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81.
对6周龄雄性Wistar大鼠5次灌胃给予20%LD50的乐果,观察给药后大鼠的毒性反应,每日测定实验鼠采食量、饮水量和体重。最后一次给药后第24h,采用丁酰硫代胆碱法测定大鼠红细胞、血清和脑组织中的胆碱酯酶浓度,并采用定量RT-PCR法检测大鼠肝中细胞色素P450基因8个亚型的表达量。结果表明,大鼠用药后不同时间内出现了有机磷药物中毒的典型症状,其采食量、饮水量和体重明显下降,红细胞、血清和脑组织中胆碱酯酶浓度均明显低于对照组,肝细胞色素P450的8个亚型中CYP2B1/2的表达量明显高于对照组。 相似文献
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Mark J. Acierno MBA DVM DACVIM Verna F. Serra BA Meghan E. Johnson BS Mark A. Mitchell DVM MS PhD 《Journal of Veterinary Emergency and Critical Care》2008,18(5):477-479
Objective – To evaluate the sensitivity and specificity of a newly available, semi‐quantitative, cage‐side test for the detection of ethylene glycol (EG) toxicosis in cats. Design – Prospective, laboratory study. Setting – University teaching hospital. Animals – This study utilized samples from 57 cats, whose blood had been anticoagulated with EDTA and submitted to the hospital's laboratory for a complete blood count. Samples were centrifuged, and the plasma separated, aliquoted, and immediately frozen at ?30 °C. Interventions – Samples were randomly divided into 2 primary groups (Group 1: no EG added, Group 2: EG added). Twenty microliters of plasma from each of the Group 1 samples was applied directly to the test strip. Plasma samples from Group 2 had EG added at different concentrations to achieve approximate final concentrations of 20, 60, or 80 mg/dL. These samples were then applied to the test strip. Measurements – Two readers who were blinded to the sample preparation procedure and isolated from each other were asked to categorically interpret the colorimetric reaction on the randomly presented test strips. Main Results – The agreement of the 2 reviewers at the 3 different levels of EG concentrations (20, 60, 80 mg/dL) were 0.7, 0.7, and 0.5, respectively. Thus, the readers demonstrated substantial agreement while reading the 2 lower concentrations, while at 80 mg/dL the level of agreement was moderate. Overall, the sensitivity of the assay increased as the concentration of EG increased (reviewer 1: 67%, 67%, 86%; reviewer 2: 56%, 89%, 100%), while the specificity of the assay decreased with increasing concentrations of EG (reviewer 1: 77%, 45%, 50%; reviewer 2: 77%, 53%, 25%). Conclusions: Because of the likelihood for false negatives and false positives, results from this test must be viewed in light of clinical data and should not be relied upon as a lone diagnostic test. 相似文献
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Ornuma Singha Kanchana Kengkoom Khuanjit Chaimongkolnukul Sompong Cherdyu Emsri Pongponratn Taweesak Ketjareon Yaowaluk Panavechkijkul Sumate Ampawong 《Journal of toxicologic pathology》2013,26(3):283-291
A one-time oral gavage can be enough to cause of alveologenic edema with higher expression of AQP-1 and -4 than that with repeated-dose oral gavage, which caused both profound perivascular edema and hydrostatic pressure edema, while AQP-5 was similarly expressed. The alteration of AQPs expression was probably related to alveolar fluid clearance across the alveolar and bronchiolar epithelium in different stages of lung injury. The results clarified the type of lung edema in acute and sub-chronic toxicity studies without treatment related effect of tested material. The pathogenesis of pulmonary edema due to oral gavage toxicological study is associated with the cellular immune response to the reflux materials. Mast cell and leukocyte accumulation may contribute to increase vascular permeability leading to permeability edema. The increase in alveolar septum epithelium, perivascular and peribronchial cuffing, accumulation alveolar lipid containing macrophage and medial hyperplasia of the pulmonary artery might have been caused to increase airway resistance, which resulted in hydrostatic pressure edema. 相似文献