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Mechanisms of acute hepatic toxicity: chloroform, halothane, and glutathione.

作者信息

Brown B R, Sipes I G, Sagalyn A M

出版信息

Anesthesiology. 1974 Dec;41(6):554-61. doi: 10.1097/00000542-197412000-00005.

DOI:10.1097/00000542-197412000-00005
PMID:4433055
Abstract
摘要

相似文献

1
Mechanisms of acute hepatic toxicity: chloroform, halothane, and glutathione.急性肝毒性机制:氯仿、氟烷与谷胱甘肽
Anesthesiology. 1974 Dec;41(6):554-61. doi: 10.1097/00000542-197412000-00005.
2
Hepatic necrosis caused by halothane and hypoxia in phenobarbital-treated rats.
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3
Late dimethyl sulfoxide administration provides a protective action against chemically induced injury in both the liver and the kidney.晚期给予二甲基亚砜对化学诱导的肝脏和肾脏损伤具有保护作用。
Toxicol Appl Pharmacol. 1997 Jan;142(1):201-7. doi: 10.1006/taap.1996.8009.
4
[Enzyme histochemical studies on liver damage caused by halothane as compared to diethyl ether and chloroform].[与乙醚和氯仿相比,氟烷所致肝损伤的酶组织化学研究]
Acta Histochem. 1971;41(2):293-305.
5
Liver injury following halothane anesthesia in phenobarbital-pretreated rats.苯巴比妥预处理大鼠氟烷麻醉后的肝损伤
Biochem Pharmacol. 1974 Jan 15;23(2):189-95. doi: 10.1016/0006-2952(74)90409-2.
6
Massive lethal hepatic necrosis in rats anesthetized with fluroxene, after microsomal enzyme induction.
Anesthesiology. 1973 Dec;39(6):619-25. doi: 10.1097/00000542-197312000-00012.
7
An animal model of halothane hepatotoxicity: roles of enzyme induction and hypoxia.氟烷肝毒性的动物模型:酶诱导和缺氧的作用。
Anesthesiology. 1979 Oct;51(4):321-6. doi: 10.1097/00000542-197910000-00008.
8
An animal model of hepatotoxicity associated with halothane anesthesia.
Anesthesiology. 1976 Dec;45(6):622-8. doi: 10.1097/00000542-197612000-00005.
9
Comparison of the requirements for hepatic injury with halothane and enflurane in rats.
Anesth Analg. 1985 Oct;64(10):955-63.
10
Effect of phenobarbital or pregnenolone-16alpha-carbonitrile (PCN) pretreatment on acute carbon tetrachloride hepatotoxicity in rats.
Biochem Pharmacol. 1974 Feb 1;23(3):513-8. doi: 10.1016/0006-2952(74)90615-7.

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1
Cytotoxic Activity and Apoptosis Induction of Hypericum scabrum L.粗糙金丝桃的细胞毒性活性及凋亡诱导作用
Iran Red Crescent Med J. 2015 Oct 24;17(10):e19453. doi: 10.5812/ircmj.19453. eCollection 2015 Oct.
2
In vivo production of different chloroform metabolites: effect of phenobarbital and buthionine sulfoximine pretreatment.不同氯仿代谢物的体内生成:苯巴比妥和丁硫氨酸亚砜胺预处理的影响
Environ Health Perspect. 1994 Nov;102 Suppl 9(Suppl 9):45-7. doi: 10.1289/ehp.94102s945.
3
Mechanisms of chloroform and carbon tetrachloride toxicity in primary cultured mouse hepatocytes.
氯仿和四氯化碳对原代培养小鼠肝细胞毒性的作用机制
Environ Health Perspect. 1986 Nov;69:301-5. doi: 10.1289/ehp.8669301.
4
Absorption, distribution, and excretion of 14C-trihalomethanes in mice and rats.小鼠和大鼠体内14C-三卤甲烷的吸收、分布及排泄
Bull Environ Contam Toxicol. 1986 Nov;37(5):752-8. doi: 10.1007/BF01607835.
5
Elevation of serum xanthine oxidase following halothane anesthesia in the rat.
Experientia. 1976 May 15;32(5):620-1. doi: 10.1007/BF01990198.
6
Bioactivation and covalent binding of halothane to liver macromolecules.氟烷的生物活化及其与肝脏大分子的共价结合。
Environ Health Perspect. 1977 Dec;21:171-8. doi: 10.1289/ehp.7721171.
7
Absorption, biotransformation, and storage of halothane.氟烷的吸收、生物转化及储存
Environ Health Perspect. 1977 Dec;21:165-9. doi: 10.1289/ehp.7721165.