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M J Gallego

Publications and source records attributed to M J Gallego.

9 recordsLinked to original sources

Cyclosporine enhances leukocyte adhesion to vascular endothelium under physiologic flow conditions.

We investigated the effect of cyclosporine (CyA) on leukocyte adhesion to endothelium under flow conditions. Confluent human umbilical vein endothelial cells (HUVECs) were incubated for 24 hours with CyA (1, 5, and 10 micromol/L) and then exposed to a total human leukocyte suspension in a parallel plate flow chamber under laminar flow (1.5 dynes/cm2. Human umbilical vein endothelial cells stimulated with interleukin-1beta (20 U/mL) were used as a positive control. Adherent cells were measured by digital image analysis. Results showed that CyA dose-dependently increased the number of leukocytes adhering to HUVECs compared with control cells. Leukocyte adhesion markedly increased on HUVECs incubated with interleukin-lbeta, one of the most potent inducers of endothelial cell adhesiveness. Exposure of endothelial cells to CyA did not affect the number of rolling leukocytes, which was similar to control values. To examine the role of adhesion molecules in CyA-induced leukocyte adhesion, HUVECs were incubated with monoclonal antibodies against intercellular adhesion molecule-1 (ICAM-1), vascular adhesion molecule-1 (VCAM-1), and E-selectin before adhesion assay. Functional blocking of ICAM-1, VCAM-1, and E-selectin on endothelial cells significantly inhibited CyA (10 micromol/L)-induced leukocyte adhesion. Confocal fluorescence microscopy studies showed that CyA induced an increase in the endothelial surface expression of ICAM-1, VCAM-1, and E-selectin. Pretreatment of leukocytes with the platelet activating factor receptor antagonist L659,989 significantly reduced the number of leukocytes adhering to CyA-treated HUVECs. We suggest that CyA enhances leukocyte adhesion to endothelium by upregulating adhesive proteins on endothelial surface membrane. Blocking leukocyte receptor for platelet-activating factor partially prevents adhesion, suggesting a role for endothelial cell-associated platelet-activating factor in the interaction between leukocytes and CyA-treated endothelium.

Cell Adhesion↗

Mechanisms of the endothelial toxicity of cyclosporin A. Role of nitric oxide, cGMP, and Ca2+.

Cyclosporin A (CyA) is an efficient immunosuppressive agent, which, however, causes functional and structural alterations in endothelial cells. The aim of the present study was to examine the mechanisms of CyA-induced endothelial disfunction. CyA administration (Wistar rats, 25 mg/kg per day for 15 days) induced a significant inhibition of endothelium-dependent relaxation to acetylcholine on isolated femoral arteries. No changes with CyA were detected in the relaxation response to the endothelium-independent agent (sodium nitroprusside) or the endothelium-dependent receptor-independent agent (Ca2+ ionophore). The addition of L-arginine (10(-5) mol/L) shifted to the left the acetylcholine-mediated vasorelaxing response in CyA-treated segments, an effect that was accompanied by a marked increase of cGMP. 45Ca2+ uptake was higher in CyA-treated segments with respect to control segments but became normalized after incubation with L-arginine or sodium nitroprusside. De-endothelialization or incubation with the L-arginine competitive analogue N omega-nitro-L-arginine (NwNLA) increased 45Ca2+ uptake in control segments but not in CyA-treated segments. In conclusion, in isolated rat arteries, chronic CyA therapy affects endothelial function by uncoupling the acetylcholine-mediated relaxation and interfering with an endothelium-mediated pathway that regulates 45Ca2+ uptake by a mechanism reversed by an L-arginine-dependent cGMP generation.

Animals↗

Nitric oxide-generating system as an autocrine mechanism in human polymorphonuclear leucocytes.

Recent data [Lopéz-Farré, Riesco, Moliz, Egido, Casado, Hernando and Caramelo (1991) Biochem. Biophys. Res. Commun. 178, 884-891] revealed that endothelin 1 (ET-1) increases intracellular free [Ca2+] in polymorphonuclear leucocytes (PMN) by a mechanism that can be inhibited by L-arginine. The aim of the present study was to clarify the mechanisms of the interaction between the effects of ET-1 and L-arginine in human PMN. The experimental findings showed that in human PMN: (a) ET-1 and the chemoattractant peptide N-formylmethionyl- leucyl-phenylalanine (fMLP) induce both the metabolism of L-arginine to L-citrulline and cyclic GMP (cGMP) formation; (b) the ET-1-induced cGMP production is inhibitable by the L-arginine antagonist NG-monomethyl-L-arginine, therefore suggesting the involvement of NO; (c) the ET-1- or fMLP-induced NO/cGMP stimulation is critically dependent on the availability of L-arginine; (d) human PMN possess a L-arginine transport system with both Na(+)-dependent and -independent components; (e) the L-arginine transport system in PMN appears to be feedback-regulated by NO/cGMP in ET-1-stimulated conditions, but not under baseline conditions; (f) the L-arginine transport system in PMN is independent of the gamma-glutamyl cycle and is not modified by either ET-1 or fMLP. The L-arginine/NO/cGMP-dependent mechanisms characterized in the present study may be relevant in the regulation of PMN activation in pathophysiological conditions in vivo.

1-Methyl-3-isobutylxanthine↗

Blockade of endothelium-dependent responses in conscious rats by cyclosporin A: effect of L-arginine.

This study was undertaken to examine the effect of the major immunosuppressive drug, cyclosporin A (CyA), on endothelial function. Conscious Wistar rats, treated with CyA (25 mg.kg-1 x day-1 im for 15 days), developed an inhibition of the endothelium-dependent acetylcholine (ACh)-mediated vasodilation, diuresis, natriuresis, and guanosine 3',5'-cyclic monophosphate excretion. The response to two endothelium-independent agents, i.e., sodium nitroprusside and atrial natriuretic peptide was preserved in similarly treated rats. The toxic effects of CyA were acutely overcome by the administration of the amino acid L-arginine (L-Arg), a source of substrate for nitric oxide. Moreover, the simultaneous administration of L-Arg (200 mg/kg ip for 15 days) significantly prevented the functional effects of CyA toxicity. The present data suggest that, in early stages of CyA toxicity, the predominant functional alteration occurs at the endothelial level. The reversibility of such alteration by L-Arg opens the possibility for further strategies aimed to reduce the harmful effects of CyA.

Acetylcholine↗

Effect of endothelin-1 on neutrophil adhesion to endothelial cells and perfused heart.

BACKGROUND: Based on recent evidence showing that endothelin-1 stimulates several activation mechanisms on neutrophils, the aim of the present study was to analyze the effects of endothelin-1 on neutrophil adhesion to endothelial cells and neutrophil accumulation in the heart. METHODS AND RESULTS: The experiments included (1) adhesion of 51Cr-labeled human neutrophils to bovine endothelial cells in culture both in the presence and absence of monoclonal antibodies against the alpha- and beta-subunits of integrins; (2) surface expression of the alpha- and beta-integrin antigens; (3) accumulation of 51Cr-labeled neutrophils on the isolated perfused rabbit heart; (4) in vivo accumulation of autologous neutrophils in the heart, as assessed by myeloperoxidase activity. Endothelin-1 stimulated neutrophil adhesion to endothelial cells (increase of 1 x 10(5) +/- 1 x 10(4) neutrophils per well). The endothelin-1-induced adhesion was blocked (83 +/- 6%) by the anti-CD18 antibody TS1/18 and by several anti-alpha-subunit antibodies. The expression of CD18 and CD11b on the neutrophil surface was also increased by endothelin-1. Endothelin-1 enhanced neutrophil accumulation in the isolated rabbit heart by 4.2 times throughout a TS1/18-inhibitable mechanism. Myeloperoxidase activity increased by 4.2 times in hearts infused in vivo with endothelin-1. CONCLUSIONS: Endothelin-1 stimulates neutrophil adhesion to endothelial cells by an effect on the expression of adhesive molecules on the neutrophil surface. Endothelin-1 stimulates neutrophil accumulation in vivo and in vitro in the heart. Antibodies against the integrin complex block the endothelin-1-dependent neutrophil adhesion. These findings have potential importance in the pathophysiology of endothelin-1-increased states.

Animals↗

Renal and systemic effects of aminoacids administered separately: comparison between L-arginine and non-nitric oxide donor aminoacids.

The present study examined the mechanisms of the renal effect of the NO-donor aminoacid, L-Arg and different non-NO-donor aminoacids, namely L-Asn, L-Ala, L-Gly L-Gln administered separately. In conscious, unrestricted Wistar rats, a bolus of L-Arg produced a short-lasting decrease in mean arterial pressure. No variations in mean arterial pressure were found with either L-Gly, L-Asn, L-Ala or L-Gln. This effect of L-Arg was inhibited by NwNLA, methylene blue and atropine and not affected by meclofenamate. Simultaneously, a dose-response diuretic and natriuretic effect was observed with all the aminoacids. In further experiments with L-Arg and L-Gly, this effect was associated with increased glomerular filtration rate, renal plasma flow, fractional sodium and free water excretion and urinary cyclic guanosine monophosphate. These effects of L-Arg and L-Gly were inhibited by NwNLA. On the contrary, no inhibition by NwNLA was detected on the diuretic, natriuretic and renal hemodynamic effects of L-Gln, and the diuretic and natriuretic effects of L-Asn or L-Ala. Our results show that all the assayed aminoacids were endowed of diuretic and natriuretic capabilities. Such effects were apparently related with a NO-mediated mechanism in the case of L-Arg and L-Gly, but not in the case of L-Gln, L-Asn or L-Ala, therefore suggesting that more than one mechanism is involved in the renal effect of the different aminoacids. Simultaneously, only L-Arg produced a NO-, cyclic guanosine monophosphate-dependent hypotensive effect, which was not shared by the other assayed aminoacids.

Amino Acids↗

Mechanisms of renal effects of different agents stimulating production of cGMP.

The effect of agents stimulating the production of guanosine 3',5'-cyclic monophosphate (cGMP) by different mechanisms was compared in conscious unrestrained Wistar rats by administration of infusions of acetylcholine (ACh), sodium nitroprusside (SNP), and atrial natriuretic peptide (ANP). ACh (10 micrograms.kg-1.min-1, n = 8), SNP (200 micrograms.kg-1.min-1, n = 8), and ANP (0.5 micrograms.kg-1.min-1, n = 7) induced natriuresis (urinary Na gradient: 399, 499, and 504 microeq/h, respectively; P less than 0.001 with respect to baseline) and diuresis (urine volume gradient: 0.87, 0.82, and 0.92 ml/h, respectively; P less than 0.001). Urinary cGMP increased (P less than 0.001) with the three agents (delta pmol cGMP/min: ACh 22.3, SNP 42.5, and ANP 48.4); in addition, a parallel increase in renal cGMP content was observed with the three agents (ACh 1.6, SNP 2.8, and ANP 3.5 times with respect to controls; P less than 0.05). Mean arterial pressure did not change with the aforementioned dose of ANP but decreased by 10 and 40% with ACh and SNP, respectively. Glomerular filtration rate increased by a similar magnitude with the three compounds. The competitive inhibitor of L-arginine, N omega-nitro-L-arginine (L-NNA), significantly decreased the diuretic, natriuretic, and hypotensive effects of ACh without affecting the actions of SNP and ANP.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylcholine↗