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T Berg

Publications and source records attributed to T Berg.

At least 271 records · Page 15Linked to original sources

Retinol and retinyl esters in parenchymal and nonparenchymal rat liver cell fractions after long-term administration of ethanol.

Chronic ethanol consumption reduces the liver retinoid store in man and rat. We have studied the effect of ethanol on some aspects of retinoid metabolism in parenchymal and nonparenchymal liver cells. Rats fed 36% of total energy intake as ethanol for 5-6 weeks had the liver retinoid concentration reduced to about one-third, as compared to pair-fed controls. The reduction in liver retinoid affected both the parenchymal and the nonparenchymal cell fractions. Plasma retinol level was normal. Liver uptake of injected chylomicron [3H]retinyl ester was similar in the experimental and control group. The transport of retinoid from the parenchymal to the nonparenchymal cells was not found to be significantly retarded in the ethanol-fed rats. Despite the reduction in total retinoid level in liver, the concentrations of unesterified retinol and retinyl oleate were increased in the ethanol fed rats. Hepatic retinol esterification was not significantly affected in the ethanol-fed rats. Since our study has demonstrated that liver uptake of chylomicron retinyl ester is not impaired in the ethanol-fed rat, we suggest that liver retinoid metabolism may be increased.

Acyltransferases↗

Separation of endocytic vesicles in Nycodenz gradients.

The endocytosis of 125I-labeled asialofetuin by rat hepatocytes was studied using Nycodenz/sucrose gradients. It was shown in pulse chase experiments that the ligand endocytosed initially (after 1/2 to 1 min) was in small, slow-sedimenting vesicles of similar sizes. The vesicles containing the ligand increased in size, and after about 2.5 min 20-30% of the ligand was recovered in larger, faster-sedimenting vesicles. After 15 min almost all internalized ligand was recovered in the fast-sedimenting vesicles. The initial, small endocytic vesicles and the later, larger endocytic vesicles have similar buoyant densities; the maturation of the endosomes can only be revealed by rate sedimentation, not by isopycnic centrifugation. Dissociation of ligand from receptor was found to occur in the larger, faster-sedimenting vesicles. The presence of ammonia inhibited the increase in size of the ligand-containing endosomes. The methods employed here offer the possibility of obtaining endocytic vesicles at various stage of their development for further studies.

Ammonium Chloride↗

Uptake of mannose-terminated glycoproteins in isolated rat liver cells. Evidence for receptor-mediated endocytosis in hepatocytes.

Even though most of the hepatic binding capacity for mannose-terminated glycoproteins has previously been shown to reside in the hepatocytes (not in the non-parenchymal cells), detailed evidence for the specific uptake of mannose-terminated ligands has been lacking. In the present studies, yeast invertase, a large glycoprotein (Mr 270 000) containing about 50% mannose, was shown to be taken up into hepatocytes by receptor-mediated endocytosis. The uptake was saturable and could be specifically inhibited by mannosides or by a Ca2+ chelator. The asialo-glycoprotein receptor was not involved. The low-Mr (13 000) ligand ribonuclease B, which contains a single high-mannose glycan, was not taken up by hepatocytes; however, it was taken up as fast as invertase by non-parenchymal liver cells. After injection of 131I-invertase into a rat in vivo, about one-half of the labelled protein was recovered in the hepatocytes. On a per-cell basis, each endothelial cell contained 3-4 times as much radioactivity as did the hepatocytes. On fractionation of hepatocytes in sucrose gradients, invertase showed a different intracellular distribution from that of asialo-fetuin, in that invertase moved much faster into that region of the gradient where the lysosomes were recovered. This indicates that invertase and asialo-fetuin are not transported intracellularly by identical mechanisms.

Animals↗

Clearance of acetyl low density lipoprotein by rat liver endothelial cells. Implications for hepatic cholesterol metabolism.

We have studied the hepatic uptake of human [14C] cholesteryl oleate labeled acetyl low density lipoprotein (LDL). Acetyl-LDL injected intravenously into rats was cleared from the blood with a half-life of about 10 min. About 80% of the injected acetyl-LDL was recovered in the liver after 1 h. Initially, most of the [14C]cholesterol was recovered in liver endothelial cells (about 60%). Some radioactivity (about 15%) was also recovered in the hepatocytes, while the Kupffer cells and stellate cells contained only small amounts of the label (less than 5%). About 1 h after injection, radioactivity started to disappear from endothelial cells and appeared instead in hepatocytes. Radioactivity subsequently declined in hepatocytes as well. After a lag phase of 4 h, significant amounts of radioactivity were recovered in bile. The in vitro uptake and hydrolysis of [14C]cholesteryl oleate-labeled acetyl-LDL were saturable in isolated rat liver endothelial cells. Native LDL does neither affect the uptake nor the hydrolysis of acetyl-LDL. Ammonia and monensin reduced the hydrolysis of acetyl-LDL in isolated liver endothelial cells. Furthermore, monensin at concentrations above 10 microM completely blocked the binding of acetyl-LDL to the liver endothelial cells, suggesting that the receptor for acetyl-LDL is trapped inside the cells. The liver endothelial cells may be involved in the protection against atherogenic lipoproteins, e.g. liver endothelial cells may mediate uptake of cholesterol from plasma and transfer of cholesterol to the hepatocytes for further secretion into the bile.

Animals↗

Lymphatic absorption and transport of retinol and vitamin D-3 from rat intestine. Evidence for different pathways.

The lymphatic absorption and transport of retinol and vitamin D-3 from rat intestine has been studied. When rats were cannulated in the intestinal lymph duct and given an intraduodenal bolus of [3H]retinol and 14C-labelled vitamin D-3, 14C-labeled vitamin D-3 appeared later in the intestinal lymph than [3H]retinol and the rate of absorption of vitamin D-3 was still maximal at a time when that of retinol had declined. Both vitamins were absorbed via the lymphatic route in association with chylomicrons. Almost all the retinol was esterified, while vitamin D-3 appeared in the chylomicrons as free vitamin D-3. In vitro incubations and in vivo studies using hepatectomized and normal rats showed that the retinyl ester was a relatively nonexchangeable component of the chylomicrons and their remnants. Hence, all the vitamin A followed the remnants in their clearance from plasma. In contrast, significant amounts of vitamin D-3 were transferred from the chylomicrons to other plasma fractions. Therefore, only a fraction of this vitamin may be removed in association with the chylomicron remnants.

Animals↗

Excess antibody immunoassay for rat glandular kallikrein. Measurement of kallikrein complexed with inhibitors and in plasma.

We have recently developed an immunoradiometric assay (IRMA) for specific measurement of immunoreactive kallikrein which allows a simultaneous determination of the enzymatic activity of kallikrein. This paper describes the application of this method for measurements of glandular kallikrein complexed with inhibitors. Interference by low molecular weight inhibitors such as benzamidine and Trasylol was easily overcome by increasing the amount of immobilized anti-kallikrein antibody added in the assay, and by prolonging the incubation time of the antigen-binding step. The recovery of kallikrein in complex with plasma inhibitors was complete only when the anti-kallikrein antibody was immunoadsorbed onto a solid-phase sheep anti-rabbit immunoglobulin. The dose-response curve of glandular kallikrein in plasma paralleled that of purified kallikrein in both the immunoradiometric and the immunoenzymometric assays. The concentration of immunoreactive glandular kallikrein in normal rat plasma was 12.8 +/- 4.3 nU/ml. The enzymatic activity of this immunoreactive kallikrein was 86% inhibited.

Animals↗

Endocytosis of formaldehyde-denatured serum albumin by nonparenchymal liver cells in vitro.

The uptake and degradation of 125I-labeled formaldehyde-denatured serum albumin in nonparenchymal rat liver cells were studied in vitro. Nonparenchymal cells bound formaldehyde-denatured serum albumin at two types of binding site, one with a high affinity and one a low affinity. The number of high affinity binding sites was approx. 10(5) per cell and the association constant, Ka 10(8) M-1. Inhibition of protein synthesis with cycloheximide did not affect the uptake and degradation of formaldehyde-denatured serum albumin suggesting reutilization of the binding sites. The presence of monensin-reduced uptake and degradation to less than 10% of control values. Pronase treatment of nonparenchymal liver cells completely abolished the uptake and degradation of the ligand. The uptake mechanism was not specific for formaldehyde-denatured serum albumin. Unlabeled acetylated, as well as malondialdehyde treated, serum albumin reduced the uptake of 125I-labeled formaldehyde-denatured serum albumin as effectively as unlabeled formaldehyde-denatured serum albumin itself.

Animals↗

Endocytosis of formaldehyde-treated serum albumin via scavenger pathway in liver endothelial cells.

Denatured or modified proteins (including albumin and low-density lipoprotein) are catabolized in vitro via scavenger receptors. We have studied the distribution of formaldehyde-denatured albumin in rat liver cells after intravenous injection of tracer doses of the protein. At 12 min after injection, most of the formaldehyde-denatured albumin (about 70% of the injected dose) was recovered in liver endothelial cells. Furthermore, isolated liver endothelial cells in suspension and in surface culture took up formaldehyde-denatured albumin by receptor-mediated endocytosis. Our data indicate that the scavenger receptor in liver is mainly located on the endothelial cells. Implications for the catabolism of low-density lipoproteins are discussed.

Animals↗

Newly administered [3H]retinol is transferred from hepatocytes to stellate cells in liver for storage.

We have recently shown that newly administered vitamin A (retinol) is initially taken up by the parenchymal cells of the liver, and subsequently (within 1-2 h) transferred to non-parenchymal liver cells (NPC) (Blomhoff et al., ref. [10]). In the present study we have separated the NPC by different methods to determine the cell type responsible for this uptake of [3H]retinol. When liver cells were prepared between 5 and 18 h after intraduodenal administration of [3H]retinol, the radioactive retinol was recovered mainly in the stellate cells. Other liver cells (i.e., hepatocytes, endothelial cells and Kupffer cells) contained only small amounts of [3H]retinol. Further, fluorescence microscopy studies indicated that stellate cells contain large quantities of retinol. Our results show that newly administered [3H]retinol, which is initially located in the hepatocytes, is transferred to the stellate cells and stored there.

Animals↗

Preparation of isolated liver endothelial cells and Kupffer cells in high yield by means of an enterotoxin.

A new method for preparing non-parenchymal rat liver cells (NPC) is described. The liver cell suspension, prepared by perfusing the liver with collagenase, was treated with enterotoxin from Clostridium perfringens for 15 min. The enterotoxin made the parenchymal cells leaky, and these cells could be separated from the NPC by centrifugation in a solution containing Nycodenz (20%, w/v). During the centrifugation, the NPC floated, while the parenchymal cells sedimented. The yield of NPC per liver (200 g rat) was about 250 X 10(6) cells. The NPC were further separated into endothelial cells, Kupffer cells and stellate cells by centrifugal elutriation. This method was particularly useful for preparing endothelial cells in high yield (100 X 10(6) cells per liver). Intravenously injected formaldehyde-treated albumin was selectively taken up by the endothelial cells. Isolated endothelial cells in suspension as well as in surface culture maintained their ability to endocytose this ligand.

Animals↗

Endocytosis of a mannose-terminated glycoprotein and formaldehyde-treated human serum albumin in liver and kidney cells from fish (Salmo alpinus L.).

The uptake and degradation of a mannose-terminated glycoprotein, yeast invertase, in char (Salmo alpinus L.) tissue was studied after intravenously injection of the 125I-labelled protein. 125I-labelled formaldehyde-treated human serum albumin (fHSA) and native HSA was also injected for comparison. Labelled invertase was rapidly cleared from blood and at about the same rate as labelled fHSA (at 8 degrees C). Approximately 50% of the initial concentration remained in blood 15 min after the injection of the ligands. Acid soluble degradation products appeared in the circulation about 60 min after the injection of the proteins. 125I-labelled invertase was recovered in the liver, pronephros and kidney. The clearance of labelled invertase from blood and the uptake in the organs were inhibited by co-injection of excess unlabelled invertase. fHSA was taken up in the pronephros and kidney tissue, while HSA was not taken up in any organs. In vitro degradation of the labelled ligands was studied in isolated pronephros cells, which had taken up the proteins in vivo. The degradation of invertase in isolated cells was partly inhibited by ammonium chloride. Ammonium chloride and chloroquine inhibited degradation of fHSA, but not leupeptin. These results together suggest that invertase and fHSA were taken up in the organs described by the receptor-mediated endocytosis. The degradation was partly or wholly lysosomal.

Animals↗

The cricopharyngeal muscle: a videorecording review.

In a review of 618 videorecordings of the pharynx and esophagus, 77 (10.8%) had cricopharyngeal abnormalities. This represents twice the reported frequency. This paper examines the cricopharyngeal abnormalities. The cricopharyngeal muscle was observed consistently malfunctioning in the same manner in 36 (47%) of the patients. It was observed most consistently (20%) as a prominent structure throughout the swallow (15 patients). It also was observed early in the swallow (13 patients), late in the swallow (six), and obstructing the pharyngoesophageal transition (two). It was observed rising and falling with the motion of the larynx during the swallow. Over half the time (53%), however, it was seen at different times during the swallow, altered its appearance from swallow to swallow, and was seen at different levels. The significance of the cricopharyngeal muscle to the patient's health remains to be determined.

Deglutition↗

[Mitral and aortic valve replacement in childhood].

Between 1970 to 1981, 23 patients aged under 18 years underwent mitral or aortic cardiac valve replacement at the University Hospital Hamburg. The mean age of the 12 male and 11 female patients was 10.8 years at the time of the operation, and they were followed up for an average of 3.4 years. 11 isolated aortic valve replacements and 10 mitral replacements were performed; there was 1 double and 1 triple heart valve replacement. 11 patients suffered from congenital and 9 from acquired heart disease, and in 3 cases a combination of the two was found. Altogether, 26 prosthetic valves were implanted, 23 mechanical and 3 bioprostheses. 18 of the 23 children operated upon are still alive. 1 child died 1 day after the operation and 4 children between some months and 4 years postoperatively. The general condition of all our living patients improved clearly. They do not show any signs of congestive heart failure, even under physical exercise, and nearly all of them are asymptomatic. Signs of left ventricular hypertrophy in the ECG decreased; so did the cardiothoracic ratio in the p.a. chest X-rays. No dangerous complications such as bacterial endocarditis, serious thromboembolisms , or periprosthetic leaks occurred in the surviving patients. 2 children had heavy bleedings, and in another patient signs of bacterial endocarditis and repeated thromboembolisms were found at autopsy. Valve disease with grade II congestive heart failure should be operated upon before irreversible damage appears and whenever heart catheterization findings are serious (e.g., stenoses of aortic valves with gradients of more than 75 mg Hg). First, it should be found out whether repair of the natural heart valve is feasible.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Monensin inhibits receptor-mediated endocytosis of asialoglycoproteins in rat hepatocytes.

Isolated rat liver parenchymal cells incubated in the presence of monensin exhibited a reduced uptake of 125I-asialofetuin (125I-AF). Binding studies indicated that the effect was due to a rapid reduction in the number of active surface receptors for the asialoglycoprotein. Monensin had no effect on receptor internalization, but apparently interrupted the recycling of receptors back to the cell surface. Monensin also inhibited the degradation of 125I-AF previously bound to the cells; this inhibition was probably not due to a direct effect on intralysosomal proteolysis, as no lysosomal accumulation of undegraded ligand could be demonstrated in subcellular fractionation studies by means of sucrose gradients. It is more likely that monensin inhibits transfer of the labelled ligand from endocytic vesicles to lysosomes, as indicated by the accumulation of radioactivity in the former and by the ability of monensin to prevent the normally observed time-dependent increase in the buoyant density of endocytic vesicles. Whereas the effect of monensin on binding and uptake of asialofetuin was reversible, the effect on asialofetuin degradation could not be reversed.

Animals↗

Metabolism of asialoglycoproteins in cultured rat hepatocytes: evidence for receptor mediated uptake and degradation which is not feed-back regulated.

1. Cultured rat hepatocytes took up and degraded asialofetuin by a saturable mechanism. 2. The uptake was specific for desialylated fetuin; native fetuin and was taken up to a much lesser extent. 3. Degradation was inhibited by lysosomotropic agents; both uptake and degradation were, however, unaffected by cycloheximide. 4. The uptake was also unaffected by incubating the cells for 24 hr in the presence of large extracellular concentrations of unlabelled asialofetuin. 5. The data suggest that the asialoglycoprotein receptor is recycled and not subject to down-regulation.

Ammonium Chloride↗

Plasma clearance, transfer, and distribution of vitamin D3 from intestinal lymph.

The clearance of vitamin D3 from plasma after intravenous injection to rats of intestinal lymph labeled in vivo with radioactive vitamin D3 has been studied. The half-life of the injected vitamin D3 was about 6 min. In double-label experiments the half-life was the same for vitamin D3 as for vitamin A, which is removed from the circulation as chylomicron remnants. Fractionation of the blood plasma according to the density showed that 2 min after the injection of the lymph 30-95% of the radioactive vitamin D3 was recovered in plasma fractions with higher densities than chylomicron remnants (d greater than 1.019 g/ml). The percentage of vitamin D3 in the chylomicron fraction (d less than 1.006 g/ml) of the injected lymph was 66-95%. Taking this into account it could be calculated that the amount of radioactive vitamin D3 transferred from chylomicrons or chylomicron remnants to plasma with d greater than 1.019 g/ml within 2 min varied from 26 to 72%. The transferred radioactivity was recovered in a protein fraction with chromatographic mobilities identical to the binding protein for vitamin D and its metabolites. During the first 13 min after injection the amount of radioactivity recovered in the liver was less than 10%, but from 15 to 55 min the amount increased to about 50% of the injected dose. These findings suggest that the transfer of vitamin D3 from chylomicrons to the alpha-globulin fraction previously observed in vitro is of importance for the in vivo handling of vitamin D3.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗