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Biomedical subjects

M Monti

Publications and source records attributed to M Monti.

At least 307 records · Page 17Linked to original sources

Microcalorimetric measurements of heat production in erythrocytes of patients with liver diseases.

Erythrocyte metabolic activity has been investigated in 12 patients with severe liver disease. The erythrocyte resting heat effect value has been found to be 25% higher than normal (P less than 0.005). A normal value was obtained when heat effect was measured under maximal stimulation with 10(-4) M methylene blue (MB). Glucose consumption was found to be normal, both in unstimulated and methylene blue stimulated erythrocytes. The present calorimetric results do not give support to the hypothesis that haemolytic anaemia in patients with liver disease is related to decreased activity of the pentose phosphate pathway.

Adult↗

Microcalorimetric studies of human platelet metabolism at rest. Influence of pH, temperature, cell concentration, preparation methods and storage.

Heat production in human platelets has been measured under different conditions of pH, temp., cell concentration, preparation and storage time. The heat effect was found to increase linearly in the pH range 7.00-7.95, by 20% per pH unit. The temp. coefficient for the heat effect was determined to be Q10 = 2.0 for the temp. interval 32-42 degrees C. Heat production per cell was not significantly affected by variations in cell concentration, or by storage for several hours at room temp. When citrate replaced heparin as anticoagulant significantly higher heat effect values were found.

Blood Platelets↗

Freeze-fracture of Langerhans granules. A comparative study.

A comparative study of freeze-fracture replicas and thin sections of Langerhans granules has proved that the effects of conventional tissue processing on the inner structure of the granule are negligible, and the study has confirmed the validity of the previously proposed tridimensional models. The paracrystalline quality of the substance contained between the limiting membranes of the disc-shaped area of the granules seems to suggest it protein nature. In replicas, no particle organizations attributable to intercellular junctions were observed on the plasma membranes of Langerhans cells.

Cell Membrane↗

Red cell organic phosphates during administration of salicylates.

The effect of salicylates on erythrocyte 2,3-diphosphoglycerate (2,3-DPG) and adenosine triphosphate (ATP) was studied in vivo in 3 groups of healthy subjects receiving acetylsalicyclic acid (18 persons), sodium salicylate (5 persons) and salicylamide (7 persons) in therapeutic dosage. No effect was found on 2,3-DPG in any of the 3 groups. ATP was significantly decreased (p less than 0.05) when acetylsalicylic acid or sodium salicylate was given.

Adenosine Triphosphate↗

Microcalorimetric measurements of heat production in human erythrocytes. Heat effect during methylene blue stimulation.

The metabolic activity in human erythrocytes during stimulation with 10(-4) mol/l methylene blue has been studied by a microcalorimetric method. Simultaneous measurements were performed on cells from the same preparation suspended in different media. Mean values for the ratios between heat effect values were 7.1 +/- 1.0, 7.4 +/- 0.8, and 10.2 +/- 1.7 (+/- S.D.) for cells suspended in plasma, serum, and glucose phosphate buffer, respectively. All heat effect values were corrected to pH 7.40 using the correction factor found in the present work (0.4 % per 0.01 pH unit). The present calorimetric results are in qualitative agreement with previous reports of other investigators concerning the stimulating effect of methylene blue and the influence of pH on the pentose phosphate pathway.

Blood↗

Microcalorimetric measurements of heat production in human erythrocytes. III. Influence of pH, temperature, glucose concentration, and storage conditions.

Heat production in human erythrocytes has been measured under different conditions of pH, glucose concentration, and temperature. Storage conditions have also been varied. The erythrocytes, which were from healthy subjects, were suspended either in autologous plasma or in phosphate buffer. The heat effect, P, was shown to increase linearly in the physiological pH range: 1.2% per 0.01 pH unit. Variation of the glucose concentration within a wide range, 3-32 mmol/1, did not affect the P value. The temperature coefficient for P was determined to be Q10 = 2.8 for the temperature range 32-42 degrees C. A constant energy of activation was found, 82.6 kJ/mol, for the temperature range 25-42 degrees C. When the erythrocytes were stored at 4 degrees C, P values (measured at 37 degrees C) increased initially by 6%/h. After 24 h of storage P was about 50% higher than the initial value. Determinations of glucose consumption were made in parallel with most of the calorimetric experiments.

Blood Glucose↗

Microcalorimetric measurements of heat production in human erythrocytes. IV. Comparison between different calorimetric techniques, suspension media, and preparation methods.

Heat production in human erythrocytes from healthy subjects has been measured under different experimental conditions. Simultaneous measurements were made on the same samples using different types of microcalorimeters: a static ampoule calorimeter, an air perfusion calorimeter, and a flow calorimeter. Obtained heat effect values for specified standard conditions, P degrees, were within uncertainty limits the same for the different calorimeters. Cells were suspended either in autologous plasma or in a phosphate buffer. P degrees values for buffer suspensions were significantly higher than those for plasma suspensions. Erythrocyte samples prepared by the column adsorption technique gave higher P degrees values than those obtained by a conventional centrifugation procedure.

Blood Preservation↗

Microcalorimetric measurements of heat production in human erythrocytes. II. Hyperthyroid patients before, during and after treatment.

Heat production has been measured in erythrocytes of 17 hyperthyroid patients both before treatment and when the patients had become clinically euthyroid. The decrease in heat effect during treatment was significant. The initial mean value was significantly higher than the corresponding value for normal subjects. A good correlation was found between heat effect values and the clinical condition. Measurement of heat production in erythrocytes can provide useful information about the peripheral effect of thyroid hormones.

Buffers↗

Cardiac arrhythmias, electrolytes, and digoxin concentration in plasma and urine in patients treated with digoxin.

Cardiac arrhythmias, digoxin concentration in plasma and urine, digoxin and creatine clearances, electrolytes in plasma and in erythrocytes, and subjective symptoms have been carefully studied for 5 consecutive days in 19 patients with definite or suspected digitalis intoxication. The digoxin treatment was discontinued during the observation period. Eleven controls without any signs of toxicity were similarly followed on unchanged maintenance dosage. All patients were independently classified as toxic or non-toxic from the follow-up of extended ECG recordings and subjective symptoms. In 9 definitely toxic patients a plasma digoxin concentration 3.1 plus or minus 0.7 ng/ml was found, as compared to 1.4 plus or minus 0.5 ng/ml for the 11 controls. In the suspect toxic group 1.5-3.9 ng/ml was found. The high digoxin level in the toxic group corresponds to a low digoxin clearance. In the toxic patients cardiac arrhythmias were related in most cases to a plasma digoxin level above 2.5 ng/ml and usually disappeared when the concentration had decreased below this. Suspect toxic patients, classified as probably non-toxic, and controls had with two exceptions plasma digoxin levels below 2 ng/ml. It is suggested that digitalis toxicity should be considered at a plasma digoxin concentration above 2 ng/ml. It must be stressed that this limit is not absolute and is affected by, among other things, a disturbance of intra- and extracellular electrolytes.

Arrhythmias, Cardiac↗

Preliminary cutaneous pathology observations with the freeze-fracture technique.

The freeze-fracture technique was used to study acantholytic cells of untreated pemphigus patients and the cells of histocytosis X. On the membranes of acanthocytosis cells, the particles are randomly distributed and lack the typical desmosome organization, while tight and gap junctions are still found. The study of the cells of histocytosis X provided a better understanding of the structure of the Langerhans granule. The paracrystalline organization of the inner face of the disc-shaped portion does not seem to involve the membranes limiting the granule, but rather to be confined to a periodically arranged, possibly proteic substance contained between them.

Acanthocytes↗

Microcalorimetric measurements of heat production in whole blood and blood cells of normal persons.

Microcalorimetric measurements have been made of the heat production in whole blood and its major cell fractions. All measurements were made with samples from normal subjects. The average heat effect value found (plus or minus S.D.) for whole blood was 62 plus or minus 7 mW/l. The value obtained for erythrocytes was 82 plus or minus 6 mW per liter of packed cells suspended in phosphate buffer at pH 7.4. For lymphocytes and for polymorphonuclear leukocytes heat effect values were 4.6 plus or minus 1.8 and 1.2 plus or minus 0.4 pW/cell, respectively, for cells suspended in buffer. For plasma suspensions corresponding values were 2.2 plus or minus 1.4 and 3.5 plus or minus 1.0 pW/cell, respectively. For thrombocytes suspended in plasma the heat effect value was 59 plus or minus 8 fW/cell. Heat production in cell-free plasma was close to zero. Using heat effect values determined for the different cell fractions, values could be calculated for whole blood samples which were in full agreement with the values obtained by direct measurements of whole blood.

Blood↗