urinary ALA excretion.Blood and liver lead concentrations were also significantly reduced by simultaneous supplementation with vitamin E.Postlead exposure treatment with vitamin E was ineffective in reducing the lead-induced effects,except that the inhibition of blood ALAD activity was slightly reduced.The present results suggest that vitamin E given simultaneously with lead is effective in reducing the severity of lead intoxication.1989 Academic Press.Inc.
基金Jiangsu Provincial Six Talent Peaks Project (No. XCL090)the Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD) for supportsupport of the fund of the joint-laboratory of Shanghai Dingya Pharmaceutical Chemical Technology Co., Ltd. with Yangzhou University (2022-2027)。
文摘Selenium plays various biological functions in the form of selenoprotein in human body. Brain is one of the most abundant organs of selenoprotein, which plays an important role in maintaining brain redox homeostasis, signal transduction pathway regulation and neuroimmune regulation. Yet, nano-selenium have attracted much attention for their high bioavailability and low toxicity. Nano-selenium are of great application potential in field of biomedical nervous system. Recently, investigation on selenoprotein and nano-selenium has gradually become a new hotspot for the important functions of selenium in human nervous system. In this article, we wish to review recent progresses and give a perspective.