Plasma viscosity and insulin resistance in metabolic syndrome.
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Biomedical subjects
Publications and source records attributed to R Lo Presti.
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The aim of this research was the evaluation of polymorphonuclear leukocyte (PMN) membrane fluidity in subjects with insulin resistance. Insulin sensitivity, in fact, may be influenced by plasma membrane fluidity. We enrolled 19 subjects with insulin resistance previously demonstrated during an euglycemic hyperinsulinemic clamp. PMN membrane fluidity was studied by labeling intact cells with the fluorescent probe 1-[4-(trimethylamino)phenyl]-6-phenyl-1,3,5-hexatriene and calculating the fluorescence polarization degree. The measurement was made before and after incubation of PMNs with two activating agents: 4-phorbol 12-myristate 13-acetate (PMA) and N-formyl-methionyl-leucyl-phenylalanine (fMLP). The baseline data showed a reduction of PMN membrane fluidity in subjects with insulin resistance. After PMN activation with PMA and fMLP, no significant variation in membrane fluidity was present in PMNs from normals, while in those from subjects with insulin resistance a slight decrease in PMN membrane fluidity was found only after activation with fMLP. The behavior of PMN membrane fluidity, before and after activation, distinguishes insulin-resistant subjects from normal controls, although the effect cannot be directly correlated with the degree of insulin resistance.
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Somatosensory evoked potentials (SEPs) as well as change following transient cerebral ischemia in the gerbil were characterized in this study. SEPs were measured in each gerbil before ischemia (day -1), during ischemia, 10 min, 2, 4, 8, 24, 48 h and 8 days after recirculation. During bilateral carotid occlusion, SEP amplitude was dramatically reduced and central conduction time was significantly increased. During recirculation these values showed an improvement when compared to ischemic but not to control values. Moreover at 8 days of recirculation they were still statistically different from control values. Felbamate administration at the dose of 150 mg kg(-1), immediately after recirculation was shown to ameliorate neurophysiological recovery following cerebral ischemia.
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In a group of subjects with chronic renal failure (CRF), we evaluated the leukocyte rheological activity, expressed as the filtration rate, the polymorphonuclear (PMN) membrane fluidity and the PMN cytosolic Ca2+ content. Using the St. George's Filtrometer, we determined the filtration rate of unfractionated, mononuclear and PMN leukocytes. Using the fluorescent probe 1.4-(trimethylamino)-phenyl-4-phenyl-hexatriene (TMA-DPH), we examined the PMN membrane fluidity and, using the Fura 2-AM, the PMN cytosolic Ca2+ content. From the results obtained, it is evident that only the initial relative flow rate of unfractionated leukocytes was significantly reduced in subjects with CRF, while the filtration parameters of mononuclear and PMN cells did not distinguish normals from CRF subjects. No variation was evident for the PMN membrane fluidity, while the PMN cytosolic Ca2+ content was significantly increased in CRF subjects. In these subjects no correlation was found between leukocyte filtration parameters, PMN membrane fluidity, PMN cytosolic Ca2+ content and plasma parameters (blood urea nitrogen and serum creatinine), reflecting the degree of the CRF. In conclusion, in CRF subjects the abnormality of the leukocyte flow properties was restricted to the initial flow rate of unfractionated leukocytes, whereas the increase of PMN cytosolic Ca2+ content might be attributed to PMN activation.
In a group of subjects (n = 35) with nonvalvular atrial fibrillation (AF) subdivided according to the presence (n = 16) or absence (n = 19) of left atrial spontaneous echocontrast (SEC), demonstrated using transthoracic and transesophageal echocardiography, we evaluated the principal haemorheological determinants: whole-blood viscosity, plasma and serum viscosity, haematocrit, whole-blood filtration (VBC) and mean erythrocyte aggregation (MEA). From the obtained data it was evident that in subjects with nonvalvular AF there was an impairment of the haemorheological profile that seemed more evident in AF subjects with SEC, although no significant haemorheological difference was present between AF subjects with and without SEC. These findings need to be underlined considering that this clinical condition is associated to a major thromboembolic risk.
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We evaluated polymorphonuclear membrane (PMN) fluidity in 32 subjects with type 1 diabetes mellitus, 38 subjects with type 2 diabetes mellitus and 38 normal control subjects, by marking intact and unstimulated PMN cells with the fluorescent probe 1-[4-(trimethylamino)phenyl]-6-phenyl-1,3,5-hexatriene (TMA-DPH). We also evaluated PMN cytosolic Ca2+ content by marking intact and unstimulated PMN cells with the fluorescent probe Fura 2-AM. PMN membrane fluidity differentiated normal subjects from type 1 and 2 diabetic subjects. The PMN cytosolic Ca2+ concentration did not discriminate type 1 and 2 diabetic subjects from normal control subjects. No statistical correlation was found between PMN membrane fluidity and PMN cytosolic Ca2+ concentration in any of the groups of subjects, nor were significant correlations found between PMN membrane fluidity and cytosolic Ca2+ concentration in several plasma parameters (serum glucose, cholesterol and triglycerides). In conclusion, in type 1 and 2 diabetic patients we found a decrease in PMN membrane fluidity and this decrease, which was greater in type 2 diabetic patients, may be a marker of PMN dysfunction.
We evaluated polymorphonuclear (PMN) filtration parameters, membrane fluidity and cytosolic Ca2+ content in 21 normal subjects and in 18 type II diabetics with macrovascular complications (MVC). Evaluations were carried out at baseline and after in vitro activation prolonged for 5 and 15 min. PMA (4-phorbol 12-myristate 13-acetate) and fMLP (N-formyl-methionyl-leucyl-phenylalanine) were used as stimulating agents. TMA-DPH (1-[4-(trimethylamino)phenyl]-6-phenyl-1,3,5-hexatriene) was used as fluorescent probe for the membrane fluidity tests and Fura 2-AM for the cytosolic Ca2+ content. A significant variation was evident in PMN filtration parameters at 5 and 15 min. No variation was present in PMN membrane fluidity and cytosolic Ca2+ content in normals. In type II diabetics with MVC, we found an increase solely in PMN cytosolic Ca2+ content after PMA activation and an early decrease in PMN membrane fluidity and a late increase in PMN cytosolic Ca2+ content after fMLP activation. After PMA activation alone (at 15 min), PMN filtration distinguishes normals from type II diabetics with MVC. The PMN filtration parameters behave similarly in the two groups, but PMN membrane fluidity and cytosolic Ca2+ content behave differently.
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Asthmatic subjects can only be allowed to take part in sport activities after a careful functional evaluation of pulmonary function. For sport disciplines which require a mainly anaerobic metabolism it is enough to evaluate the respiratory function at rest, while for sport disciplines which require a mainly aerobic metabolism it is necessary to use an exercise tolerance test. The functional tests used must be able to demonstrate not only the suitability of the subjects to take up a sport, but also to recommend an appropriate sport discipline.