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Biomedical subjects

S Orrenius

Publications and source records attributed to S Orrenius.

402 records · Page 23Linked to original sources

Xenobiotic metabolism and enzyme induction in isolated rat intestinal microsomes.

Intestinal microsomes were isolated from rats pretreated with 3-methylcholanthrene (MC), phenobarbital (PB), and pregnenolone-16alpha-carbonitrile (PCN). The metabolism of benzo[a]pyrene (BP), 7-ethoxyresorufin, 7-ethoxycoumarin, and biphenyl were examined. MC induces a 30-fold increase in BP metabolism. With control microsomes, BP metabolism is inhibited by metyrapone, SKF 525-A, and antimycin A, but is stimulated 4.5-fold by rotenone. With microsomes from MC-treated rats, BP metabolism is inhibited by metyrapone, SKF 525-A, antimycin A, and rotenone. MC pretreatment increases 7-ethoxyresorufin de-ethylase by almost 20-fold and ethoxycoumarin de-ethylase by almost 18 fold. PB pretreatment produces less than a 2-fold increase in both de-ethylases. PCN pretreatment inhibits 7-ethoxyresorufin and 7-ethoxycoumarin de-ethylases. In rats fasted for 2 days, neither de-ethylase could be detected in intestinal microsomes. Biphenyl 2- and 4-hydroxylase activities were induced less than 4-fold by MC or PB pretreatment.

Animals↗

Biochemical mechanisms of oxidative liver cell injury.

The toxicological implications of the formation of active oxygen species have attracted growing interest in recent years. Under aerobic conditions, oxygen radicals are normal cellular metabolites. However, the production of oxygen radicals may be greatly stimulated in the presence of various redox active compounds. Eventually, the stimulation of oxygen radical production may be so great as to overwhelm the cellular defence systems, create an oxidative stress and bring about toxicity. Recent studies in this laboratory indicate that glutathione and protein thiol depletion play a critical role in the development of oxidative cell injury. This depletion of cellular thiols can result in a disturbance of intracellular calcium ion homeostasis, which seems to be directly related to cell killing.

Animals↗