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R Gebhardt

Publications and source records attributed to R Gebhardt.

At least 91 records · Page 5Linked to original sources

Multiple inhibitory effects of garlic extracts on cholesterol biosynthesis in hepatocytes.

Exposure of primary rat hepatocytes and human HepG2 cells to water-soluble garlic extracts resulted in the concentration-dependent inhibition of cholesterol biosynthesis at several different enzymatic steps. At low concentrations, sterol biosynthesis from [14C]acetate was decreased in rat hepatocytes by 23% with an IC50 (half-maximal inhibition) value of 90 micrograms/mL and in HepG2 cells by 28% with an IC50 value of 35 micrograms/mL. This inhibition was exerted at the level of hydroxymethylglutaryl-CoA reductase (HMG-CoA reductase) as indicated by direct enzymatic measurements and the absence of inhibition if [14C]mevalonate was used as a precursor. At high concentrations (above 0.5 mg/mL), inhibition of cholesterol biosynthesis was not only seen at an early step where it increased considerably with dose, but also at later steps resulting in the accumulation of the precursors lanosterol and 7-dehydrocholesterol. No desmosterol was formed which, however, was a major precursor accumulating in the presence of triparanol. Thus, the accumulation of sterol precursors seems to be of less therapeutic significance during consumption of garlic, because it requires concentrations one or two orders of magnitude above those affecting HMG-CoA reductase. Alliin, the main sulfur-containing compound of garlic, was without effect itself. If converted to allicin, it resulted in similar changes of the sterol pattern. This suggested that the latter compound might contribute to the inhibition at the late steps. In contrast, nicotinic acid and particularly adenosine caused moderate inhibition of HMG-CoA reductase activity and of cholesterol biosynthesis suggesting that these compounds participate, at least in part, in the early inhibition of sterol synthesis by garlic extracts.

Acetates↗

Non-linearity of neoplastic conversion induced in rat liver by low exposures to diethylnitrosamine.

Neoplastic conversion induced in rat liver by diethylnitrosamine (DEN) was quantified by measuring preneoplastic and neoplastic lesions over a 34 week period in the beginning of which the carcinogen was given at three dose levels and two dose rates for the first 10 weeks, after which animals were maintained for 24 weeks with either no further exposure or were fed phenobarbital (PB) to promote neoplastic development of cells converted by DEN. DEN was injected s.c. in male F344 rats at weekly or biweekly intervals for total doses of 1, 2 or 4 mmol/kg body wt and then the rats were maintained on basal diet alone or diet containing 0.05% PB. At the end of exposure, DEN had produced a dose-related decrease in centrilobular glutamine synthetase-expressing (GS+) hepatocytes which is indicative of mild cytotoxicity. All doses induced foci that were gamma-glutamyltranspeptidase-positive and iron storage-deficient. The multiplicity of foci in the middle dose exceeded that in the low dose by about a factor of two and, in the high dose, was > 10-fold greater. A few GS+ foci were found in the high dose group only. At 34 weeks, neoplasms were present in the middle and high dose groups. Administration of PB after DEN increased the multiplicity of foci in all dose groups, most substantially in the low dose group. The effect of PB on liver neoplasm yield was marginal in the low non-carcinogenic dose, whereas it enhanced the multiplicity in the weakly carcinogenic middle dose by approximately 10-fold. Four principal findings were made: (i) even at the low doses used, a mild cytotoxic response not evidenced by morphological changes in conventional histopathology was manifested in the GS+ centrilobular subpopulation of hepatocytes; (ii) the dose response over a 4-fold dose range of DEN alone and when followed by PB was non-linear; (iii) the precursor role of foci in the evolution of liver neoplasms was evident and was most conspicuous in the case of GS+ foci; and (iv) a high level of foci induction was required for the evolution of neoplasms, even with PB promotion. The finding of non-linearity with increasing doses of DEN raises questions about the assumption that effects of carcinogens at high doses can be quantitatively extrapolated to low doses.

Adenoma↗

Inhibition by gonadectomy of effects of 2-acetylaminofluorene in livers of male, but not female rats.

The influence of gonadectomy on the effects of 2-acetylaminofluorene (AAF) in the livers of rats was studied. Groups of male and female F344 rats at 9 weeks of age were given AAF by daily gavage 5 days per week for 4 or 8 weeks for total cumulative doses of 1.0 or 2.0 mmol/kg body wt. AAF was administered either with no pretreatment or beginning 4 weeks after gonadectomy, which was performed at 5 weeks of age. In male rats AAF induced a large number of placental glutathione S-transferase foci in livers by 8 weeks, while in female rats the number was about 10% of that in males. Orchidectomy decreased the AAF induction of foci in male rats by 60%, whereas ovariectomy had no effect in female rats. Similarly, orchidectomy decreased DNA adduct levels approximately 85% in male rats given AAF by gavage for 4 weeks. In ovariectomized female rats at 4 and 8 weeks hepatic DNA adduct levels were somewhat elevated (< 50%) as compared to intact controls. The zone of glutamine synthetase-positive hepatocytes around the central vein was reduced by AAF exposure of male, but not female, rats. Male rats displayed a larger zone than females and the zone in males was reduced to the level of females by orchidectomy. Orchidectomy also diminished the effect of AAF on glutamine synthetase-positive cells. Thus, the induction of neoplastic conversion by AAF in rat liver, the extent of DNA adduct formation and the reduction of the glutamine synthetase-positive zone of hepatocytes were greater in males than females and were dependent upon the hormonal status of males.

2-Acetylaminofluorene↗

Metabolic zonation of the liver: regulation and implications for liver function.

Liver parenchyma shows a remarkable heterogeneity of the hepatocytes along the porto-central axis with respect to ultrastructure and enzyme activities resulting in different cellular functions within different zones of the liver lobuli. According to the concept of metabolic zonation, the spatial organization of the various metabolic pathways and functions forms the basis for the efficient adaptation of liver metabolism to the different nutritional requirements of the whole organism in different metabolic states. The present review summarizes current knowledge about this heterogeneity, its development and determination, as well as about its significance for the understanding of all aspects of liver function and pathology, especially of intermediary metabolism, biotransformation of drugs and zonal toxicity of hepatotoxins.

Animals↗

Different proliferative potential of rat and pig hepatocytes in pure primary culture and coculture.

In the present study we have compared the growth potential of hepatocytes from rats and pigs and the influence of cocultivation between these hepatocytes and the rat liver epitheloid cell line RL-ET-14. Proliferation, i.e., DNA synthesis, was detected by autoradiography after exposure to [3H]thymidine. Rat hepatocytes cultured at low cell density showed a very low basal growth and responded to epidermal growth factor (EGF) and insulin by a considerable increase in DNA synthesis after 48 h leading to a labeling index (LI) of 33%. Cocultivation with RL-ET-14 cells almost completely blocked the basal as well as the growth factor stimulated proliferation of the rat hepatocytes. In contrast, pig hepatocytes cultured alone showed a much greater growth potential (basal: LI 11%; insulin/EGF:LI 67%) than rat hepatocytes and were further stimulated by cocultivation (basal: LI 39%; insulin/EGF: LI 89%). Density-dependent inhibition of cell growth was less pronounced with pig hepatocytes. Even after reaching confluency, they showed further strong proliferation in pure as well as in cocultures whereas the LI of the rapidly growing clone RL-ET-14 decreased to 40%. Use of conditioned medium from RL-ET-14 cells did not mimic the growth inhibition of rat hepatocytes in coculture indicating that no soluble growth inhibitors produced by the epitheloid cells are responsible for this effect. In particular, the differences between rat and pig hepatocytes in coculture are not simply due to production of TGF-beta by the epitheloid cells since the hepatocytes from both species were inhibited by TGF-beta to a similar extent.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Different proliferative responses of periportal and perivenous hepatocytes to EGF.

Stimulation of DNA synthesis by EGF was compared in cultured periportal and perivenous hepatocyte populations. Periportal hepatocytes responded to EGF more sensitive (IC50-values 20 vs 75 ng/ml) and with a higher maximal stimulation (420 vs 290%) than perivenous hepatocytes with respect to both [3H]thymidine incorporation and labeling index. The glutamine synthetase-positive hepatocytes responded much less to EGF than did the perivenous cells in general. The simultaneous presence of insulin increased the sensitivity for EGF predominantly in the periportal hepatocytes. These inherent differences in the growth potential of hepatocytes from different acinar localizations may contribute to different growth patterns across the lobules in normal and regenerating liver.

Animals↗

Drug metabolizing enzyme activities in rat liver epithelial cell lines, hepatocytes and bile duct cells.

P450-dependent mono-oxygenase and conjugating enzyme activities were studied in rat liver epithelial cells (RLEs) and compared to those in hepatocytes and bile duct cells. Various RLE cell lines were investigated since (a) they are suspected to be derived from cells in the lineage from putative pluripotent stem cells to either hepatocytes or bile duct cells, and (b) they may represent targets of chemical carcinogens. Despite considerable variation between lines, common features were recognized. P450-dependent monooxygenase activities (7-ethoxyresorufin O-deethylase and 7-ethoxycoumarin O-deethylase) were undetectable in all RLEs and bile duct cells, and were uninducible by benz(a)anthracene. In contrast, glucuronosyltransferase (GT), sulfotransferase and GSH transferase activities were clearly detectable. Conjugating enzyme activities increased until confluency of the cell cultures was reached. Under the latter conditions, GT activities towards 4-methylumbelliferone or benzo(a)pyrene-3,6-quinol (substrates of a 3-methylcholanthrene-inducible phenol GT) were similar to those found in hepatocytes or bile duct cells. Using a selective cDNA probe, phenol GT mRNA was clearly detectable in RLE1. In contrast, GT activity towards 4-hydroxybiphenyl was much lower than in hepatocytes or bile duct cells (0.04- and 0.03-fold). Sulfotransferase and GSH transferase activities were also roughly comparable to those found in hepatocytes and in bile duct cells. The results suggest that RLEs and bile duct cells exhibit both high conjugating enzyme activities and a lack of P450-dependent mono-oxygenase activities, a pattern resembling the 'toxin-resistance phenotype' found in putative preneoplastic hepatocyte foci and nodules.

Aging↗

Heterogeneity of rat liver parenchyma in cholesterol 7 alpha-hydroxylase and bile acid synthesis.

Periportal and perivenous hepatocytes were isolated from rat liver by digitonin/collagenase perfusion for investigating the acinar distribution of bile acid synthesis. The specific activity of cholesterol 7 alpha-hydroxylase (EC 1.14.13.17) was 7.9-fold higher in perivenous cells than in periportal hepatocytes. Mass production of bile acids differed 4.4-fold between cultured perivenous and periportal hepatocytes. In contrast, the levels of free cholesterol in homogenates and microsomes derived from both subfractions were similar. Feeding of rats with the bile-acid-sequestering anion-exchange resin colestid resulted in a pronounced stimulation of cholesterol 7 alpha-hydroxylase activity and bile acid mass production, but decreased the perivenous/periportal ratio of both parameters. These results demonstrate that bile acid mass production, but decreased the perivenous hepatocytes, possibly owing to feedback suppression by bile acids from the enterohepatic circulation. Furthermore, the opposite acinar localization of cholesterol and bile acid biosynthesis provides an interesting alternative to current views of the regulation of their metabolic pathways.

Animals↗

Glutamate uptake in primary cultures of biliary epithelial cells from normal rat liver.

Biliary epithelial cells (BEC) were isolated from normal rat liver with high purity (greater than 95%) as revealed by morphological criteria as well as staining for gamma-glutamyl transferase and cytokeratin 19. During cultivation for 96 hr flattening of the cells and a loss of microvilli was apparent, while the cytokeratin 19-positive phenotype was maintained. The BEC contained a sodium-dependent as well as a sodium-independent uptake system for glutamate with high capacity. Both activities increased transiently during cultivation peaking after 72 and 48 hr, respectively. After 72 hr, apparent kinetic constants could be calculated for the sodium dependent (Km = 13.6 mM; Vmax = 388 nmoles/min/mg protein) and for the sodium-independent system. (Km = 10.8 mM; Vmax = 132 nmoles/min/mg protein). The transient increase of both transport systems was suppressed by dexamethasone. The sodium-dependence showed a threshold concentration of about 35 mM sodium. Inhibition by kainate was much less potent for BEC than for hepatocytes. These data indicate that BEC contain transport systems for glutamate different from those in hepatocytes and which may be involved in the intrahepatic reabsorption of glutamate from bile.

Animals↗

Three-dimensional reconstruction of the rat brain cortical microcirculation in vivo.

We used confocal laser scanning microscopy (CLSM) to investigate the morphology and three-dimensional relationships of the microcirculation of the superficial layers of the rat brain cortex in vivo. In anesthetized rats equipped with a closed cranial window (dura mater removed), after i.v. injection of 3 mg/100 g of body weight of fluorescein in 0.5 ml of saline, serial optical sections of the brain cortex intraparenchymal microcirculation were taken. Excitation was at a wavelength of 488 nm (argon laser), and emission was collected above 515 nm. CLSM provided images of brain vessels with sufficient signal-to-noise ratio for three-dimensional reconstructions down to a depth of 250 microns beneath the surface of the brain. Compared to conventional fluorescence microscopy, CLSM has a much higher axial resolution and higher depth of penetration. Laser light-induced intravascular aggregates, irregularities of erythrocyte flow, or microvascular occlusions ("light and dye injury") were not apparent in the current experimental paradigm. CLSM is a promising new tool for in vivo visualization of the cerebral microcirculation. Future studies have to characterize the potential damage to the tissue dye mechanisms.

Animals↗

Inhibition of cholesterol biosynthesis by a water-soluble garlic extract in primary cultures of rat hepatocytes.

Cultured rat hepatocytes continually synthesize cholesterol form radiolabeled acetate during a 24 h incubation period and export it, presumably as VLDL (very low density lipoprotein) to the culture medium. Mevastatin inhibits cholesterol biosynthesis by 90%. Incubation of the cultures with water-soluble extracts of garlic powder (Kwai, Sapec) diminish cholesterol biosynthesis (20-25%) as well as its export into the medium (30-35%). The IC50-value is 90 micrograms/ml. Between about 0.25 and 10 mg/ml the average maximal inhibition amounts to about 23%. Cytotoxicity of the extracts is apparent at concentrations above 125 mg/ml only. Pure alliin alone, or after incubation with alliinase (conversion to allicin) in concentrations corresponding to its content in the extracts does not exert any inhibition. Replacement of 14C-acetate by 14C-mevalonate omits the inhibitory effect. The activity of HMGCoA (hydroxymethylglutaryl-CoA) reductase is significantly reduced by garlic extracts at 50 micrograms/ml. At higher concentrations fatty acid synthetase, cholesterol 7 alpha-hydroxylase and cholesterol acyltransferase are slightly inhibited. Fatty acid synthetase is the only one of these enzymes which is inhibited by alliin at very high concentrations. These results demonstrate that water-soluble garlic extracts diminish hepatic cholesterol biosynthesis, thus contributing to the reduction of blood cholesterol. The main target site seems to be HMGCoA-reductase. The actual active principle(s) is still unknown. Alliin, however, does not seem to be of major significance.

Acetates↗

Acinar heterogeneity of the epidermal growth factor receptor in the liver of male rats.

Epidermal growth factor is cleared from the circulation by the liver, forming a very steep portal-to-central sequestration gradient. It was unknown whether this was due to the position within the liver acinus or whether it was due to functional differences in the hepatocytes. Experiments were undertaken to elucidate the lobular distribution and heterogeneity of the epidermal growth factor receptor in rat liver. Immunocytochemistry showed a predominantly higher staining density over periportal localized hepatocytes. Receptor binding studies with isolated, cultured hepatocytes, enriched in periportal or perivenous located cells, were performed. Our data revealed high- and low-affinity binding sites with a kd of 26 pM and 0.87 nM, respectively, for periportal hepatocytes. The high-affinity receptors were restricted to the periportal hepatocytes only, whereas the number of low-affinity receptors showed a 3 to 4-fold concentration gradient between both cell populations.

Animals↗

Altered acinar distribution of glutamine synthetase and different growth response of cultured enzyme-positive and -negative hepatocytes after partial hepatectomy.

Partial hepatectomy (PH) results in the persistent drop of the specific activity of glutamine synthetase (GS) (EC 6.3.1.2). This drop correlates with the reduced proportion of GS+ hepatocytes and with the reduced GS+ area surrounding the central veins such that GS+ hepatocytes are arranged in a single cell layer only. Cultivation of hepatocytes isolated at various times after PH revealed considerable differences in the growth characteristics of GS+ and GS- hepatocytes discriminated by immunocytochemistry. In the absence or presence of epidermal growth factor and insulin, the labeling index of GS- hepatocytes peaked in cultures established 48 h after PH at 10% and 50%, respectively, while that of GS+ cells was much lower (2% and 6%). In cultures established at later times after PH the labeling index of GS- cells decreased gradually, while that of GS+ hepatocytes increased continuously, reaching about 20% and more than 50% for controls and epidermal growth factor/insulin-treated cultures, respectively, in cultures established 72 after PH. Norepinephrine stimulated the labeling index of both cell populations during the first 24 h only, but again GS- hepatocytes responded somewhat earlier than did GS+ hepatocytes. These results demonstrate that the differences in the growth characteristics of GS+ and GS- hepatocytes are due to different priming of these cells in vivo and may result in the different expansion of the respective cell populations during regeneration after PH.

Animals↗

Influence of hormones and drugs on glutathione-S-transferase levels in primary culture of adult rat hepatocytes.

GST activities against 1-Chloro-2,4-dinitrobenzene (CDNB) and 1,2-dichloro-4-nitrobenzene (DCNB) were measured in isolated and cultured adult rat hepatocytes. Within 24 h in culture, both GST activities decreased to about 70% and either stabilized at this level (CDNB) or recovered (DCNB) to the initial level. Use of hyaluronidase in addition to collagenase during the isolation of the cells strongly reduced both activities and its stimulation by various drugs for up to 168 h. The hormones insulin, glucagon, triiodothyronine, estradiol, testosterone, and progesterone did not affect GST activity, while dexamethasone showed some interference. In the presence of dexamethasone the activity against CDNB was mainly stimulated by the combination of methylcholanthrene (MC) and phenobarbital (PB) to about 260% within 168 h. The activity against DCNB was stimulated predominantly by MC alone reaching 170% after 168 h. Quantification of the GST subunits Ya, Yb1 and Yp by an ELISA technique revealed a strong decrease of Ya, a transient increase of Yb1 after 24 h followed by a moderate decrease, and a stable low level of the transformation marker Yp during cultivation. The level of Ya was markedly induced by PB, particularly in combination with MC. The level of Yb1 was equally induced by MC or PB with no synergistic effect. Yp was not affected by these drugs. None of the hormones affected the level of these GST subunits. These results indicate that the physiological type of regulation of the GSTs is maintained during primary culture and no signs of dedifferentiation or transformation are observed. Furthermore, they demonstrate that the interaction of drugs and hormones and their inducing potential can be efficiently studied in the cultured hepatocytes.

Animals↗