Search PubMedSearch

Biomedical subjects

O Iimura

Publications and source records attributed to O Iimura.

At least 253 records · Page 14Linked to original sources

Hemodynamic and natriuretic responses to intravenous infusion of dopamine in patients with essential hypertension.

In order to clarify the role of dopamine on the pathophysiology of essential hypertension, mean arterial pressure (MAP), heart rate (HR), urine volume (UV), urinary sodium excretion (UNaV), endogenous creatinine clearance (Ccr), fractional excretions of sodium (FENa), inorganic phosphorus (FEP) and potassium (FEK), plasma renin activity (PRA), plasma aldosterone concentration (PAC) and plasma noradrenaline concentration (PNA) were measured before and after intravenous infusion of dopamine (3 micrograms/kg/min, 60 min) in normotensive (NT) and essential hypertensive subjects (EHT). Following dopamine infusion, a significant decrease of MAP and an increase of HR were observed in EHT but not in NT. UV, UNaV, Ccr, FENa, FEP and FEK increased significantly in both NT and EHT, and changes in these except for Ccr were significantly greater in EHT than in NT. In EHT, following dopamine infusion, PNA was clearly elevated, but no remarkable change was found in PRA and PAC. A significantly positive correlation was found between delta UNaV and delta FENa or delta FEP, and between delta FENa and delta FEP, while no significant relation was observed between delta UNaV and delta Ccr, delta MAP or MAP before dopamine infusion. A significant inverse correlation between supine PRA before dopamine infusion and delta FENa or delta FEP and a positive correlation between age and delta FENa or delta FEP were also observed in these patients. The changes in UNaV positively correlated with delta FENa and delta FEP in both low renin (group L) and normal renin EHT (group N) and with delta Ccr i group N but not in group L. The mean values of delta FENa, delta FEP and delta FEK were significantly higher in group L as compared with those in age-matched group N. These results suggest that, since the enhanced response to infused dopamine may reflect reduced dopaminergic activity, attenuation of renal dopaminergic activity might exist and be involved through a distribution of water-sodium metabolism, at least in part, in the pathophysiological mechanism in EHT, particularly in group L.

Adult

An improved method for the determination of human blood kinin levels by sensitive kinin radioimmunoassay.

A highly sensitive and specific radioimmunoassay for kinin (minimal detectable amount, 0.5 pg/tube) was applied to measure the blood kinin level. A five ml blood sample was collected with a siliconized needle and plastic syringe which contained 2.5 ml of 0.8 N-HCl. The blood kinin was extracted with butanol, following reextraction with water. According to this procedure, the mean recovery (mean +/- SE) calculated from added 125I-bradykinin (500 CPM) and the known amounts of cold bradykinin were 50.4 +/- 0.8% and 51.1 +/- 2.2%, respectively. In comparison with other sampling methods in 6 normal subjects, the blood samples taken without HCl in syringes showed a higher level (24.4 +/- 10.1 pg/ml) than the samples with HCl (5.3 +/- 1.3 pg/ml). And very high levels were obtained in the plasma samples collected by the method of Talamo or Vinci (0.53 +/- 0.24 ng/ml and 3.5 +/- 1.3 ng/ml, respectively). The kinin content in blood samples taken with HCl was stable at -20 degrees C for at least one month, but increased significantly at room temperature or 4 degrees C for 48 hours. Blood samples were obtained from 17 normal subjects, and 3 patients with acute myocardial infarction. Blood kinin levels in the patient with acute myocardial infarction, 121 +/- 20.9 pg/ml, were significantly higher than those in normal subjects (3.8 +/- 0.5 pg/ml). From these results, it was concluded that high levels of blood kinin reported previously may have resulted from inadequate sampling procedures. Thus, in order to measure blood kinin accurately, inactivation of the kinin generating and destroying enzymes must be done immediately after the sampling. In addition, this radioimmunoassay method should be very useful in investigating the pathophysiological role of blood kinin in various diseases.

Blood Specimen Collection

[Kallikrein].

Explore the source record for details and available documents.

Animals

Excretion of human urinary kallikrein quantity measured by a direct radioimmunoassay of human urinary kallikrein in patients with essential hypertension and secondary hypertensive diseases.

Recently, we established a very sensitive, specific and simple direct radioimmunoassay method for human urinary kallikrein. In this study, in order to clarify whether or not the low or high excretion rate of urinary kallikrein activity in patients with essential hypertension, primary aldosteronism, pheochromocytoma and Bartter's syndrome is caused by changes in enzyme quantity, urinary kallikrein excretion was measured with this direct radioimmunoassay method in normal subjects and in patients with these diseases. Urinary kallikrein excretion measured as enzyme quantity was significantly lower in patients with essential hypertension, and higher in patients with primary aldosteronism and Bartter's syndrome. These results are consistent with other previously reported data and our data measured by means of esterase assay or kininogenase assay. The results also suggest that lowered or elevated excretion of urinary kallikrein activity in these diseases is caused, in part at least, by the lowered or elevated excretion of enzyme quantity.

Bartter Syndrome