Circular dichroism of biological membranes-brain microsomes.
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Biomedical subjects
Publications and source records attributed to L Masotti.
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Coenzyme Q-3 incorporated into the lipid bilayer at physiological concentration provided an 80% inhibition of the lipid peroxidation induced by ferrous ions. In coenzyme Q-containing vesicles, the fluorescence lifetime and the fluorescence anisotropy decay of the probe, 1,6-diphenyl-1,3,5-hexatriene, were measured in order to find out if the presence of the quinone can cause variations in the membrane organization. Our data show that two distinct populations of the probe were present and that both populations were available to quenching by coenzyme Q. The overall effects of coenzyme Q on the static and dynamic properties of the model membranes were: a very small effect in the ordering of the fatty acid chain, and a more noticeable decrease of the probe correlation time and, therefore, an increase in membrane fluidity at increasing quinone concentration. When vesicles were peroxidized in the absence of the coenzyme Q, the fluidity markedly decreased; in its presence, the fluidity was nearly unchanged. The results suggest that the antioxidant properties of coenzyme Q can be ascribed to its ability to react with free radicals. The effect on the fluidity of the lipid bilayer might imply that a requisite for a molecule to act as an efficient antioxidant could be its ability to readily diffuse within the membrane.
OBJECTIVE: To focus on diagnostic and therapeutic problems of pulmonary embolism in the elderly. METHODS: Retrospective analysis of 5 years of clinical, instrumental, and laboratory data (collected at the time of hospital admission) for patients 65 years and older with pulmonary embolism proven by a high-probability scintigraphic lung scan or necropsy. Sixty-eight patients, 46 females and 22 males, 78.61 +/- (SD) 7.71 years old, were enrolled in the study. RESULTS: Dyspnea, chest pain, tachycardia, and tachypnea were the most common symptoms and signs; they were present alone or in combination in all patients. Bed rest over 4 days was found in 65% of the patients and deep vein thrombosis in the leg in 35%. Only 7 patients were on anticoagulant therapy which was likely to reduce the incidence of pulmonary embolism. The mortality was 29.5%. Major bleeding due to anticoagulant therapy was observed in 4.4% of the patients; 1 case was fatal. Sinus tachycardia, ST segment and T wave abnormalities in anterior leads, and incomplete bundle branch block were the most frequent electrocardiographic findings. Chest X-ray was normal in 19.5% of the patients and compatible with pulmonary embolism in 10%. A transthoracic two-dimensional echocardiogram was abnormal in 74% of the cases, with involvement of the right ventricle in the majority of them. Many patients had laboratory parameters within the normal range. The value of the latex agglutination D-dimer assay was less than the cutoff value of 500 microg/l in 16% of the patients. Hypoxemia and a high alveolar-arterial oxygen gradient were the most frequent aspects of the arterial blood gas analysis. Respiratory alkalosis was observed in only one third of the patients. CONCLUSIONS: Pulmonary embolism is often underdiagnosed in the elderly. Clinical, instrumental, and laboratory findings are nonspecific. Only acute suspicion can increase the number of diagnoses, reduce the time to diagnosis, and improve the prognosis.
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The effect of the insertion of coenzyme Q10 and some of its shorter chain homologues in membrane models (Reverse Micelles, Small Unilamellar Vesicles and Liposomes) has been studied by NMR and IR spectroscopies. By 1H-NMR we have found that the stretched conformation of the isoprenoid side-chain observed in solution is maintained in membrane models. Interaction between the quinonoid moiety of the Q's and the phosphatidic groups of the phospholipids has been evidenced by 31P-NMR. A large effect of this interaction on the water microdynamics and distribution around the charged groups of the phospholipids has been observed by measurements of 1H and 2H relaxation times and by infrared spectra. The 13C-NMR spectra of the backbone of the acyl chains of phospholipids does not seem to be influenced to a noticeable extent by the presence of the Q's.
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