期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
The Antidotal Effects of High-dosage γ-Aminobutyric Acid on Acute Tetramine Poisoning as Compared with Sodium Dimercaptopropane Sulfonate 被引量:1
1
作者 孙鹏 韩继媛 温宇英 《Journal of Huazhong University of Science and Technology(Medical Sciences)》 SCIE CAS 2007年第4期419-421,共3页
To investigate the therapeutic effect of nigh-dosage γ-aminobutyric acid (GABA) on acute tetramine (TET) poisoning, 50 Kunming mice were divided into 5 groups at random and the antidotal effects of GABA or sodium... To investigate the therapeutic effect of nigh-dosage γ-aminobutyric acid (GABA) on acute tetramine (TET) poisoning, 50 Kunming mice were divided into 5 groups at random and the antidotal effects of GABA or sodium dimercaptopropane sulfonate (Na-DMPS) on poisoned mice in different groups were observed in order to compare the therapeutic effects of nigh-dosage GABA with those of Na-DMPS. Slices of brain tissue of the poisoned mice were made to examine pathological changes of cells. The survival analysis was employed. Our results showed that both high-dosage GABA and Na-DMPS could obviously prolong the survival time, delay onset of convulsion and muscular twitch, and ameliorate the symptoms after acute tetramine poisoning in the mice. Better effects could be achieved with earlier use of high dosage GABA or Na-DMPS. There was no significant difference in prolonging the survival time between high-dose GABA and Na-DMPS used immediately after poisioning. It is concluded that high-dosage GABA can effectively antagonize acute toxicity of terarnine in mice. And it is suggested that nigh-dosage GABA may be used as an excellent antidote for acute TET poisoning in clinical practice. The indications and correct dosage for clinical use awaits to be further studied. 展开更多
关键词 tetramine γ-aminobutyfic acid sodium dimercaptopropane sulfonate experimental therapy
下载PDF
中毒患者血清和尿液中毒鼠强残留物的GC-MS分析方法 被引量:3
2
作者 苏小川 覃志英 冯向阳 《分析测试学报》 CAS CSCD 北大核心 2004年第z1期58-61,共4页
  有关资料表明[1],人和动物口服毒鼠强后,其血液、尿液和各脏器中均有毒鼠强残留物出现,残留时间从药后数小时至几天乃至十几天之内不等.可见血液和尿液作为可印证中毒病人中毒原因的直接样品更值得我们去关注,与呕吐物、可疑食物等...   有关资料表明[1],人和动物口服毒鼠强后,其血液、尿液和各脏器中均有毒鼠强残留物出现,残留时间从药后数小时至几天乃至十几天之内不等.可见血液和尿液作为可印证中毒病人中毒原因的直接样品更值得我们去关注,与呕吐物、可疑食物等检品相比[2,3],它具有提取相对简单,干扰成分少,残留时间长以及可反复采集等许多优点.…… 展开更多
关键词 SERUM URINE tetramine GC-MS
下载PDF
Curing reaction and mechanism of phenol-formaldehyde novolac resins for foundry 被引量:1
3
作者 Yan Shi Li-feng Wang +3 位作者 Yue Han Cong-yan Liao Lin-zhi Xie Chun-rong Yang 《China Foundry》 SCIE 2016年第3期205-210,共6页
In this study on the curing dynamics of phenol-formaldehyde novolac resins(PFNR) and hexamethylene tetramine(HMTA), two typical commercial PFNR were selected as examples and the curing reactions of the resins with HMT... In this study on the curing dynamics of phenol-formaldehyde novolac resins(PFNR) and hexamethylene tetramine(HMTA), two typical commercial PFNR were selected as examples and the curing reactions of the resins with HMTA were studied by differential scanning calorimetry(DSC). Based on the data calculated by the Kissinger equation and the Crane equation, a thermocuring dynamic model was established, from which the process conditions, activation energy, reaction kinetics equation and a f irst-order reaction of the curing reactions were derived. 展开更多
关键词 phenol-formaldehyde novolac resins used for foundry hexamethylene tetramine differential scanning calorimetry curing reaction and mechanism
下载PDF
Investigation on neurotoxin of sea snail meat
4
作者 Kumar Mohan Sadasivam Giji +1 位作者 Pachaiyappan Abirami Muthuvel Arumugam 《Journal of Coastal Life Medicine》 2016年第2期98-103,共6页
Objective:To explore the neurotoxic agent tetramine and characterized with cytotoxicity studies from the chief constituents of sea food Trochus radiatus(T.radiatus)and Thais rudolphi(T.rudolphi)for coastal people of I... Objective:To explore the neurotoxic agent tetramine and characterized with cytotoxicity studies from the chief constituents of sea food Trochus radiatus(T.radiatus)and Thais rudolphi(T.rudolphi)for coastal people of India.Methods:Extraction was performed by following the method of Hashizume et al.(1987)with apposite modification.The extracted aqueous layer was chromatographed on a column of diethylaminoethyl-Sephadex and Sephadex LH-20.To analysis the toxic compound of T.radiatus and T.rudolphi has been done by high performance thin layer chromatography,gas chromatography-mass spectrometer,and the spectral data was examined by Fourier transform infrared spectrum spectroscopy.The cytotoxicity studies of the purified samples were assessed by hemolytic assay,brine shrimp assay and 3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide–cell proliferation assay.Results:The tetramine content was estimated as 0.4μg/g and 1.2μg/g respectively(w/w).The maximum haemolytic activity in T.rudolphi was found to be 256 haemolytic unit and 16 haemolytic unit in T.radiatus against human erythrocytes when compared to chicken erythrocytes.The samples exhibited lethality against brine shrimps at 60 and 7μg/100 mL,respectively.The tetramine from T.rudolphi and T.radiatus showed 54.2%and 70.8%of cytotoxicity against human lymphocyte at 2 mg/ml concentration.Further in the cell morphology studies,cell showed condensed chromatin,cytoplasmic blubbing and detachment from the surface.Furthermore,the presence of tetramine was confirmed based on the R_(f) values and it was chemically identified as Tetramethylammonium chloride(Pub Chem CID:6379)through the gas chromatography-mass spectrometer analysis.Conclusions:From the human health point of view,though the residue levels of N,N,N'-trimethyl-1,2-ethanediamine,Tetramethylammonium chloride and N,N-dimethylglycine detected in this study are well below the maximum residue limits of consuming level,the continuous intake may probably have side effects at the later stage.The field of marine gastropods toxin-ology is still in its infancy but the potential yields should attract more interest in the coming years and this report has been a significant development in the stoppage;control and even suppression of human hazards. 展开更多
关键词 Sea food Shell fish tetramine GASTROPOD LC_(50) NEUROTOXIN
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部