[Effect of Echinococcus multilocularis Infection on the Activities of Drug-metabolizing Enzymes in Gerbil Liver]. 2016

Huan-ping Li, and Qi Xin, and Jun Lu, and Miao-miao Yuan, and Nabeel Pervaiz, and Tao Jing

To study the effect of Echinococcus multilocularis infection on the activities of drug-metabolizing enzymes in gerbil liver. Ten gerbils (Meriones unguiculatus) were randomly divided into 2 groups, the experimental group in which each animal was intraperitoneally injected with 300 μl E. multilocularis cyst homogenates (containing about 600 protoscoleces), and the control group in which each animal received 300 μl saline(i.p.). Five months after infection, the animals were sacrificed by cervical dislocation, and livers were collected. The liver microsomal and cytosolic fractions were obtained by differential centrifugation. Protein concentration was measured by the BCA method. CYP450 and Cyt b5 contents in the microsomal fraction were measured with differential spectroscopy. Activities of 7-ethoxyresorufin(EROD) and 7-methoxyresorufin(MROD) were measured by fluorescence spectrometry. The activities of NADPH-cytochrome C reductase(NCR), glutathione-S-transferase (GST), and flavine monooxygenases (FMO) were measured by UV-visible spectrophotometry. The protein content of cytosolic fractions and liver microsomes in experimental group was (11.089±1.277) and (3.212±0.924) mg/ml, those in control group was (12.459±1.625) and (3.894±0.395) mg/ml, respectively. The contents of CYP450 and Cyt b5 in the experimental group [(0.508±0.142), (0.515±0.077) nmol/mg protein, respectively] were both significantly lower than those in the control [(0.647±0.090), (0.596±0.051) nmol/mg protein](P<0.05). The GST activity decreased significantly in the experimental group [(1.766±0.339)×103 nmol/(mg·min)] compared with the control [(2.001±0.160)×103 nmol/(mg·min)](P<0.05). But the FMO and NCR activities increased significantly in the experimental group [(1.142±0.327) nmol/(mg·min) and (0.602±0.162)×103 nmol/(mg·min), respectively] compared with the control [(0.882±0.150) nmol/(mg·min) and (0.442±0.082)×103 nmol/(mg·min)](P<0.05). However, there were no significant differences in EROD and MROD activities between the two groups (P>0.05). The activities of FMO and NCR markedly increase, while that of GST significantly decreases in the gerbil liver after E. multilocularis infection.

UI MeSH Term Description Entries
D008099 Liver A large lobed glandular organ in the abdomen of vertebrates that is responsible for detoxification, metabolism, synthesis and storage of various substances. Livers
D003577 Cytochrome P-450 Enzyme System A superfamily of hundreds of closely related HEMEPROTEINS found throughout the phylogenetic spectrum, from animals, plants, fungi, to bacteria. They include numerous complex monooxygenases (MIXED FUNCTION OXYGENASES). In animals, these P-450 enzymes serve two major functions: (1) biosynthesis of steroids, fatty acids, and bile acids; (2) metabolism of endogenous and a wide variety of exogenous substrates, such as toxins and drugs (BIOTRANSFORMATION). They are classified, according to their sequence similarities rather than functions, into CYP gene families (>40% homology) and subfamilies (>59% homology). For example, enzymes from the CYP1, CYP2, and CYP3 gene families are responsible for most drug metabolism. Cytochrome P-450,Cytochrome P-450 Enzyme,Cytochrome P-450-Dependent Monooxygenase,P-450 Enzyme,P450 Enzyme,CYP450 Family,CYP450 Superfamily,Cytochrome P-450 Enzymes,Cytochrome P-450 Families,Cytochrome P-450 Monooxygenase,Cytochrome P-450 Oxygenase,Cytochrome P-450 Superfamily,Cytochrome P450,Cytochrome P450 Superfamily,Cytochrome p450 Families,P-450 Enzymes,P450 Enzymes,Cytochrome P 450,Cytochrome P 450 Dependent Monooxygenase,Cytochrome P 450 Enzyme,Cytochrome P 450 Enzyme System,Cytochrome P 450 Enzymes,Cytochrome P 450 Families,Cytochrome P 450 Monooxygenase,Cytochrome P 450 Oxygenase,Cytochrome P 450 Superfamily,Enzyme, Cytochrome P-450,Enzyme, P-450,Enzyme, P450,Enzymes, Cytochrome P-450,Enzymes, P-450,Enzymes, P450,Monooxygenase, Cytochrome P-450,Monooxygenase, Cytochrome P-450-Dependent,P 450 Enzyme,P 450 Enzymes,P-450 Enzyme, Cytochrome,P-450 Enzymes, Cytochrome,Superfamily, CYP450,Superfamily, Cytochrome P-450,Superfamily, Cytochrome P450
D004443 Echinococcosis An infection caused by the infestation of the larval form of tapeworms of the genus Echinococcus. The liver, lungs, and kidney are the most common areas of infestation. Cystic Echinococcosis,Cysts, Hydatid,Hydatid Cyst,Hydatidosis,Echinococcus Granulosus Infection,Echinococcus Infection,Hydatid Disease,Cyst, Hydatid,Cystic Echinococcoses,Echinococcoses,Echinococcoses, Cystic,Echinococcosis, Cystic,Echinococcus Granulosus Infections,Echinococcus Infections,Granulosus Infection, Echinococcus,Granulosus Infections, Echinococcus,Hydatid Cysts,Hydatid Diseases,Hydatidoses,Infection, Echinococcus,Infection, Echinococcus Granulosus,Infections, Echinococcus Granulosus
D005849 Gerbillinae A subfamily of the Muridae consisting of several genera including Gerbillus, Rhombomys, Tatera, Meriones, and Psammomys. Gerbils,Jird,Meriones,Psammomys,Rats, Sand,Gerbil,Jirds,Merione,Rat, Sand,Sand Rat,Sand Rats
D005982 Glutathione Transferase A transferase that catalyzes the addition of aliphatic, aromatic, or heterocyclic FREE RADICALS as well as EPOXIDES and arene oxides to GLUTATHIONE. Addition takes place at the SULFUR. It also catalyzes the reduction of polyol nitrate by glutathione to polyol and nitrite. Glutathione S-Alkyltransferase,Glutathione S-Aryltransferase,Glutathione S-Epoxidetransferase,Ligandins,S-Hydroxyalkyl Glutathione Lyase,Glutathione Organic Nitrate Ester Reductase,Glutathione S-Transferase,Glutathione S-Transferase 3,Glutathione S-Transferase A,Glutathione S-Transferase B,Glutathione S-Transferase C,Glutathione S-Transferase III,Glutathione S-Transferase P,Glutathione Transferase E,Glutathione Transferase mu,Glutathione Transferases,Heme Transfer Protein,Ligandin,Yb-Glutathione-S-Transferase,Glutathione Lyase, S-Hydroxyalkyl,Glutathione S Alkyltransferase,Glutathione S Aryltransferase,Glutathione S Epoxidetransferase,Glutathione S Transferase,Glutathione S Transferase 3,Glutathione S Transferase A,Glutathione S Transferase B,Glutathione S Transferase C,Glutathione S Transferase III,Glutathione S Transferase P,Lyase, S-Hydroxyalkyl Glutathione,P, Glutathione S-Transferase,Protein, Heme Transfer,S Hydroxyalkyl Glutathione Lyase,S-Alkyltransferase, Glutathione,S-Aryltransferase, Glutathione,S-Epoxidetransferase, Glutathione,S-Transferase 3, Glutathione,S-Transferase A, Glutathione,S-Transferase B, Glutathione,S-Transferase C, Glutathione,S-Transferase III, Glutathione,S-Transferase P, Glutathione,S-Transferase, Glutathione,Transfer Protein, Heme,Transferase E, Glutathione,Transferase mu, Glutathione,Transferase, Glutathione,Transferases, Glutathione
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D048210 Echinococcus multilocularis A north temperate species of tapeworm (CESTODA) whose adult form infects FOXES and wild RODENTS. The larval form can infect humans producing HEPATIC HYDATID CYSTS. Echinococcus multiloculari,multilocularis, Echinococcus

Related Publications

Huan-ping Li, and Qi Xin, and Jun Lu, and Miao-miao Yuan, and Nabeel Pervaiz, and Tao Jing
January 1993, Zhongguo ji sheng chong xue yu ji sheng chong bing za zhi = Chinese journal of parasitology & parasitic diseases,
Huan-ping Li, and Qi Xin, and Jun Lu, and Miao-miao Yuan, and Nabeel Pervaiz, and Tao Jing
March 1980, Biochemical and biophysical research communications,
Huan-ping Li, and Qi Xin, and Jun Lu, and Miao-miao Yuan, and Nabeel Pervaiz, and Tao Jing
July 1977, Biomedicine / [publiee pour l'A.A.I.C.I.G.],
Huan-ping Li, and Qi Xin, and Jun Lu, and Miao-miao Yuan, and Nabeel Pervaiz, and Tao Jing
November 1982, Zentralblatt fur Veterinarmedizin. Reihe A,
Huan-ping Li, and Qi Xin, and Jun Lu, and Miao-miao Yuan, and Nabeel Pervaiz, and Tao Jing
January 1974, Naunyn-Schmiedeberg's archives of pharmacology,
Huan-ping Li, and Qi Xin, and Jun Lu, and Miao-miao Yuan, and Nabeel Pervaiz, and Tao Jing
July 1988, Arzneimittel-Forschung,
Huan-ping Li, and Qi Xin, and Jun Lu, and Miao-miao Yuan, and Nabeel Pervaiz, and Tao Jing
January 1998, Radiographics : a review publication of the Radiological Society of North America, Inc,
Huan-ping Li, and Qi Xin, and Jun Lu, and Miao-miao Yuan, and Nabeel Pervaiz, and Tao Jing
September 2000, Arzneimittel-Forschung,
Huan-ping Li, and Qi Xin, and Jun Lu, and Miao-miao Yuan, and Nabeel Pervaiz, and Tao Jing
February 2000, The Japanese journal of veterinary research,
Huan-ping Li, and Qi Xin, and Jun Lu, and Miao-miao Yuan, and Nabeel Pervaiz, and Tao Jing
December 1977, Toxicology and applied pharmacology,
Copied contents to your clipboard!