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Biomedical subjects

R Gebhardt

Publications and source records attributed to R Gebhardt.

At least 109 records · Page 6Linked to original sources

Reestablishment of the heterogeneous distribution of hepatic glutamine synthetase during regeneration after CCl4-intoxication.

Intoxication of rats with CCl4 (1 ml/kg) resulted in the almost complete loss of glutamine synthetase (GS) specific activity and immunologically detectable enzyme protein known to be expressed exclusively in some hepatocytes of the perivenous zone of the liver acinus. During regeneration the specific activity as well as the original number of GS-positive (GS+) hepatocytes were reestablished. However, while the GS+ hepatocytes in control livers were arranged in up to 3 cell layers surrounding the central veins the same number of GS+ hepatocytes in regenerated livers formed a single cell layer only, most likely because the central veins were enlarged in diameter. Investigation of the nuclear pattern of GS+ and GS- hepatocytes of control animals in primary cultures revealed striking differences characterized by significantly more mononuclear diploid, binuclear diploid, and binuclear tetraploid cells among the GS+ hepatocytes and predominantly mononuclear tetraploid cells (70%) among the GS- hepatocytes. Immediately after liver damage by CCl4 and during regeneration small but significant changes in the nuclear pattern were noted for GS- hepatocytes. However, the first GS+ cells appearing during early regeneration showed a pattern of ploidy classes close to the original one found for GS- hepatocytes. These results indicate that new GS+ hepatocytes may be derived from formerly GS- cells which are induced to express GS if they have reached the border of the central veins.

Animals↗

Induction of glutamine synthetase in periportal hepatocytes by cocultivation with a liver epithelial cell line.

Cocultures of periportal, glutamine synthetase-negative (GS-) hepatocytes with endothelial cells of human veins or epithelial cells of rat liver (clone RL-ET-14) were established for testing whether GS could be induced in the hepatocytes by interactions between the different cell types. While GS activity in endothelial cells was below detection level that of RL-ET-14 cells decreased from 62 mU/mg (24 h) to 38 mU/mg (168 h). During cocultivation with endothelial cells no change in the low GS activity could be detected. In contrast, when periportal hepatocytes were cocultured with RL-ET-14 cells, GS activity of the cocultures increased continuously from 26 mU/mg (24 h) to 56 mU/mg during cultivation for 168 h. Immunocytochemical staining of the cocultures for GS showed that this rise of GS activity was associated with an increase of GS level in the periportal hepatocytes and a decrease in the RL-ET-14 cells. Correspondingly, cultivation of periportal hepatocytes with media conditioned by the RL-ET-14 cells led to an increase in GS activity which, however, remained below that of cocultures, while conditioned medium of hepatocytes resulted in a decrease of GS activity in pure cultures of RL-ET-14 cells. "Separated" cocultures, where hepatocytes and RL-ET-14 cells reached each other only at the border of a circular area, demonstrated that induction of GS was highest in the marginal hepatocytes and lowest in those located in the center indicating that besides (a) soluble factor(s) other kinds of cell-cell interactions might be responsible for full induction of GS expression in periportal hepatocytes.

Animals↗

Immunohistochemical localization of glutamine synthetase in human liver.

Glutamine synthetase (GS) of human liver was recognized with a polyclonal antibody to pig brain GS, but failed to stain with an antibody against rat liver GS. Using the latter antibody GS of human liver was shown to be localized within small rings of 1 to 3 hepatocytes surrounding the terminal hepatic venules. This pattern was analogous to that seen in rat and mouse liver.

Adult↗

Different capacities for amino acid transport in periportal and perivenous hepatocytes isolated by digitonin/collagenase perfusion.

Periportal and perivenous hepatocytes were isolated from rat liver by digitonin/collagenase perfusion for investigating the acinar heterogeneity of amino acid transport activities related to glutamine and ammonia metabolism. Immunocytochemical staining of the respective subpopulations for glutamine synthetase demonstrated that periportal subpopulations were essentially free of glutamine synthetase-positive cells, whereas perivenous subpopulations showed a 2- to 3-fold enrichment of glutamine synthetase-positive hepatocytes. The high perivenous/periportal ratio of 59 found for glutamine synthetase activity as well as the perivenous/periportal ratios of other marker enzymes further indicated the good separation of periportal and perivenous cells. alpha-Aminoisobutyric acid, histidine and glutamate were used to determine the distribution pattern of amino acid transport systems A, N and G-, as well as of the sodium-independent uptake of these compounds 1 hr after isolation and after maximal hormonal stimulation during primary culture. The strong heterogeneity of the sodium-independent transport of histidine, characterized by higher perivenous transport rates [perivenous/periportal ratio: 1.5 (1 hr) to 3.5 (48 hr)], suggests a significant role of facilitated diffusion, presumably in glutamine export. Conversely, the strong heterogeneity of the sodium-dependent glutamate transport (System G-) characterized by higher uptake rates in nonstimulated [perivenous/periportal ratio: 6.6 (1 hr)] and in hormonally treated perivenous hepatocytes (perivenous/periportal ratio: 2.2) reflects its possible significance with respect to the substrate availability for glutamine synthesis. The observed heterogeneities provide a basis for understanding how substrate fluxes related to glutamine metabolism might be established and regulated.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acids↗

Induction of glutamine synthetase and transient co-expression with carbamoylphosphate synthetase in hepatocytes transplanted into fat pads of syngeneic hosts.

Isolated rat hepatocytes were transplanted into the interscapular and both anterior lateral fat pads of hepatectomized syngeneic rats. At various time points following transplantation, the fat pads were removed, fixed and embedded in paraffin. Serial sections were stained for glutamine synthetase (GS) and carbamoylphosphate synthetase (CPS) using specific antisera and the PAP technique. The initially low fraction of GS+-heptatocytes remained low up to the fourth day, then increased strikingly up to almost 100% and declined gradually after the 14th day. In contrast, the number of CPS+-cells declined continuously to about 30% after 28 days. If the animals were exposed to CCl4 prior to the isolation of the hepatocytes in order to reduce the number of GS+-cells in the initial cell suspension similar results were obtained and no difference in the probability of the colony formation was noted between this and the normal hepatocyte suspensions indicating that the appearance of the GS+-phenotype was not due to a selective survival of these cells. Analysis of the staining intensity of the transplanted hepatocytes revealed the appearance of two populations of GS+-hepatocytes, one with a strong and one with a weak staining, during the course of formation of larger nodules, while only a single weakly stained population could be discerned with respect to the staining for CPS. These results demonstrate that all hepatocytes or at least their descendents can be induced to express GS by the environmental conditions of the fat pads, and that GS and CPS can be co-expressed with an apparently reciprocal relationship.

Animals↗

Glutamine synthetase heterogeneous expression as a marker for the cellular lineage of preneoplastic and neoplastic liver populations.

The distribution of glutamine synthetase (GS) in rat liver and in putative preneoplastic and neoplastic lesions was studied at stages of hepatocarcinogenesis induced by diethylnitrosamine (DEN), 2-acetylaminofluorene (AAF) and aflatoxin B1 (AFB1) using immunohistochemistry. In control rats, GS was localized entirely to rings 1-3 cells deep surrounding the central veins. Exposure to DEN or AAF resulted in a reduction of these GS-positive (GS+) zones by 96 and 61% respectively, due to necrosis of the cells in this compartment, while AFB1 had little effect (less than 14%). At later times GS+ foci, adenomas and carcinomas developed in animals exposed to DEN or AAF, but not AFB1, corresponding to the acute effects. Small GS+ foci also identified by other phenotypic abnormalities (e.g. gamma-glutamyltransferase) were exclusively associated with the regenerating GS+ zone as were a few collections of GS+ hepatocytes, the nature of which was uncertain. Although accounting for a very small fraction (less than 3%) of total foci, these GS+ foci or GS+ hepatocytes apparently gave rise to a substantial fraction of adenomas that were GS+ (DEN: 43% and AAF: 33%) and an even higher percentage of GS+ carcinomas (DEN: 59% and AAF: 39%). No GS+ neoplasms were induced by AFB1. Statistical evaluation of these data strongly suggests that GS+ neoplasms originate through initiation of hepatocytes which possess this particular phenotype. Thus, GS might serve as a specific marker for tracing cell lineage relationships during hepatocarcinogensis. The GS+ phenotype which confers glutamine independence may also provide a growth advantage.

2-Acetylaminofluorene↗

Spermidine level and protein synthesis are coregulated in nonproliferating hepatocytes.

The relationship between polyamines and the rate of protein synthesis was investigated in non-proliferating cells: primary cultures of adult rat hepatocytes maintained in serum-free media, and treated with dexamethasone or dexamethasone + insulin. During the second day of culture, polyamine biosynthesis became induced along with the rate of protein synthesis. While the activity of ornithine decarboxylase and the intracellular concentration of putrescine increased only transiently and that of spermine declined, the rise of the protein synthetic rate was paralleled by that of the intracellular spermidine concentration. The polyamine analogue diamino-propanol specifically decreased spermidine content and the protein synthetic rate. The intracellular concentration of spermidine was found subject to tight homeostatic regulation, e.g. not being altered by the addition of up to 1 mM of this polyamine to the culture medium. In contrast, addition of putrescine or spermine led to an increase in their respective intracellular concentrations. These findings indicate that spermidine specifically of the polyamines is involved in protein synthesis in the intact hepatocyte. Moreover, spermidine may mediate part of the trophic action of dexamethasone and insulin upon cultured hepatocytes.

Animals↗

Heterogeneous expression of glutamine synthetase mRNA in rat liver parenchyma revealed by in situ hybridization and Northern blot analysis of RNA from periportal and perivenous hepatocytes.

Using radiolabeled specific cDNA glutamine synthetase mRNA could be detected by in situ hybridization exclusively within those few perivenous hepatocytes which stained immunocytochemically for glutamine synthetase. This localization of glutamine synthetase mRNA was recently reported by Moorman et al. [(1988) J. Histochem. Cytochem. 36, 751-755]. Biotinylated cDNA was not suitable for mRNA detection because of a very high background staining under the conditions of in situ hybridization. Dot blot and Northern blot analysis of RNA isolated from periportal and perivenous subfractions of hepatocytes also demonstrated the exclusive perivenous localization of two hybridizable glutamine synthetase mRNAs of length 2.8 and 1.6 kilobases. These results indicate that the unique heterogeneity of glutamine synthetase in rat liver parenchyma is controlled at the pretranslational level.

Animals↗

Monoclonal antibodies directed against rat liver epithelial cell lines selectively recognize bile duct epithelium in livers of adult rats.

Monoclonal antibodies directed against antigens on rat liver epithelial cell lines were prepared. Three antibodies, 4C3, 19C6, and 3C2, recognized surface antigens present (although in different quantities) on eight epithelial cell lines tested, irrespective of whether they were normal or transformed. For MAb 3C2, the primary antigen common to all but one cell line showed a Mr of 135 kD. In paraffin sections of liver tissue, two antibodies, 4C3 and 19C6, reacted exclusively with bile duct epithelium, whereas the MAb 3C2 additionally reacted with sinusoidal endothelium and the endothelium of the portal venules. In sections of livers from rats exposed to diethylnitrosamine, the MAb 19C6 selectively stained bile duct-like structures in cholangiomas, while other preneoplastic and neoplastic lesions were not stained. These results demonstrate that the monoclonal antibodies obtained may prove useful for investigating cell lineages related to propagable liver epithelial cell lines and suggest that these cells may be derived from terminal bile ductular cells.

Animals↗

Different proliferative activity in vitro of periportal and perivenous hepatocytes.

The different growth potentials of hepatocytes from different zones of the liver acinus were assessed in vitro by autoradiography with immunocytochemical discrimination of periportal and perivenous hepatocytes by the marker enzyme glutamine synthetase (GS) or their direct isolation by the digitonin/collagenase perfusion technique. All stimuli studied led to much higher labeling indices in GS-negative than in GS-positive cells in cultures both of all hepatocytes and of the perivenous subfraction. In contrast, the response of GS-negative hepatocytes in the periportal and in the perivenous subfractions differed only gradually depending of the growth stimulus. It is concluded that GS-positive hepatocytes are distinguished from all other hepatocytes by a completely different growth characteristics, which may play a dominant role in the regenerative remodelling of zone 3. The wave-like spatiotemporal pattern of DNA synthesis during liver regeneration, however, seems to be due to gradual changes in growth responsiveness of the hepatocytes along the acinus.

Animals↗

Decreased fibronectin in rat liver altered foci and adenomas induced by N-2-fluorenylacetamide.

The disposition of fibronectin in N-2-fluorenylacetamide-induced rat liver lesions was studied by immunohistochemical staining. Male rats were fed the carcinogen for 7 weeks to induce hepatocellular altered foci and then given no chemical or phenobarbital in the diet for 24 weeks until adenomas developed. Regardless of the exposure conditions, the amount of extracellular fibronectin was unchanged in about 60% of the liver altered foci and decreased in about 40%. In contrast, 90% of the adenomas demonstrated a significantly decreased staining pattern for fibronectin. In some adenomas, the fibronectin staining pattern demonstrated irregular, wide, and distorted deposits. In nonlesional regions of the livers of rats exposed to N-2-fluorenylacetamide, the amount of fibronectin was decreased in the centrilobular and midlobular zones. The decrease of fibronectin in hepatocellular altered foci and adenomas demonstrates another abnormality in these lesions, which may be important in their biologic behavior. Foci with decreased fibronectin may have a greater potential to progress to adenomas.

2-Acetylaminofluorene↗

Hormonal regulation of amino acid transport system N in primary cultures of rat hepatocytes.

The transport of histidine and glutamine via system N in cultured hepatocytes was found to be subject to hormonal control. This long-term regulation showed the following characteristics. The transport capacity for histidine and glutamine (system N) increased slowly in response to the combination of dexamethasone and insulin to about 4-fold that of controls after 18-30 h. A similar time course was found for the stimulation of system N (2.5-fold) by dexamethasone and glucagon. In contrast the uptake of alpha-aminoisobutyric acid (system A) was rapidly stimulated 3-fold by dexamethasone and insulin and 5-fold by dexamethasone and glucagon within 3-6 h but decreased towards control rates after 24 h of cultivation in minimal essential medium. Dexamethasone, insulin and glucagon each stimulated glutamine uptake about 2-fold in cultures maintained in W/AB 77 medium, while the combination of dexamethasone with either glucagon or insulin resulted in a 3-4-fold increase. Dexamethasone was most effective at about 0.1 microM. Higher concentrations were less efficient. Insulin reached its optimal effect at concentrations above 1 microM. Kinetic analysis revealed that the increased capacity of glutamine transport in response to hormones was due to an increase in Vmax, while Km was essentially unchanged. The hormone-induced stimulation of system N was prevented by cycloheximide. The induced uptake of glutamine was inhibited by excess amounts of asparagine and histidine but not of alpha-methylaminoisobutyric acid or cysteine. These results clearly differentiate the hormonal regulation of system N from that of system A.

Amino Acids↗

Purification and characterization of rat liver glutaminase.

Phosphate-dependent glutaminase (EC 3.5.1.2) from livers of starved rats was purified about 400-fold to near homogeneity. The specific activity of the final pool was more than 30 U/mg protein. For the rapid quantification of the enzyme activity a simple and sensitive assay, based on the determination of the produced ammonia with an o-phthalaldehyde reagent, was developed which avoids massive dilution of the samples. The enzyme preparation involved extraction of the enzyme from sonified isolated mitochondria after treatment with a brief hypotonic shock followed by ammonium sulphate precipitation, ion-exchange and hydroxyapatite chromatography. A major improvement was the stabilization of the enzyme by chymostatin protecting it from degradation by a protease of presumably lysosomal origin. In the presence of chymostatin or leupeptin the half-life of glutaminase in a crude mitochondrial preparation subsequent to mild treatment with digitonin could be increased to more than 200 h. The relative molecular mass of the protein (Mr 170,500) was estimated by sucrose gradient ultracentrifugation. The molecular mass of the subunits (Mr 57,000) was determined by sodium dodecyl sulphate/polyacrylamide gel electrophoresis. These results suggest a protein composed of three subunits of identical molecular mass. The molecular data clearly differentiate liver glutaminase from the phosphate-dependent glutaminase present in kidney.

Animals↗

Selective loss of hormonal induction of glutamate transport in primary cultures of hepatocytes from rats treated with CCl4.

A protocol for the mass isolation and successful cultivation of hepatocytes from the acinar zones 1 and 2 is described. The hepatocyte suspensions isolated from rats pretreated with CCl4 contain less than one-tenth of control levels of the perivenous marker enzyme glutamine synthetase, as judged by immunocytochemistry and enzyme activity excluding contamination by hepatocytes from zone 3. In culture these hepatocytes form morphologically and functionally intact monolayers. They synthesize urea and glucose at rates above those of controls, but are unable to produce glutamine. These results demonstrate the suitability of this culture system for the investigation of hepatic functions that are characteristic of cells from the periportal and midzonal part of the acinus. An interesting feature of these cultures is the failure of dexamethasone to induce the uptake of glutamate while the hormonal induction of the amino acid transport systems A and N and of tyrosine aminotransferase is not affected.

Animals↗

Heterogeneous distribution of glutamine synthetase during rat liver development.

Two days before birth, immunohistochemical detection of glutamine synthetase already reveals a heterogeneous distribution pattern related to the vascular architecture of the liver. Only a small number of hepatocytes in the vicinity of the efferent venules show relatively high staining intensity. Before that age, only megakaryocytes show intense staining, while liver parenchyma is only faintly stained. The developmental profile of glutamine synthetase activity shows two periods of increasing enzyme activity: one in the perinatal period and one in the second and third postnatal week. Both periods are correlated with high levels of circulating corticosteroid hormones. Although the relative number of intensely stained hepatocytes increases during the first rise in enzyme activity, the second rise is correlated with a decreasing number of glutamine synthetase-positive hepatocytes which, however, show a considerable increase in staining intensity. Carbamoylphosphate synthetase shows a homogeneous distribution pattern in the perinatal period. Conditions that lead during development to a relatively high level of glutamine synthetase expression in the pericentral compartment apparently originate before the appearance of conditions that lead to a relatively high level of carbamoylphosphate synthetase gene expression in the periportal compartment. Our results indicate that downstream localization of glutamine synthetase in liver acinus is essential from the perinatal period onwards, whereas reciprocal distribution of glutamine synthetase and carbamoylphosphate synthetase gene expression (that is found in adult rat liver) is not.

Animals↗

Ligand-dependent redistribution of the IgA receptor on cultured rat hepatocytes and its disturbance by cytochalasin B.

The topography and dynamics of IgA-secretory component (SC) complexes on the surface of cultured hepatocytes and its disturbance by cytochalasin B were investigated using the colloidal gold technique in conjunction with surface replication. The distribution of IgA-gold conjugates after incubation at 4 degrees C was similar in normal and cytochalasin B-treated hepatocytes and was characterized by diffusely scattered single and clustered particles, the latter often associated with coated pits. After raising the temperature to 37 degrees C, redistribution of particles and their gradual uptake into coated vesicles was observed in control cultures. This ligand-induced redistribution led to a progressive gathering of single and grouped particles in larger clusters (50-200 particles), which appeared to be the site of the most intensive endocytotic activity. In contrast, huge patches of IgA-gold conjugates were formed at the cell periphery of cytochalasin B-treated hepatocytes within 20-60 min at 37 degrees C, while central areas were cleared. Patch formation was triggered by binding of both unlabeled and labeled IgA, but could not be observed with the unoccupied receptor as demonstrated by gold-labeled antibodies against SC. These results show that the topography of SC is markedly changed by binding of its ligand, IgA, and suggest that the dynamics of the IgA-SC complexes in hepatocyte plasma membrane are affected by microfilaments.

Animals↗

Amino acid transport in established adult rat liver epithelial cell lines.

The capacities of Na+-dependent transport of alpha-aminoisobutyrate, glutamine and glutamate in four established and three transformed rat liver epithelial cell lines were found to be considerably higher than those of isolated and cultured hepatocytes. At least for transport systems A and G- this seemed to be due to elevated values of Vmax, whereas the values for Km were quite comparable to those of hepatocytes. In contrast to hepatocytes, however, no significant hormonal stimulation of amino acid uptake could be detected in the cell lines. Each normal cell line expressed a distinct pattern of transport capacities with respect to the three systems measured and this was not altered by chemical transformation of the lines. The individual patterns of the lines showed no similarity to presumptive patterns of subpopulations of liver parenchymal cells. In particular, there was no evidence for a direct relationship of one of the cell lines with a small subpopulation of parenchymal cells located adjacent to hepatic venules as revealed by additional measurements of glutamine synthetase, a marker enzyme for this particular subpopulation. It is concluded that established rat liver epithelial cell lines express features characteristic of normal hepatocytes with respect to amino acid transport, but have developed a distinct phenotype adapted to a rapid, hormone-independent growth in vitro. Alteration of their phenotype by transformation is not coupled with a further increase in amino acid transport capacity.

Amino Acids↗