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1.
Braz. j. med. biol. res ; 40(5): 657-662, May 2007. tab
Article in English | LILACS | ID: lil-449088

ABSTRACT

The effects of schistosomiasis on microsomal enzymes were studied on post-infection day 90 when accumulated damage and fibrosis are most intense but granulomatous reaction around the eggs harbored in the liver is smaller than during the earlier phases. Swiss Webster (SW) and DBA/2 mice of either sex (N = 12 per sex per group) were infected with 100 Schistosoma mansoni cercariae on postnatal day 10 and killed on post-infection day 90. Cytochrome P-450 (CYP) concentration and alkoxyresorufin-O-dealkylases (EROD, MROD, BROD, and PROD), p-nitrophenol-hydroxylase (PNPH), coumarin-7-hydroxylase (COH), and UDP-glucuronosyltransferase (UGT) activities were measured in hepatic microsomes. Age-matched mice of the same sex and strain were used as controls. In S. mansoni-infected mice, CYP1A- and 2B-mediated activities (control = 100 percent) were reduced in SW (EROD: male (M) 36 percent, female (F) 38 percent; MROD: M 38 percent, F 39 percent; BROD: M 46 percent, F 19 percent; PROD: M 50 percent, F 28 percent) and DBA/2 mice (EROD: M 64 percent, F 58 percent; MROD: M 60 percent; BROD: F 49 percent; PROD: M 73 percent) while PNPH (CYP2E1) was decreased in SW (M 31 percent, F 38 percent) but not in DBA/2 mice. COH did not differ between infected and control DBA/2 and UGT, a phase-2 enzyme, was not altered by infection. In conclusion, chronic S. mansoni infection reduced total CYP content and all CYP-mediated activities evaluated in SW mice, including those catalyzed by CYP2E1 (PNPH), CYP1A (EROD, MROD) and 2B (BROD, PROD). In DBA/2 mice, however, CYP2A5- and 2E1-mediated activities remained unchanged while total CYP content and activities mediated by other CYP isoforms were depressed during chronic schistosomiasis.


Subject(s)
Animals , Female , Male , Mice , /metabolism , Liver Diseases, Parasitic/enzymology , Microsomes, Liver/enzymology , Schistosomiasis mansoni/enzymology , Chronic Disease , Mice, Inbred DBA , Microsomes, Liver/parasitology , Time Factors
2.
Braz. j. med. biol. res ; 33(1): 103-9, Jan. 2000. tab
Article in English | LILACS | ID: lil-252263

ABSTRACT

Xenobiotic metabolism is influenced by a variety of physiological and environmental factors including pregnancy and nutritional status of the individual. Pregnancy has generally been reported to cause a depression of hepatic monooxygenase activities. Low-protein diets and protein-energy malnutrition have also been associated with a reduced activity of monooxygenases in nonpregnant animals. We investigated the combined effects of pregnancy and protein-energy malnutrition on liver monooxygenase O-dealkylation activity. On pregnancy day 0 rats were assigned at random to a group fed ad libitum (well-nourished, WN) or to a malnourished group (MN) which received half of the WN food intake (12 g/day). WN and MN rats were killed on days 0 (nonpregnant), 11 or 20 of pregnancy and ethoxy- (EROD), methoxy- (MROD) and penthoxy- (PROD) resorufin O-dealkylation activities were measured in liver microsomes. Only minor changes in enzyme activities were observed on pregnancy day 11, but a clear-cut reduction of monooxygenase activities (pmol resorufin min-1 mg protein-1) was noted near term (day 0 vs 20, means + or _ SD, Student t-test, P<0.05) in WN (EROD: 78.9 + or - 15.1 vs 54.6 + or - 10.2; MROD: 67.8 + or - 10.0 vs 40.9 + or - 7.2; PROD: 6.6 + or - 0.9 vs 4.3 + or - 0.8) and in MN (EROD: 89.2 + or - 23.9 vs 46.9 + or - 15.0; MROD: 66.8 + or - 13.8 vs 27.9 + or - 4.4; PROD: 6.3 + or - 1.0 vs 4.1 + or - 0.6) dams. On pregnancy day 20 MROD was lower in MN than in WN dams. Malnutrition did not increase the pregnancy-induced reduction of EROD and PROD activities. Thus, the present results suggest that the activities of liver monooxygenases are reduced in near-term pregnancy and that protein-energy malnutrition does not alter EROD or PROD in pregnant rats


Subject(s)
Rats , Animals , Female , Pregnancy , Cytochrome P-450 CYP1A1/metabolism , Cytochrome P-450 CYP2B1/metabolism , Microsomes, Liver/enzymology , Pregnancy Complications , Protein-Energy Malnutrition/enzymology , Analysis of Variance , Biotransformation , Organ Size , Rats, Wistar , Weight Gain , Xenobiotics/metabolism
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