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J Dlugosz

Publications and source records attributed to J Dlugosz.

At least 19 recordsLinked to original sources

Mesangial cell actin disassembly in high glucose mediated by protein kinase C and the polyol pathway.

High glucose alters mesangial cell cytoskeletal structure and function. We postulated that high glucose causes mesangial cell filamentous (F) actin disassembly through a protein kinase C (PKC) mechanism involving the polyol pathway. Rat mesangial cells (passage < 10, N = 60/group) were growth-arrested and then cultured in glucose 5.6 mM (NG), 15 mM (MG) or 30 mM (HG) for 48 hours, with or without the aldose reductase inhibitor Tolrestat 0.3 mM. F and globular (G) actin were labeled with rhodamine-phalloidin and FTTC-DNase-1, respectively. Both fluorescence probes were imaged simultaneously in each cell using dual-channel confocal laser microscopy. In HG, F-actin disassembly was observed and measured by a 40% decrease in F-/G-actin fluorescence intensity ratio (no change in NG + mannitol 24.4 mM). In separate experiments, cells were labeled with BODIPY FL-bisindolylmaleimide, specific for most PKC isoforms, and fluorescence intensity/cell was measured. In NG, exposure to phorbol 12-myristate 13-acetate (PMA) 0.1 microM for 15 minutes caused perinuclear and nuclear translocation of PKC, and F-actin disassembly identical to observations in HG alone. In HG, total PKC fluorescence increased by 50% and PMA exposure for 24 hours normalized both the total PKC and F-/G-actin fluorescence ratio. In NG and HG, exposure (15 min) to PMA 0.1 microM increased PKC activity three to four times, measured by in situ 32P-phosphorylation of EGF-receptor substrate. By immunofluorescence and confocal imaging, diacylglycerol-sensitive PKC-delta was localized to the cytosol in NG, and after 15 minutes exposure to PMA, translocated to the perinuclear region and plasma membrane. In HG. PKC-delta immunofluorescence was significantly increased/cell, distributed in a cytoskeletal pattern and the intensity was glucose-concentration dependent (30 > 15 > 5.6 mM). In HG, exposure to PMA for 24 hours returned the PKC-delta fluorescence to the intensity and cytosolic pattern observed in NG, and simultaneously prevented F-actin disassembly. Tolrestat significantly reduced the total PKC and PKC-delta fluorescence intensity and F-actin disassembly observed in HG. Immunoblot confirmed increased PKC-delta in HG, which was normalized by Tolrestat. The immunofluorescence pattern of diacylglycerol-insensitive PKC-delta was unchanged in HG, with PMA or Tolrestat. We conclude that mesangial cell F-actin disassembly in high glucose is likely mediated through diacylglycerol-sensitive PKC isoforms, including PKC-delta and involves the polyol pathway.

Actins↗

The effect of pancreatitis associated ascitic fluid on some functions of rat liver mitochondria. A possible mechanism of the damage to the liver in acute pancreatitis.

The damage to the liver during acute pancreatitis (AP) could be partly dependent on depressive action of pancreatitis associated ascitic fluid (PAAF) on the energy metabolism of hepatocytes. The aim of the study was to assess the effect of PAAF from dogs with acute experimental pancreatitis (AEP) and from humans with AP on the respiratory function of isolated rat liver mitochondria (RLM). The mitochondrial oxygen consumption rate in state 3 respiration (with ADP) and in state 4 (without ADP) using sodium succinate as substrate and oxygen Clark's electrode was estimated. Respiratory control ratio (RCR) and P/O ratio were calculated. PAAF was collected after 6 h of AEP induced by Elliott's method in 8 dogs, and from 4 patients with AP, intraoperatively. Both animal and human PAAFs increase the oxygen consumption rate by RLM in state 4 dose dependently (by 65% with 50 microL to 150% with 200 microL of canine PAAF). This uncoupling effect of human PAAF was twice more potent than the canine. Dialysis of PAAF reduced this effect almost completely. The mitochondrial ATPase activity in RLM treated with PAAF was stimulated and this effect was also reduced by dialysis. The conclusion was that the damage to the liver in AEP could be partly dependent on the toxicity of dializable component(s) of PAAF on the energy metabolism of mitochondria. These findings may partly explain the beneficial effects of peritoneal lavage in acute pancreatitis.

Acute Disease↗

The time course of liver DNA and RNA alterations in acute experimental pancreatitis in rats--a possible mechanism of prostacyclin (PGI2) protection.

The mechanism of the liver damage in acute pancreatitis remains unsolved. The aim of this study was to evaluate RNA and DNA changes in the liver in Na-taurocholate pancreatitis in rats, with consideration being given to the protective effect of prostacyclin (20 micrograms.kg.24 h intraperitoneally). Total RNA increased both in treated and untreated rats after 24 hrs and even more after 48 hrs. After 48 hrs this increase was 35% higher in treated than in untreated rats. The RNA/DNA ratio paralleled the increase of total RNA. In 24 hrs incorporation of 3H-uridine into RNA increased 145% in untreated, and in 48 hrs 50% in treated rats. After 7 days 60% of treated animals survived as compared with 20% in the untreated group. The evident changes in RNA content, RNA/DNA ratio and RNA synthesis suggest a role for nucleic acid disturbances in the liver injury in acute pancreatitis. The beneficial effect of prostacyclin might, in part, be dependent on its effect on nucleic acid metabolism.

Acute Disease↗

Inhibition of intraduodenal trypsin does not stimulate exocrine pancreatic secretion in man.

Inhibition of intraduodenal trypsin stimulates pancreatic secretion in rats and swine. This finding is controversial in healthy humans. The present study was designed to find whether a 'negative-feedback' mechanism exists in man. A 7-lumen tube equipped with two balloons was passed into the duodenum in 18 healthy volunteers. During a constant intravenous infusion of secretin (0.1 CU/kg/h) the duodenum was perfused with 0.9% NaCl solution (20 ml/10 min). Polyethylene glycol (10 g/l) served as nonabsorbable marker. Aprotinin (0.5 X 10(6) KIU/10 min or 1 X 10(6) KIU/10 min) was perfused intraduodenally during periods of constant pancreatic enzyme secretion for 30 min. During perfusion of the trypsin inhibitor aprotinin an almost complete inhibition of trypsin could be observed. However, at the same time or following the perfusion of aprotinin a significant augmentation of amylase, lipase or volume secretion did not occur. Thus, in the present study a negative-feedback control of pancreatic exocrine secretion by the intraduodenal trypsin concentration in man could not be demonstrated.

Adult↗

Prostacyclin (PGI2) stabilises hepatic lysosomes during acute experimental pancreatitis in dogs.

In 15 mongrel dogs acute experimental pancreatitis (AEP) was induced by injection of bile and trypsin into the pancreatic duct. After 12 hrs in lysosomal enriched subfraction of the liver in untreated group (N = 5) relative free activity of cathepsins (Cs), acid phosphatase (AP) and beta-glucuronidase (beta G) increased to 50,62, and 53% respectively in comparison to the healthy dogs (N = 6) : 19,43 and 20%. In dogs with AEP treated with prostacyclin (PGI2) in the dose of 20 ng/kg X min for 12 hrs these activities of Cs, AP and beta G were lowered to 30,55 and 41% in comparison with the untreated group. In dogs with AEP (N = 5) additionally pretreated during 1 hr before the induction of AEP with the same rate of PGI2 i.v. infusion, the relative free activity of enzymes was similar to the treated group. After two hrs incubation of lysosomal enriched subfraction in acidic medium (pH = 5,0), the highest values of relative free activity were observed in untreated group, the difference being more pronounced in comparison with control group than before incubation. In those animals treated and pretreated with PGI2, postincubation activities were much lower than in untreated dogs. These results suggest the stabilising effect of PGI2 on hepatic lysosomes, damaged during the course of AEP in dogs.

Animals↗

The insulin response and glucose tolerance in acute pancreatitis with reference to patients body weight.

In 32 nonobese and 8 obese patients with acute pancreatitis [AP] and 12 control subjects the insulin response to oral and intravenous glucose load was studied. It has been shown, that secretion of insulin after oral glucose was significantly impaired and delayed in nonobese patients in comparison to control. Contrary, the hyperinsulinic response was evident in obese patients. Any significant difference of insulin secretion after intravenous glucose in nonobese patients and controls were not observed. The hyperinsulinic response in 8 obese patients with AP after i.v. glucose was even more evident than after oral glucose load. In both groups of patients with AP, the coefficient of glucose utilisation was diminished. The results indicate a significant impairment of glucose-insulin interrelations during early stages of acute pancreatitis and suggest the influence of obesity on insulin response in this disease.

Acute Disease↗

Low temperature electron diffraction and beam effects in tendon collagen.

In the course of experiments to obtain electron diffraction from forzen rat tail tendon (RTT) collagen, a characteristic development of perforations relating to the banding pattern was observed under conditions of moderate beam intensity. This is most likely to be due to an etching process resulting from ionization or sublimation of bound or preferentially retained water molecules in the band-interband region and could provide a means of visualization of the location of such water.

Animals↗

The lysosomal hydrolases in acute experimental pancreatitis in dogs treated with glucagon.

In dogs with acute experimental pancreatitis (AEP) induced according to Elliotts method the total, free and latent activity of lysosomal hydrolases (acid phosphatase, beta-glucuronidase and cathepsins) in whole homogenates and some subfractions of pancreas were studied. The animals were divided into three groups of 6 dogs each: I. control healthy dogs. II. AEP-treated with glucagon (0.33 mg of glucagon in drop infusion 3 times every six hours). III. AEP without any drug treatment. In dogs treated with glucagon the significant decrease of relative free activity of all tested hydrolases (66-80%) in comparison with the group without any treatment (III/80-90%) was found. Moreover significant decrease of total catheptic activity (about 1/3) in the former group was demonstrated. Incubation of lysosomal enriched fraction taken from group II/in medium buffered to pH 5.0 caused decreasing release of catheptic activity (60% of total) in comparison with the group III (75%). The histochemical reaction for acid phosphatase according to Gomoris method in pancreatic acinar cells of dogs treated with glucagon was less intensive than reaction in untreated animals. These results indicate on the less impairment of pancreatic lysosomes in AEP treated with glucagon in comparison with that in untreated animals.

Acid Phosphatase↗