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Biomedical subjects

S Gaillard

Publications and source records attributed to S Gaillard.

At least 91 records · Page 5Linked to original sources

Inhibition of two rat hepatic microsomal drug-metabolizing enzymes by a carcinogenic N-nitrosated pesticide: N-nitrosocarbaryl.

N-Nitrosocarbaryl (N-methyl-1-naphthyl N-nitrosocarbamate) was intraperitoneally administered to male and female rats on four consecutive days at the following doses: 6.25 mg, 12.5 mg, 25 mg and 50 mg/kg body weight/day in olive oil solution; the controls received just the oil. In a second experiment, a daily intraperitoneal dose of 25 mg/kg of N-nitrosocarbaryl was given for 1, 2, 3 or 4 days; the animals were killed 24 h after the last treatment. The two following microsomal enzymatic activities were assayed: aniline aromatic hydroxylase and p-nitroanisole O-demethylase; the levels of cytochrome P-450, proteins and RNA were measured in the hepatic microsomal fraction. N-Nitrosocarbaryl is an inhibitor of the two investigated microsomal monooxygenases at doses of 25 and 50 mg/kg when administered on 4 consecutive days. During the daily administration, enzyme inhibition is seen in females after one day of treatment whereas cytochrome P-450 only becomes lowered after 4 days of administration. In males, no modification of this parameter is observed whereas the activities of microsomal monooxygenases are inhibited. These results suggest that N-nitrosocarbaryl could act on the active sites of the enzymes which metabolize aniline and p-nitroanisole.

Aniline Hydroxylase↗

[Modifications in hemorheological parameters following acute medical emergencies (author's transl)].

Various hemorheological parameters were studied in venous blood samples taken during the initial stages of acute medical emergencies in patients admitted to the Intensive Care Unit. These included more particularly: cerebrovascular accidents, recent acute arterial or venous thrombosis, pulmonary embolism, acute renal failure, pregnancy toxemia and emergencies occurring during pregnancy or in the puerperium, coagulation disorders, gas embolism... The examinations conducted were:--measurement of apparent--blood viscosity (eta a) and plasma viscosity--platelet aggregate fixation after fixing in formalin according to the method described by Wu and Hoak--blood filterability through filters with pores 5 microns in diameter. The principal modifications observed, often correlated were raised blood and plasma viscosity, reduction in the aggregation index, and diminution in filterability. It should be noted that the increase in viscosity, constant in all groups, is significant at low shearing speeds in the thrombosis cases, and that this significance is present in nearly all the pathological groups with high shearing speeds. Variations in the aggregation index are very dispersed and of low significance.

Blood Viscosity↗

[The effect of different plasma substitutes on the viscoelastic properties of blood. Comparison with human albumin].

In a previous study the authors proposed a law of visco-elasticity with three parameters to describe the influence on blood of a forced test according Couette's schedule. The changes produced by different plasma substitutes are studied under equilibrium conditions and under altered conditions. Marked changes were noted in the various parameters. It would appear that these changes are related to the cohesion of erythrocyte rouleaux.

Algorithms↗

[Rheological effects of normovolemic hemodilution].

Blood viscosity depends essentially on two factors: shearing rate, since the blood is not a Newtonian liquid and the hematocrit, any fall in which tends to cause the blood to become closer in its behaviour to a Newtonian liquid. Furthermore, these two factors are interdependent. When the hematocrit falls, blood viscosity decreases in greater proportions at lower shearing rates than at high shearing rates. Whilst in vitro, in hemodilution, results vary in relation to the type of replacement solution, in vivo this factor would appear to be of little importance by virtue of the adapted variations in the deformability of the red cells. However, hemodilution results in the greatest relative decreases in blood viscosity at the highest hematocrits. Below a hematocrit of approximately 30 p. cent, the gain in terms of viscosity is very low. This figure would appear to be the ideal hematocrit level from a rheological standpoint. An additional rheological advantage is provided by hemodilution the instability of red cell rouleaux, which are in fact created more readily in areas where shearing rate is low. All of these rheological changes explain the hemodynamic consequences.

Blood Viscosity↗

[Variations in blood viscosity of insulin-dependent diabetic subjects controlled by artificial pancreas (author's transl)].

A study of blood viscosity at 3 rates of determination (0.232-0.348 and 1.16 sec-1) in insulin-dependent diabetic subjects controlled by artificial pancreas, shows a reduction in this parameter after 30 hours of feed back control. The relationship between these variations, the mechanical cohesion of the agglutinated red cells, and the deformability of these structures are discussed.

Artificial Organs↗

[Thrombosis of the left popliteal artery from hypertrophy of the gemellus muscle (author's transl)].

The authors report a case of thrombosis of the left popliteal artery in a man aged 20 years, secondary to repeated minimal trauma from contact with a hypertrophied internal gemellus muscle. A bifurcation abnormality was also present. They review the anatomical variations seen at the end of the femoro-popliteal trunk and define the clinical and angiographic characteristics of popliteal thrombosis due to adjoining muscle hypertrophy.

Adult↗

[Measurement of blood viscosity using a rotatory viscosimeter with coaxial cylinders].

The authors describe a microviscosimeter with coaxial cylinders which requires only a small volume of sample. They draw up formulae permitting to obtain in a simplified way, fluid rheograms, in particular for biological fluids. Furthermore, they consider the use of this viscosimeter for the study of the rheological properties of blood and plasma. Thus, at 30 degrees C, the plasma and serum have a newtonian behaviour, whilst the viscosity of total blood depends mainly on the hematocrit and the rate of shearing. One may thus verify Casson's law (tau 1/2 = tauo 1/2 + S gamma 1/2) which represents approximately the rheological equation of normal blood and permits one to calculate a threshold for viscous outflow.

Blood Viscosity↗