Search Results - "Ribeiro, AC Mendes"
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Inhibition of l ‐arginine transport in platelets by asymmetric dimethylarginine and N G ‐monomethyl‐ l ‐arginine: Effects of arterial hypertension
Published in Clinical and experimental pharmacology & physiology (01-10-2004)“…Summary 1. Nitric oxide (NO) produced by human platelets plays an important role in all stages of platelet activation. l ‐Arginine, the precursor for NO…”
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2
Inhibition of l-arginine transport in platelets by asymmetric dimethylarginine and NG-monomethyl-l-arginine: Effects of arterial hypertension
Published in Clinical and experimental pharmacology & physiology (01-10-2004)“…Summary 1. Nitric oxide (NO) produced by human platelets plays an important role in all stages of platelet activation. l‐Arginine, the precursor for NO…”
Get full text
Journal Article -
3
ACTIVATION OF l-ARGININE TRANSPORT IN UNDIALYSED CHRONIC RENAL FAILURE AND CONTINUOUS AMBULATORY PERITONEAL DIALYSIS PATIENTS
Published in Clinical and experimental pharmacology & physiology (01-01-2006)“…SUMMARY 1 Treatment with haemodialysis and continuous ambulatory peritoneal dialysis (CAPD) presents different pathophysiological profiles and it has been…”
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4
Inhibition of l-arginine transport in platelets by asymmetric dimethylarginine and N-monomethyl-l-arginine: effects of arterial hypertension
Published in Clinical and experimental pharmacology & physiology (01-10-2004)“…Nitric oxide (NO) produced by human platelets plays an important role in all stages of platelet activation. l-Arginine, the precursor for NO synthesis,…”
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5
Albumin stimulates cell growth, L-arginine transport, and metabolism to polyamines in human proximal tubular cells
Published in Kidney international (01-05-2005)“…Albumin stimulates cell growth, L-arginine transport, and metabolism to polyamines in human proximal tubular cells. Pure albumin stimulates proximal tubular…”
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6
Effects of nutritional status on the L-arginine-nitric oxide pathway in platelets from hemodialysis patients
Published in Kidney international (01-11-2005)“…Effects of nutritional status on the L-arginine-nitric oxide pathway in platelets from hemodialysis patients. Malnutrition is a common feature in chronic renal…”
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7
Accumulation of the endogenous L-arginine analogue NG-monomethyl-L-arginine in human end-stage renal failure patients on regular haemodialysis
Published in Experimental physiology (01-05-1996)“…We measured plasma levels of L-arginine, its analogue NG-monomethyl-L-arginine (L-NMMA), and related amino acids in normal subjects and uraemic patients (n =…”
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8
Time interval between pairs of arterial blood pressure measurements—Does it matter?
Published in American journal of hypertension (01-02-2004)“…Guidelines on arterial blood pressure (BP) measurements recommend a time interval between readings. There has been little evidence supporting this…”
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9
CHARACTERIZATION OF CATIONIC AMINO ACID TRANSPORT SYSTEMS IN RAT ERYTHROCYTES: LACK OF EFFECT OF URAEMIA ON l-ARGININE INFLUX
Published in Clinical and experimental pharmacology & physiology (01-08-2006)“…SUMMARY 1 Chronic renal failure (CRF) is associated with the abnormal regulation of nitric oxide (NO) synthesis at the systemic level. The transport of…”
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10
Altered L-arginine metabolism results in increased nitric oxide release from uraemic endothelial cells
Published in Clinical science (1979) (01-07-2002)“…Results regarding the nitric oxide (NO) system in uraemia are contradictory. L-arginine, the precursor of NO, is also metabolized by arginase to form ornithine…”
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11
Activation of L-arginine transport in peripheral blood mononuclear cells in chronic renal failure
Published in Pflügers Archiv (01-10-2002)“…Transport of LL-arginine, the precursor for nitric oxide (NO) synthesis, has been investigated in human peripheral blood mononuclear cells (PBMCs) obtained…”
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12
Identification of system y+L as the high-affinity transporter for L-arginine in human platelets: up-regulation of L-arginine influx in uraemia
Published in Pflügers Archiv (01-09-1999)“…Kinetic studies of L-arginine transport in human platelets have identified a high-affinity, low-capacity transport system [Michaelis-Menten constant (K(m))…”
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