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Biomedical subjects

F Delarue

Publications and source records attributed to F Delarue.

13 recordsLinked to original sources

Cell-specific regulation of plasminogen activator inhibitor 1 and tissue type plasminogen activator release by human kidney mesangial cells.

Human mesangial cells in culture synthesize and secrete plasminogen activator inhibitor 1 (PAI-1) and tissue-type plasminogen activator (t-PA). Phorbol myristate acetate (PMA), a known activator of protein kinase C, induces a three to four-fold increase in t-PA and PAI-1 release over a period of 24 h, whereas cell-associated t-PA and PAI-1 levels remain relatively stable. A similar effect is obtained with oleylacetyl glycerol, a more physiologic protein kinase C activator. The effect of PMA is suppressed in the presence of H7, an inhibitor of cellular protein kinases, and by cycloheximide and actinomycin D, indicating a requirement for de novo protein and RNA synthesis, respectively. Northern blot analysis of PMA-treated cells reveals a rapid and transient increase in PAI-1 mRNA reaching a maximum after 4-8 h, whereas increase in t-PA mRNA levels requires 24 h. Activation of protein kinase A by addition of 8-bromocyclic AMP (8-bromo cAMP) has no significant effect on PAI-1 release but inhibits the PMA-mediated increases in PAI-1 antigen and mRNA. Addition of 8-bromo cAMP alone does not affect t-PA release. When added to PMA-stimulated cells, 8-bromo cAMP inhibits t-PA release in a dose-dependent manner, but causes a superinduction of t-PA mRNA. 8-bromo cAMP also induces a decrease in PMA-stimulated intracellular t-PA release. Similar inhibition is observed after stimulation of endogenous adenylate cyclase with prostaglandin E1 or isoproterenol. This indicates that protein kinase A activation may inhibit PMA-stimulated t-PA release via a post-transcriptional effect, e.g. inhibition of protein synthesis or activation of protein degradation. In conclusion, hormones or mediators which activate protein kinase C can stimulate t-PA and PAI-1 synthesis in human mesangial cells. Protein kinase A activation has no effect on the basal release of PAI-1 and t-PA by human mesangial cells, and, in contrast to endothelial cells, it inhibits both PMA-stimulated PAI-1 and t-PA releases. This cell-specific regulation of t-PA and PAI-1 seems to be mediated by differential transcriptional and post transcriptional mechanisms.

Blotting, Northern

Functional endothelin 1 receptors on human glomerular podocytes and mesangial cells.

To determine if endothelin 1 (Et1) receptors are present in human glomeruli, and which glomerular cells possess these receptors, 125I Et1 binding to isolated glomeruli and cultured glomerular mesangial and epithelial cells was studied. The latter were identified as podocytes. We demonstrated that Et1 binds specifically and reversibly to isolated human glomeruli and to cultured glomerular mesangial and epithelial cells. Scatchard analysis of competitive inhibition of 125I Et1 binding gave the following results (m +/- SEM, n = 3): isolated glomeruli, Kd = 4.2 +/- 2.1 x 10(-10) M, Bmax = 8.1 +/- 1.2 x 10(10) sites/mg protein; mesangial cells, Kd = 5.2 +/- 1.5 x 10(-10) M, Bmax = 1.87 +/- 0.49 x 10(4) sites/cell; epithelial cells, Kd = 7.2 +/- 1.5 x 10(-10) M, Bmax = 2.46 +/- 0.15 x 10(4) sites/cell. These receptors seem to be functional, since in both mesangial and epithelial cells Et1 induces a rapid and transient increase in intracellular [Ca2+]i. All these results indicate that Et1 may regulate glomerular filtration rate through an autocrine-paracrine pathway on mesangial cells and on podocytes.

Calcium

Plasminogen activator inhibitor-1 deposition in the extracellular matrix of cultured human mesangial cells.

Human mesangial cells secrete tissue-type plasminogen activator (t-PA) and plasminogen activator inhibitor 1 (PAI-1), the latter being secreted in large excess in vitro. We demonstrate that PAI-1 is a major component of the extracellular matrix of cultured human mesangial cells, where its deposition is dependent on cell density. By immunogold silver staining, epipolarization microscopy and dispersive X-ray spectrometry, we have shown that matrix-associated PAI-1 is synthesized by spreading human mesangial cells, as indicated by the time-dependent accumulation of PAI-1 and the inhibitory effect of cycloheximide. Furthermore, by in situ hybridization, PAI-1 mRNA was detected in cultured mesangial cells. t-PA is present inside the cells, or at the cell surface, but is never associated with the extracellular matrix. Exogenous t-PA can remove matrix-associated PAI-1 without affecting cell adhesion. A similar effect was obtained by addition of urokinase-type plasminogen activator (u-PA) but not with fibrinolysis unrelated enzymes. In conclusion, PAI-1 is synthesized by human cultured mesangial cells and is deposited in the extracellular matrix by nonconfluent cells, whereas less PAI-1 is seen between confluent cells. This can explain the absence of detectable PAI-1 in normal human kidney biopsies. t-PA released by mesangial cells can bind and detach matrix PAI-1.

Cells, Cultured

[TNF-alpha synthesis by circulating mononuclear cells in patients undergoing kidney transplantation].

In 7 patients who received renal transplant, systematic blood samples and cytoaspiration of the graft were performed every 3 days after grafting. In vitro TNF-alpha generation by circulating mononuclear cells and by cells infiltrating the graft were measured under basal conditions and after stimulation by recombinant IL-2 (50 U/ml). TNF-alpha concentration was determined by immunoradiometric assay (IRMA). Not enough cells could be collected by cytoaspiration to measure TNF-alpha concentration. In contrast, the generation of TNF-alpha by circulating mononuclear cells was detectable. It increased 24 to 48 hours before the rejection crisis and decreased after successful treatment and return of creatinin level to initial value. IL-2 increased TNF-alpha production and was more effective under normal conditions (10 to 15 fold increase) than during rejection episodes (1.3 to 2.4 fold). These results suggest that TNF-alpha is produced by mononuclear cells during rejection episodes and could be used as a marker of rejection. Further studies are required to determine its sensitivity and specificity.

Adult

[TNF-alpha synthesis by cells from bronchioloalveolar lavage and by circulating mononuclear cells in recipients of heart-lung transplantation].

In 10 patients who received a heart lung transplant, TNF-alpha generation by cells collected during bronchioloalveolar lavages (n = 30) and by circulating mononuclear cells was measured. Basal and recombinant IL-2-stimulated productions (50 U/ml) were measured. TNF-alpha concentration was determined by an immunoradiometric assay (IRMA). Circulating mononuclear cells produced at least 4 times less TNF-alpha than BAL cells. Rejection episodes or CMV diseases were not associated with significant changes in TNF-alpha generation. Recombinant IL-2 increased this production in both cell populations but the magnitude of this effect was smaller in BAL cells, suggesting an in vivo preactivation.

Adult

Stable cell line of T-SV40 immortalized human glomerular visceral epithelial cells.

Human subcultures (third passage) of glomerular visceral epithelial cells (VEC) isolated from one month old kidney were successfully transfected by two recombinant plasmids containing the cloned oncogenes from the simian virus 40 large T antigen and H-ras gene. One postcrisis cell clone (56/10 A1) was selected, propagated and characterized. One hundred percent of the 56/10 A1 cells (current passage greater than 100th; doubling time 30 hrs) expressed the nuclear T-SV40 antigen assayed by IF; the cells failed to express H-ras (RNA blot analysis). Immortalized cells were morphologically and phenotypically compared to parental cell type (third passage). Phenotypic characterization of the 56/10 A1 cells was achieved using indirect immunofluorescence (IF) and immunogold silver staining coupled to bright field and epipolarization microscopy. Both parental and 56/10 A1 cells displayed positivity for cytokeratin, CALLA and PHM5, whereas von Willebrand factor was not detected in the two cell types. Since we have previously shown that human glomerular epithelial cells in culture synthetize plaminogen activator (PA) related compounds, we investigated the secretion pattern of these products in parental and transfected cells. Zymographic analysis of secreted PA related compounds revealed production of free urokinase (u-PA) and type 1 plasminogen activator inhibitor (PAI-1) complexed to tissular plasminogen activator (t-PA). Finally, in the transfected cells, increased cGMP generation under atrial natriuretic factor (ANF) stimulation agreed with previous work performed on nontransfected human VEC. In conclusion, the establishment of a human permanent cell line which retains most of the phenotypic features of parental glomerular visceral epithelial cells should represent a new tool to study human glomerular cell functions.

Antigens, Viral, Tumor

[Dynamic study of the coronary vascular bed by selective coronary scanning using hyperaemia].

Advantage may be taken of the hyperaemic response to the iodine contained in the contrast medium injected during coronary angiography to assess the functional value of the coronary tree using radioactive microspheres. This series comprises 73 selective coronary scans performed in the resting state (113 m In marked microspheres) and during the hyperaemic phase (99 m TC marked microspheres) in 70 patients. A positive hyperaemic response distal to severe truncular stenosis indicates a good distal arteriolar bed and collateral circulation for aorto-coronary bypass grafting. After aorto-coronary bypass (23 cases), the hyperaemic response gives an indication of the functional value of the revascularised myocardium. In 71% cases, the results correlate well with the measurement of the peroperative blood flow through the graft. It is usually positive when the bypass graft is implanted with good distal arterial run off.

Adult

[Adenylate cyclase and guanylate cyclase activity in the isolated kidney glomerulus of the rat].

Isolated rat renal glomeruli contain an adenylate cyclase system and guanylate cyclase system. Adenylate cyclase was strikingly activated by purified parathyroid hormone, epinephrine, prostaglandin I2 and histamine. The demonstration of PTH activated adenylate cyclase in glomeruli raises the possibility of a role of this hormone in regulation of glomerular filtration rate. Guanylate cyclase was strikingly activated by CA2+, nitrate derivatives such as sodium nitroprusside. Its role remained still unknown.

Adenylyl Cyclases

Glomerular fibrinolytic activity during nephrotoxic nephritis.

The glomerular fibrinolytic activity (GFA) was measured during the development of glomerulonephritis induced by the intravenous injection of horse or rabbit antiglomerular basement membrane antibodies in rats either untreated or preimmunized with horse or rabbit Ig. A variety of nephritides was produced ranging from proteinuria with no or mild changes in glomerular architecture to severe diffuse proliferative glomerulonephritis with close to 100% crescent formation. GFA was measured on preparations of isolated glomeruli using a radioassay based on lysis of 125I fibrin adsorbed on a solid phase. In some experiments a fibrin plaque technique was also used. Both methods clearly demonstrated a marked increase in GFA with a good correlation between the two sets of results when the glomerular architecture is preserved. The increase in GFA is related both to the severity of the nephritis estimated by the percentage of glomeruli showing crescent formation and to the extent of the fibrin deposits. The results therefore indicate that the persistence of fibrin in the glomeruli and particularly in crescents is not due to a loss of GFA.

Animals

Enhanced antiplasmin activity in acute renal failure.

Plasmatic slow plasmin-inhibitor activity was assessed in 20 patients with acute renal failure and 12 controls with the fibrin plate method. The area of fibrinolysis was 250-5 +/- 5 mm2 in the patients and 289 +/- 6mm2 in the controls (P less than 0.001) and was negatively correlated with antiplasmin activity. Thirteen patients had areas of lysis equal to or inferior to the minimal lysis observed in the controls. No correlation was found between antiplasmin activity and serum fibrin-fibrinogen related antigen titres, the presence or absence of disseminated intravascular coagulation, or the causative disease.

Acute Kidney Injury

Glomerular fibrinolytic activity after thrombin perfusion in the rat.

The effects of thrombin perfusion on glomerular fibrinolytic activity (GFA) have been assessed quantitatively in isolated rat glomeruli. Gfa was augmented by increasing total thrombin perfused to a maximal dose of 120 units per 100 gm. Fifty per cent maximal GFA occurred at a dose of 38 to 42 units of thrombin per 100 gm. independent of duration or rate of perfusion. After termination of infusion, GFA diminished and thrombi were no longer observed. Simultaneous administration of thrombin and epsilon-aminocaproic acid was associated with sustained high GFA and persistence of thrombi, presumably due to inhibition of the action of plasmin on fibrin, but it had no effect on tissue activators of plasminogen.

Aminocaproates

[Myocardial infarct due to diffuse arteriopathy of the coronary trunk in a 13-year-old child].

A case of antero-septal myocardial infarction in a child of 13, presenting as syncopal attacks, is reported. Selective coronary angiography showed severe diffuse lesions of the anterior descending artery and the right coronary artery. Clinical progress was satisfactory over an 18 month follow-up period. The only biochemical abnormality was a raised serum uric acid, the significance of which is discussed.

Adolescent