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J Dormandy

Publications and source records attributed to J Dormandy.

At least 37 records · Page 2Linked to original sources

Abnormal neutrophil adhesion in sickle cell anaemia and crisis: relationship to blood rheology.

Defects in neutrophil adhesion and migration may contribute to the susceptibility to infection seen in sickle cell anaemia (SCA). These dynamic defects may be influenced by abnormalities in blood rheology found in this disorder. A whole blood model was used to study neutrophil adhesion in SCA patients: neutrophil adhesion to protein coated glass was quantitated by measuring the rate of disappearance of neutrophils from heparinized whole blood circulating through a perfusion chamber. Twenty-three adult patients (Hb SS) were studied in asymptomatic steady state, of whom nine were also studied during pain crisis, both before and 4-7 d after conventional therapy. Red cell and granulocyte filterability and whole blood and plasma viscosity were also measured. The half-time for disappearance from the perfusion system (t1/2) of neutrophils from patients in the steady-state was 93.5 +/- 8.4 min, compared to 49.1 +/- 2.8 min in normal age-matched controls (P = 0.001). In crisis t1/2 was further prolonged to 170.0 +/- 16.1 min (P = 0.01 v. steady state). After therapy, t1/2 decreased to 57.0 +/- 4.5 min (P = 0.001 v. pre-therapy state and P = 0.009 v. steady state) and was comparable to Hb AA controls. These findings reveal a neutrophil adhesion defect in SCA which worsens in crisis but is corrected following supportive therapy. Red cell filterability (expressed as average resistance to flow and pore-clogging particles) and white cell filterability (expressed as pore-clogging particles) were also abnormal in SCA and were found to correlate with neutrophil adhesion. Plasma viscosity also correlated with adhesion t1/2. The defect appears to be related to abnormal blood flow properties in SCA but the rheological factors cannot fully explain either the steady-state defect or the marked changes in neutrophil adhesion during crisis.

Adult↗

Correlation between Doppler flow velocity waveforms and cord blood viscosity.

The contribution of rheological factors to the impedance of blood flow in the umbilical artery as determined by continuous-wave Doppler ultrasound was investigated. Of the 51 pregnancies recruited, six were complicated by pre-eclampsia, 10 by intrauterine growth retardation, 15 by both pre-eclampsia and fetal growth retardation, and there were 20 controls. A significant correlation was demonstrated between both plasma viscosity and gestational age and the resistance index used to characterize the Doppler waveform. Multiple regression analysis demonstrated that changes in plasma viscosity explained 55% of the variance seen in the resistance index and that this was statistically significant. This finding is, however, unlikely to be of clinical significance as whole blood viscosity had an insignificant effect on the impedance in the umbilical artery. We postulate that vascular factors such as the number and calibre of the placental arterioles are a more important determinant of umbilical artery impedance.

Blood Flow Velocity↗

Maternal blood viscosity and uteroplacental blood flow velocity waveforms in normal and complicated pregnancies.

According to the Poiseuille-Hagen law, viscosity influences flow resistance. A possible effect of blood viscosity upon the resistance index of the uteroplacental circulation as measured by continuous wave Doppler ultrasound was investigated in 50 pregnant women. It was found that blood viscosity variables explained only about 10% of the variation in the resistance index in all patients, which was not statistically significant. It is suggested, therefore, that the vascular contribution to flow resistance may be more important.

Blood Flow Velocity↗

Serotoninergic mechanisms in hypertension. Focus on the effects of ketanserin.

Aggregating platelets release serotonin, which induces contraction of most vascular smooth muscle by activation of S2-serotoninergic receptors. Serotonin released in the circulation may contribute to the increase in peripheral resistance of hypertension as the responsiveness of blood vessels from hypertensive animals and humans to the vasoconstrictor action of the monoamine is augmented. The data obtained with the new antihypertensive agent ketanserin may favor that interpretation. Ketanserin is a selective S2-serotoninergic antagonist with additional alpha 1-adrenergic blocking properties. In humans, it has a terminal half-life of 12 to 25 hours and is eliminated predominantly by the liver. The hemodynamic profile of ketanserin is that of a vasodilator drug with actions on both resistance and capacitance vessels. On short-term intravenous administration, it lowers blood pressure in hypertensive patients with minimal reflex changes in cardiovascular function. When given orally long term to hypertensive patients, ketanserin causes a sustained reduction in arterial blood pressure, comparable to that obtained with either beta-adrenergic blockers or diuretics. Several studies have shown a greater efficacy in older (greater than 60 years of age) than in younger patients independent of starting pressure. Side effects mainly consist of dizziness, somnolence, and dry mouth, but they are usually not severe. The mechanism underlying the antihypertensive effect of ketanserin is unclear. It cannot be attributed to either S2-serotoninergic or alpha 1-adrenergic blockade alone, but an interaction between the two effects appears to be required.

Humans↗

Increase in red cell filterability after incubation with oxpentifylline.

Red cells from patients with various diseases known to decrease red cell filterability were washed and incubated in oxpentifylline suspended in buffered saline. An improvement of red cell filterability could be observed which was independent of the aetiology of red cell rigidity. The improvement was related to the initial degree of abnormality. No change was observed in normal cells or cells more than 4 hours old.

Erythrocytes↗

Filterability and vascular disease--II. Red cell filterability after myocardial infarction.

Red cell filterability was measured in 51 patients after proven myocardial infarction. The filterability index (FI) falls to a minimum 7-16 h after the onset of symptoms. This early minimum value is a very good indicator of the patients' subsequent clinical course. The results of three different types of experiments all suggested that the changes in FI were principally due to a change in the plasma secondarily affecting the red cells.

Blood Viscosity↗

The effects of Arvin and surgery on red cell filterability.

Arovin (ancrod) treatment is generally recognized to lower fibrinogen levels and is sometimes used to decrease plasma and whole blood viscosity. The fall in fibrinogen is accompanied by a rise in fibrinogen degradation products (FDP), but none of the other clotting factors is affected. This study shows that patients undergoing surgery with subsequent Arvin treatment decrease their red cell filterability (RCF), and that this drop cannot be explained by either the surgical intervention, a direct effect of Arvin on the red cells, or the lowered fibrinogen levels. However the decrease of RCF does correlate with the rise in FDP.

Ancrod↗

Erythrocyte deformability in the pathophysiology of the microcirculation.

The most commonly used technique for assessing the deformability of red cells, i.e. the filtration of the red cells through 5 mu pore filters, is discussed in regard to the criteria which have to be fulfilled in order to accept that an in vitro measurement truly reflects a valid physiological and pathological variable.

Animals↗