共查询到20条相似文献,搜索用时 0 毫秒
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Rats were fed a diet containing p-chlorophenoxyisobutyric acid (clofibric acid). Activity of microsomal 1-acylglycerophosphorylcholine (1-acyl-GPC) acyltransferase in liver was increased approx. 3-fold by the treatment with clofibric acid. The treatment of rats with clofibric acid did not increase activity of microsomal 2-acyl-GPC acyltransferase. Feeding a diet containing 2,2'-(decamethylenedithio)diethanol (tiadenol), di(2-ethylhexyl)phthalate or acetylsalicylic acid also resulted in a selective increase in the activity of 1-acyl-GPC acyltransferase in rat liver. Treatment with clofibric acid increased the activity of 1-acyl-GPC acyltransferase in liver of mouse as well as rat, but did not change the activity in liver of guinea-pig. The relative rate of acylation of 1-acyl-GPC with various acyl-CoAs by hepatic microsomes was not changed by the treatment of rats with clofibric acid. 相似文献
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Iu K Eletski? S G Mamontov T V Savchenko T K Dubovaia 《Biulleten' eksperimental'no? biologii i meditsiny》1984,98(10):482-484
The paper is concerned with the action of chalones, tissue-specific inhibitors of cell proliferation, on DNA synthesis and mitotic activity of hepatocytes in the intact and denervated liver during regeneration. Experiments were made on Wistar rats. Liver denervation was performed by bilateral subdiaphragmal vagotomy. In control and vagotomized animals, two thirds of the liver was resected. The data obtained indicate that chalones noticeably reduce the number of DNA-synthesizing cells and mitoses in the regenerating liver of intact animals. During regeneration of the denervated liver, chalones do not produce any inhibitory action on the intensity of proliferation. Analysis of the data obtained allows a conclusion that preservation of adequate innervation of the organ is needed for realization of the action of hepatic chalones. 相似文献
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Shams LM Minaei-Tehrani D Gholipour H Nohehkhan M 《Indian journal of experimental biology》2011,49(3):183-190
Heterocyclic compounds such as quinazolinones have variety of biological and pharmacological properties (anticancer, antiinflammatory, antimicrobial, antimalaria, etc.). Effects of two new quinazolinones viz., 4(3H)-quinazolinone-2-propyl-2-phenylethyl (QPPE) and 4(3H)quinazolinone-2-ethyl-2-phenylethyl (QEPE) were investigated on Balb/C mice embryos livers-the major organ of metabolism and detoxification of drugs and toxins. Histological and pathological studies demonstrated QPPE and QEPE as producers of toxic metabolites after biotransformation, creating necrosis, fatty changes, increase in the number of band cells, hepatocytes' diameters and alkaline phosphatase, in addition to sinusoid dilation, hemorrhages and hyperemia. Transmission electron micrographs showed lipid droplets in hepatocytes' cytoplasm, necrosis, vacuolization, cytoplasm disintegration, disfigured and swollen mitochondria, irregular and abnormal nuclei, nuclei with heterochromatin, condensed chromatins, myelin figures and autophages in injured hepatocytes. In conclusion, QPPE and QEPE make toxic components after biotransformation injuring membranes and creating inflammatory reactions. They also disturb metabolism of lipids pathways and cause the appearances of lipid droplets in hepatocytes. 相似文献
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Acetoacetate formation by livers of young and adult rats 总被引:8,自引:0,他引:8
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H. -V. Tuczek P. Fritz A. Grau A Mischlinsky T. Wagner G. Wegner 《Histochemistry and cell biology》1985,83(2):165-169
Summary The conditions affecting the immunohistochemical identification of albumin in livers of male NMRI-mice were investigated by light microscopy. In normal livers albumin is randomly distributed, revealing a pancytoplasmic nearly homogen reaction in groups of hepatocytes or single parenchymal cells. However, combined autoradiographic studies after pulse labelling with 3H-valin and perfusion experiments with human albumin indicate that this distribution is caused by albumin from blood plasma and does not reflect true protein synthesis. After perfusion of the livers followed by immunohistochemical amplification techniques which allowed to dilute the primary antibody up to 1:30,000, albumin could be detected nearly in all liver parenchymal cells as granular deposits decreasing in its density from periportal fields towards the terminal hepatic venules.In regenerating livers due to partial hepatectomy no remarkable differences in granular albumin deposits between G1- and S-phase of the cell cycle could be detected as was demonstrated by combined immunohistochemistry and 3H-dThd-autoradiography. However, during mitosis the content of albumin was often considerably reduced.Supported by a grant from the Robert-Bosch-Foundation, Stuttgart, Federal Republic of Germany 相似文献
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The liver of the newly born rat has approximately the same capacity for cholesterol biosynthesis as that of the adult animal. However, during nursing, the ability to synthesize cholesterol diminishes markedly during the early neonate period and by the end of the second week has essentially vanished. The level of the regulatory enzyme of cholesterol biosynthesis, 3-hydroxy-3-methylglutaryl-CoA reductase, closely follows this pattern (Hahn, P. and Walker, B. (1979) Can. J. Biochem. 57, 1216-1219). In contrast, we have found that two other enzymes of cholesterol biosynthesis, prenyltransferase and squalene synthetase, undergo changes in activity that provide three maxima - one on birth, one during midnursing, and one on weaning. Possible explanations for this pattern are presented. 相似文献
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1. A porphyrinogenic drug, 3,5-diethoxycarbonyl-1,4-dihydrocollidine, caused a decrease in the proportion of single ("run off") ribosomes, and an increase in the number of polyribosomes, in the livers of treated animals. 2. No change could be detected in the distribution of amino acid incorporation among hepatic polyribosomes. 相似文献
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A method for the isolation of peroxisomes from livers of normal and clofibrate-treated mice is described. The method utilizes glutaraldehyde to stabilize peroxisomal membranes, and isopycnic centrifugation of a light mitochondrial fraction through a linear metrizamide gradient to achieve optimal resolution from other organelles. On the basis of the biochemical and morphological data, the peroxisomal preparations are indicated as of high purity: contamination by mitochondria, lysosomes, and plasma membranes is negligible, and the level of contaminating microsomes is around 5% for normal peroxisomes and 8% for peroxisomes from clofibrate-treated mice. Peroxisomal membranes prepared by carbonate extraction contain two major polypeptides of approximately 70,000 Da, and show 2 and 8% contamination by microsomal membrane protein for the preparations from normal and clofibrate-treated mice, respectively. 相似文献
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A W Tan 《The Journal of biological chemistry》1982,257(9):5004-5007
We reported that when synthase D was converted to synthase I in a rat liver extract, it progressed through a synthase form with activity characteristics which could not be explained by a mixture of synthase D and synthase I (Tan, A. W. H. (1981) Biochem. J. 200, 169-172). In this study we will borrow the "R" nomenclature to describe this "non-D" and "non-I" activity. Using activities measured at five different conditions and simultaneous equations, the amount of the three synthase forms in liver extracts can be estimated. During incubation of the liver extract, the amount of synthase R was found to increase with time and then to decrease as synthase I was generated, a profile typical of an enzyme intermediate. We investigated for the presence of synthase R in rat liver under different in vivo conditions. In contrast to the liver of fed rats which had very little synthase R, the liver of fasted rats was found to have 30% of its synthase in the R form. This synthase R was increased 2-fold when glucose was given and decreased to a very low level when glucagon was given. Synthase I was not detected, even in the livers of starved rats given glucose. Using conditions which were closer to those of the cell, synthase R was found to have relatively high activity, up to 70% that of synthase I. Based on these results, synthase R is proposed to be an active enzyme form responsible for glycogen synthesis in rat liver. 相似文献