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Biomedical subjects

A Mosca

Publications and source records attributed to A Mosca.

At least 91 records · Page 5Linked to original sources

Fibrin/fibrinogen and fibrinolytic activity of the palmar fascia in Dupuytren's contracture.

Considering the proved interaction of fibrin with fibroblasts and the seemingly decisive role of structural and functional changes ("modulation") of these cells in the evolution of Dupuytren's contracture, research has been carried out in order to investigate the fibrinolytic capacity and the possible presence of fibrin/fibrinogen in the palmar fascia of subjects operated upon for Dupuytren's Disease. Fibrin/fibrinogen were detected by a direct immunofluorescence technique and fibrinolytic activity was assessed by a fibrin plate method. A remarkable decrease of fibrinolytic activity and the presence of fibrin/fibrinogen were observed in small nodules in the early stage of disease, whereas large nodules showed a high amount of plasminogen activator enzymes. Small nodules seem to form and increase by progressive adhesion of fibroblasts to the polymerizing fibrin, while high fibrinolytic activity of large nodules probably results from "modulation" of many fibroblasts into contractile myofibroblasts and could therefore be considered as a biochemical sign of the evolutionary phase of Dupuytren's contracture.

Adult↗

Measurement of erythrocyte acetylcholinesterase and plasma cholinesterase activity by a differential pH technique.

We describe a new electrochemical method for the determination of erythrocyte acetylcholinesterase activity (EC 3.1.1.7) and plasma cholinesterase (EC 3.1.1.8) activity, based on the measurements of pH variation due to release of acetic acid from acetylcholine. The major advantages of the differential pH procedure are simplicity, high reproducibility, no need for pre-treatment of samples, automatic correction of sample blanks, and speed and direct measurement of enzymatic reaction. The proposed methods are linear up to 7400 U/L at 30 degrees C and correlate well with the manual spectrophotometric method of Ellman for plasma cholinesterase and for washed erythrocytes. We adapted the same technique for the determination of erythrocyte cholinesterase using whole blood as sample and quinidine sulphate as inhibitor of pseudocholinesterase.

Acetylcholinesterase↗

Preparation and control of ethylene glycol-stabilized haemolysates for glycated haemoglobin assay.

The preparation and evaluation of ethylene glycol-stabilized haemolysates for use as control material for the assay of glycated haemoglobins is described. These haemolysates were prepared from normal and diabetic blood samples by following the procedure normally used to purify human haemoglobin, with the addition of dialysis to remove glucose from the labile fractions, and dilution with ethylene glycol. All the haemoglobin fractions were converted into the carbon monoxide form to increase their stability and were stored under different conditions. During a 10 month period of storage at -20 degrees C no significant change in the glycated haemoglobins level was observed.

Blood Glucose↗

Measurement of lipase activity by a differential pH technique.

This is a new electrochemical method for determination of lipase activity in biological fluids, including serum, plasma, and duodenal juice. Advantages of turbidimetric methods--short reaction time, and small sample and reagent volumes--are combined with those of titrimetric methods: measurement of absolute activity (i.e., no standardization required), saturated substrate conditions, and direct measurement of reaction products. The proposed method is easy, inexpensive, and takes only 3 min. Precision is good: CV = 3.74% within day and 7.3% between days at the clinical-decision concentration, CV = 1.86% within day and 4.65% between days for above-normal lipase activities. The standard curve is linear up to 4500 U/L. Results (y) correlate well with those by turbidimetry (x): y = 0.9287x - 65.3 (r = 0.9719). Reference values are between 0 and 130 U/L.

Adult↗

The fast acetylator phenotype in diabetes mellitus: abnormal prevalence and association with the ABO blood groups.

The acetylator phenotype and ABO blood groups were evaluated in 55 normal subjects and in 156 diabetic patients [61 with Type 1 (insulin-dependent) diabetes and 95 with Type 2 (non-insulin-dependent) diabetes]. The prevalence of fast acetylators was significantly higher in the Type 1 diabetic patients (53%) than in the control subjects (29%). In the Type 2 diabetic patients the prevalence was 39%, and thus not significantly different from the control or Type 1 diabetic groups. In the Type 2 diabetic patients, but not in the control or in the Type 1 diabetic subjects, an association between the fast acetylator phenotype and the B blood group was found.

ABO Blood-Group System↗

The determination of ethanol in whole blood by differential pH measurements.

The application of a new technique based on the differential measurement of pH between two solutions to determine ethanol concentration in whole blood is reported. The ethanol is determined by measuring the change in pH following its enzymatic oxidation to acetaldehyde. The procedure correlates with the head space gas chromatographic method in the 0-108 mmol/l (0-5 g/l) ethanol whole blood concentration range according to the equation y = 1.344 + 1.013x (r = 0.997).

Acetaldehyde↗

Urea, creatinine, and glucose determined in plasma and whole blood by a differential pH technique.

We report the conditions (buffer composition and enzyme activity) required for estimating three frequently determined analytes--urea, glucose, and creatinine--by use of an improved version of the differential pH apparatus previously described (Clin Chem 29: 80-85, 1983). For each analyte, we used only one specific enzyme, thus avoiding a chain of auxiliary and indicator reactions. The method requires about a minute for each determination in undiluted plasma or whole blood.

Blood Glucose↗

[Hemoglobin S as the cause of primary hyperviscosity of the blood].

The hemoglobinemia S is a genetic defect due to a replacement of a single amino acid in the beta-chain of the human hemoglobin, leading to the most characteristic case of primary blood hyperviscosity. The difference in beta-chain of normal HbA compared to that of HbS is represented by the replacement of glutamic acid, normally found in the 6th position, with valine. The sickling of HbS-containing erythrocytes is due to the polymerization of deoxygenated HbS tetramers with formation of linear structures and to the parallel distribution of these fibers in the red blood cell. The full deoxygenation of HbS blood induces the characteristic morphological changes of red blood cell and increases the blood viscosity from 40 to 120% if compared to the viscosity of the same oxygenated blood. Any change in the viscosity of normal blood following deoxygenation was observed. Almost all the clinical symptoms found in patients carrying HbS can be directly or indirectly correlated to the increased blood viscosity following deoxygenation.

Amino Acid Sequence↗

Measurement of glucose in plasma by a differential pH technique.

A new automatic apparatus based on the differential measurement of pH between two solutions has been developed. Two 25-microL (internal volume) glass capillary electrodes are used to measure the results of automated (under microcomputer control) chemical reactions that lead to the liberation or the uptake of hydrogen ions. The sensitivity of the differential pH measurements is better than +/- 0.0001 pH unit, and the change in H+ concentration that can be detected by such an apparatus is 1 mumol/L for plasma and 3 mumol/L for whole blood. The technique has been applied to the measurement of glucose in plasma, giving results in agreement with the specifications of the Food and Drug Administration reference method for quantitative determination of glucose (hexokinase/glucose-6-phosphate dehydrogenase method).

Blood Glucose↗

Analysis of bicarbonate binding to crocodilian hemoglobin.

Crocodilian hemoglobin has a high intrinsic oxygen affinity but does not react with those organic phosphate esters that normally control the oxygen affinity of blood in higher vertebrates. Instead, its oxygen affinity is greatly lowered by CO2. The present study was undertaken to determine the nature of the CO2 binding to the hemoglobin of a crocodilian species, the Caiman, both qualitatively and quantitatively. The following parameters were measured: (a) carbamino compounds of deoxy- and oxyhemoglobin, (b) the effect of CO2 (at constant pH) on the oxygen affinity of Caiman hemoglobin, (c) total CO2 concentration of hemoglobin solutions at different pH and pCO2 values, and (d) the effect of CO2 on CD spectra of Caiman aquomethemoglobin. An analysis of the results of these measurements revealed that CO2 binding in the form of carbamate was not oxygen-linked and cannot, therefore, mediate the CO2 effect on the oxygen affinity. It was found, however, that 2 mol of bicarbonate can be bound/hemoglobin tetramer and that the association constant of the bicarbonate anion greatly depends upon the state of ligation. At pH 7.02 and 25 degrees C, a numerical value of 2.0 X 10(3) M-1 was obtained for deoxyhemoglobin, while for oxyhemoglobin no significant bicarbonate binding could be observed. At more alkaline pH (pH greater than or equal to 7.5), the association constant for deoxyhemoglobin decreases. Circular dichroism of Caiman aquomethemoglobin decreased considerably in the 287-nm region upon addition of CO2 at constant pH, an effect very similar to the one caused by inositol hexaphosphate in human aquomethemoglobin.

Alligators and Crocodiles↗

Equations and nomogram for the relationship of human blood p50 to 2,3-diphosphoglycerate, CO2, and H+.

We describe a new method for tonometry of small amounts of blood (up to 0.25 mL) at known pO2, PCO2, and temperature, in small, reusable, closed Pyrex flasks. Equilibrated blood is analyzed for oxygen saturation, pH, and organic phosphate concentration with standard techniques, and its p50 (the pO2 at which hemoglobin is half-saturated with oxygen) is determined with full control of all the variables known to affect it. The SD in the measurement of p50 is 0.044 kPa (0.33 mmHg). We made 63 determinations of p50 on normal human blood under different conditions of pH and pCO2, and with different concentrations of 2,3-diphosphoglycerate and ATP. Empirical equations and a nomogram were derived, which allow the calculation of p50 from known values of pCO2, pH, and [2,3-DPG]/[Hb4] molar ratio with a SD of 97 and 114 Pa (0.73 and 0.86 mmHg), respectively.

2,3-Diphosphoglycerate↗

A new spectrophotometric cuvette holder for low temperature studies; its application to the study of carbonmonoxyhemoglobin oxidation rate.

A new spectrophotometric cuvette holder to be used for subzero temperature is described. The device is easily adaptable to a commercial spectrophotometer and it was checked down to --40 degrees C. Satisfactory mixing of the reactants contained in the cuvette at low temperatures is attained using a special stirrer and suitable solution volumes. The rate of carbonmonoxyhemoglobin oxidation by K3Fe(CN)6 at different subzero temperatures has been studied using this apparatus; the results are in agreement with the extrapolated data at room temperature.

Carboxyhemoglobin↗