Search PubMed⌕ Search

Biomedical subjects

M Vigas

Publications and source records attributed to M Vigas.

At least 37 records · Page 2Linked to original sources

Increased demand for steroid therapy in hyperprolactinemic patients with rheumatoid arthritis.

The role of increased plasma prolactin (PRL) in rheumatoid arthritis (RA) is not fully explained. The aim of this study was to compare the clinical features and the treatment administered in RA patients with normal and elevated plasma PRL concentrations. Forty-nine patients with rheumatoid arthritis and 16 healthy subjects were included in this study In healthy controls, PRL concentrations were 7.6 micro/l (median), in 34 patients plasma PRL was less than 20 micro/l (9.9 micro/l) and in 15 patients it was elevated, with a median of 26.7 micro/l. No differences in clinical features were found compared with normal or increased plasma PRL. The introduction of corticoid therapy produced a significant difference. Steroid therapy was administered to 93% of the patients with hyperprolactinemia, compared with 59% of those with normal PRL concentrations. Daily prednisone doses higher than 5 mg were administered to 43% of the patients with elevated PRL, compared with 25% of patients with normal prolactin concentrations. In conclusion, the clinical feature of patients with rheumatoid arthritis did not differ in subjects with elevated PRL concentrations and in those with normal concentrations. The difference between these two groups was in the higher demand for steroid therapy in patients with hyperprolactinemia.

Adult↗

Effect of microgravity on plasma catecholamine responses to stressors during space flight.

The effect of microgravity on the sympathicoadrenal system (SAS) activity in humans and animals has not yet been clarified. Our previous studies suggested that the SAS activity, evaluated by circulating and/or urinary catecholamine (CA) levels in astronauts during space flights, was found to be rather unchanged. However, CA levels were measured in astronauts only at rest conditions. The aim of the present study was to investigate effect of microgravity during space flight and post-flight readaptation on responsiveness of the SAS to somatic and psychic stressors evaluated by levels of catecholamines and their metabolite in the blood of the Slovak cosmonaut during his stay on board the space station Mir.

Adaptation, Physiological↗

Plasma hormone levels in human subject during stress loads in microgravity and at readaptation to Earth's gravity.

In great part of the investigations of endocrine system functions in astronauts during space flights the plasma levels of hormones and metabolites were determined only in resting conditions, usually from one blood sample collection. Such levels reflected the psychical and physical state and new hormonal homeostasis of organism at the time of blood collection, however, the functional capacity of neuroendocrine system to respond to various stress stimuli during space flight remained unknown. The aim of present investigations was to study dynamic changes of hormone levels during the stress and metabolic loads (insulin induced hypoglycemia, physical exercise and oral glucose tolerance test) at the exposure of human subject to microgravity on the space station MIR. The responses of sympatico-adrenomedullary system to these stress and workloads were presented by Kvetnansky et al.

Adaptation, Physiological↗

Prolactin levels and autoantibodies in female patients with systemic lupus erythematosus.

We investigated the relationships between prolactin (PRL) levels and antibody occurrence in systemic lupus erythematosus (SLE). No significant association between PRL levels and the majority of the autoantibodies studied (anti-U1 RNP, anti-rRNP, anti-Sm, anti-dsDNA, anti-DNP, auto-LCA, anti-EACA) could be confirmed (P > 0.05), anti-Ro/SSA antibodies being an exception. Our results showed significantly increased frequencies of these antibodies in the group of female SLE patients with normal PRL levels (< 20 micrograms/L): anti Ro/SSA in 53% (P < 0.025, chi 2 = 5.80, RR = 4.0) and anti-Ro/SSA + anti-Ro/La in 60% (P < 0.05, chi 2 = 4.05) compared with female SLE patients with hyperprolactinemia.

Adult↗

Insulin, catecholamines, glucose and antioxidant enzymes in oxidative damage during different loads in healthy humans.

Exercise, insulin-induced hypoglycemia and oral glucose loads (50 g and 100 g) were used to compare the production of malondialdehyde and the activity of antioxidant enzymes in healthy subjects. Twenty male volunteers participated in the study. Exercise consisted of three consecutive work loads on a bicycle ergometer of graded intensity (1.5, 2.0, and 2.5 W/kg, 6 min each). Hypoglycemia was induced by insulin (Actrapid MC Novo, 0.1 IU/kg, i.v.). Oral administration of 50 g and 100 g of glucose was given to elevate plasma glucose. The activity of superoxide dismutase (SOD) was determined in red blood cells, whereas glutathione peroxidase (GSH-Px) activity was measured in whole blood. The concentration of malondialdehyde (MDA) was determined by HPLC, catecholamines were assessed radioenzymatically and glucose was measured by the glucose-oxidase method. Exercise increased MDA concentrations, GSH-Px and SOD activities as well as plasma noradrenaline and adrenaline levels. Insulin hypoglycemia increased plasma adrenaline levels, but the concentrations of MDA and the activities of GSH-Px and SOD were decreased. Hyperglycemia increased plasma MDA concentrations, but the activities of GSH-Px and SOD were significantly higher after a larger dose of glucose only. Plasma catecholamines were unchanged. These results indicate that the transient increase of plasma catecholamine and insulin concentrations did not induce oxidative damage, while glucose already in the low dose was an important triggering factor for oxidative stress.

Adult↗

Changes of serum TSH level during oral glucose tolerance test: comparison of morning and evening test with plain circadian TSH rhythm.

OBJECTIVE: To compare the changes of TSH level in serum during oral glucose tolerance test (OGTT) with those resulting from a plain circadian rhythm and, in addition, to compare such changes between the morning and evening hours. METHODS: Oral glucose tolerance tests were performed in groups of 8-20 adults after the oral administration of glucose (75 g in 400 ml tap water) at 8.00, 10.00 and 20.00 h. Blood samples for the estimation of TSH (supersensitive IRMA method) were taken in 30 min intervals for following 3 hours. In the same groups of subjects the blood samples were obtained between 8.00 and 13.00 h or between 20.00 and 23.00 h one week later for the assessment of plain circadian rhythm of TSH levels. RESULTS: The level of TSH in a group subjected to OGTT at 8.00 h was significantly decreased (P<0.05) between 8.30 and 10.30 h, i.e. 30-150 min after glucose administration which was parallel to the circadian decrease found in the same subjects. However, this was followed by an increase of TSH up to the original level reached at 11.00 h which was contrasting to a circadian decrease. Similar pattern was found also when OGTT was started at 10.00 h. In a group subjected to the evening OGTT at 20.00 h similar decrease of TSH level was found at 21.00 h which was contrasting to the circadian increase. However, this was followed by a remarkable increase of TSH level between 21.00 and 23.00 h which was parallel to the circadian trend, but much more abrupt than that found without the previous administration of glucose. CONCLUSIONS: In both the morning and evening OGTT a decrease of TSH level was found between 30 and 90 min after glucose administration which was followed by an increase between 90 and 180 min after that. The decrease during the morning test was parallel to the circadian trend, while the increase was opposite to that. However, an inverse figure was found in the evening test, the decrease of TSH being opposite and following increase being parallel to the circadian trend.

Adult↗

Role of body temperature in exercise-induced growth hormone and prolactin release in non-trained and physically fit subjects.

OBJECTIVE: To study the role of physical fitness and hyperthermia in inducing growth hormone (GH) and prolactin (PRL) responses to exercise in physically fit and in non-trained healthy subjects. METHODS: Ten wrestlers preparing for international competition (mean age 19), and nine untrained healthy males (mean age 21), volunteered in the study. They were exposed twice to the exercise consisting of 27 min swimming, freestyle, in water of 29 or 36 degrees C, with last 3 min increased to maximal effort. Measurement of blood pressure, heart rate, sublingual temperature and sampling of blood was performed before exercise, immediately after and after a 30-min period of rest. RESULTS: Body temperature, heart rate, systolic blood pressure and plasma growth hormone (GH) were significantly elevated in both groups after swimming in water of either temperature (P < 0.01). The difference between GH responses to swimming in water of 29 degrees C vs 36 degrees C was significant only in non-trained subjects and was associated with the changes of body temperature. A rise in PRL concentration was found only in exercise in warmer water (P < 0.01). There were no statistical differences between athletes and controls in any response to swimming in water of the same temperature. CONCLUSIONS: The augmented release of GH and PRL was the result of direct stimulation by increased body temperature.

Adult↗

Effect of hyperthermic water bath on parameters of cellular immunity.

Effects of hyperthermic water bath on selected immune parameters (lymphocyte subpopulations, natural killer (NK) cell counts and their activity) were studied in a group of 10 volunteers. Application of hyperthermic water bath (both topical and whole-body) was followed by a significant reduction of relative B lymphocyte counts. Whole-body hyperthermic water bath reduced relative total T lymphocyte counts, increased relative CD8+ T lymphocyte and NK cell counts and increased NK activity. Whole-body hyperthermic bath increased somatotropic hormone (STH) activity in eight out of 10 volunteers; higher relative counts of CD8+ lymphocytes and NK cells were observed compared with the group of volunteers not responding to hyperthermic water bath by STH secretion. In five volunteers STH was released in response to local hyperthermic water bath and the NK activity of lymphocytes also increased but their relative counts did not. The results suggest that these increases in CD8+ lymphocyte and NK cell counts are probably dependent on increased STH production.

Adult↗

Malondialdehyde, lipofuscin and activity of antioxidant enzymes during physical exercise in patients with essential hypertension.

DESIGN: To clarify the role of oxidative damage in essential hypertension, levels of lipid peroxidation products (malondialdehyde and lipofuscin) and activity of antioxidant enzymes (superoxide dismutase and glutathione peroxidase) were examined during a short period of physical exercise. PATIENTS AND METHODS: We studied 11 male patients with mild to moderate essential hypertension in World Health Organization classes I or II and 10 healthy male controls. Physical exercise was performed on a bicycle ergometer at graded intensities of 1.0, 1.5 and 2.0 W/kg body weight Plasma concentrations of lipofuscin, malondialdehyde, epinephrine, norepinephrine, insulin, free fatty acids and glucose were determined. Superoxide dismutase activity was analysed in erythrocytes and glutathione peroxidase activity in whole blood. RESULTS: Concentrations of lipofuscin and malondialdehyde were significantly elevated in hypertensive patients. Superoxide dismutase activity was not different between groups, while glutathione peroxidase activity was significantly decreased in hypertensive subjects. During exercise, the concentration of malondialdehyde and antioxidant enzyme activities increased significantly in both groups. No differences were found in absolute increases between the normotensive and hypertensive subjects. The levels of glucose, insulin and free fatty acids were similar in both groups. Basal concentrations of catecholamines and also the exercise-induced increases were lower in hypertensive patients. CONCLUSIONS: Our results indicate increased oxidative damage in patients with essential hypertension, which might be caused by a decrease in the activity of glutathione peroxidase. The ability of superoxide dismutase and glutathione peroxidase to respond to increased production of reactive oxygen species during a short period of physical exercise was not impaired in hypertensive subjects.

Adult↗

Plasma cytokine concentration and the cytokine producing ability of whole blood cell cultures from healthy females with pharmacologically induced hyperprolactinemia.

We investigated the in vitro effect of domperidone-induced hyperprolactinemia on plasma cytokine concentration and blood leukocyte cytokine production in healthy female volunteers. No changes were found in the plasma concentration of interferon (IFN)-gamma, tumor necrosis factor (TNF)-alpha, interleukin (IL)-4, IL-10, IL-6 and IL-13 during hyperprolactinemia when compared with control values. Using unseparated blood leukocytes, we found that the spontaneous production of IL-6 (4-8 h) and transforming growth factor (TGF)-beta 1 (2-4 h) was significantly decreased and that the in vitro stimulated production of IFN-gamma (2-8 h) and TNF (4 h) was significantly increased compared with control. Our data concerning the increased IFN-gamma and TNF producing capacity of unseparated leukocytes during pharmacologically induced hyperprolactinemia strongly support the possibility that the lymphocyte production of these cytokines can be rapidly amplified by prolactin via a priming mechanism.

Adult↗

The hypothalamic-pituitary response in SLE. Regulation of prolactin, growth hormone and cortisol release.

It has been suggested that neuroendocrine regulation plays an important role in the pathogenesis and activation of autoimmune diseases. The aim of this investigation was to clarify the hypothalamic-pituitary response to a well-defined stimulus under standardised conditions in patients with SLE. Plasma concentrations of prolactin (PRL), growth hormone (GH) and cortisol were determined in venous blood drawn through an indwelling cannula during insulin-induced hypoglycaemia (0.1 U/kg b.w., i.v.) in ten patients and in 12 age-, gender- and weight-matched healthy subjects. Basal PRL concentrations were higher in patients vs healthy controls (12 vs 6 ng/ml, P < 0.01), though still within the physiological range. Insulin-induced plasma PRL and GH were significantly increased both in patients and healthy subjects; however, the increments or areas under the curves were not different in the two groups. Plasma cortisol response showed moderate attenuation in patients. Sensitivity of pituitary lactotrothrops to thyrotropin-releasing hormone (TRH) administration (200 microg, i.v.) was the same in patients and control subjects. In SLE patients with low activity of the disease the sensitivity of pituitary PRL release to TRH administration remained unchanged. The hypothalamic response to stress stimulus (hypoglycaemia) was comparable in patients and healthy subjects.

Adult↗

Correlation of M235T DNA polymorphism with cardiovascular and endocrine responses during physical exercise in healthy subjects.

In our experiments, we evaluated the possible effect of M235T molecular variant of the angiotensinogen gene on the response to a physical workload. A group of volunteers was composed of healthy male subjects, approximately of the same weight and height, same age and not actively trained. None of these subjects was under any medication. Blood sampling was carried out via an indwelling catheter. Besides blood pressure and heart rate, angiotensin I, angiotensin II, epinephrine and norepinephrine concentrations were measured in the blood. Our results suggest that only the response of diastolic blood pressure during submaximal exercise corresponded to the presence of M235T molecular variant. In all other parameters we found no significant correlation of the response with the M235T molecular variant.

Adult↗

Plasma catecholamines and renin activity in wrestlers following vigorous swimming.

Cardiovascular and neuroendocrine responses to exercise in a physically fit and an untrained group of young healthy subjects were compared to study the significance of physical fitness for performance in a discipline for which the athletes were not trained. Ten wrestlers of national rank prepared for an international competition (age 18 years) and 9 untrained healthy males (age 21 years). Exercise consisted of 27-min swimming, freestyle, in water of 29 degrees C, with last 3 min increased to maximal effort. The blood pressure, heart rate and sublingual temperature were measured and blood samples were withdrawn before exercise, immediately after and after a 30 min period of rest. Catecholamines were analyzed by radioenzymatic method and plasma renin activity (PRA) using commercial kits. Systolic blood pressure and heart rate after swimming were increased comparably in the two groups, diastolic pressure was unchanged in the controls and decreased in the wrestlers. Plasma cortisol remained unchanged. Plasma glucose tended to increase in the controls and so decrease in wrestlers, with a significant difference between them after swimming (p < 0.05). However, plasma adrenaline was concomitantly increased in both groups (p < 0.01). Noradrenaline and PRA were increased after swimming in both the control and trained group. The increments of noradrenaline and PRA in wrestlers were significantly reduced compared to the control group (p < 0.01, p < 0.05, respectively). Higher physical fitness in athletes significantly reduced plasma noradrenaline and angiotensin responses to maximal exercise demanding special skill in work performance which had not been included in their training program. Training of wrestlers did not cause an exaggerated plasma adrenaline response to exercise.

Adult↗

Relationship between endocrine, immune, and clinical variables in patients with systemic lupus erythematosus.

OBJECTIVE: To assess the frequency of increased plasma prolactin (PRL) in patients with systemic lupus erythematosus (SLE) and to evaluate its relationship to other hormonal and immune variables. METHODS: Thirty-five patients with SLE with various levels of disease activity were studied. Plasma PRL, cortisol, growth hormone (GH) were determined by radioimmunoassay and interleukin 6 (IL-6) by ELISA: SLE activity was evaluated using the European Consensus Lupus Activity Measurement (ECLAM). RESULTS: Increased plasma PRL concentration (> 20 ng/ml) was recorded in 11 patients (31%). No correlation was found between plasma PRL and GH, IL-6, cortisol, or C-reactive protein, nor was any significant correlation observed between plasma PRL and the ECLAM score. Patients with hyperprolactinemia were, however, found to have been treated with higher doses of prednisone therapy than patients with normal plasma PRL. Further analysis of the relationship of plasma PRL and therapy showed that patients with SLE selected by the attending physician for prednisone therapy in doses > or = 10 mg/day were more frequently hyperprolactinemic. CONCLUSION: Our findings that patients with SLE with a more active form of the disease and who are less responsive to therapy had increased plasma PRL levels more frequently may be indicative of a potential relationship of hyperprolactinemia to severity of disease.

Adult↗

[Activation of the neuroendocrine system during changes in homeostasis during stress conditions].

Neuroendocrine response to stress stimuli is aimed to maintain body homeostasis. The activation of the neuroendocrine system is accomplished mainly by two ways: by feedback regulation based on the recognition of altered metabolic homeostasis by appropriate receptors sending the signal into the CNS, and by forward regulation involving a direct stimulation of the neuroendocrine system by a central command coming from an activated brain regulatory center. With regard to mechanisms of neuroendocrine activation, the signal specificity and site of its origin are of particular importance. The significance of the signal in neuroendocrine responses has been evaluated in three different stress conditions: hypoglycemia, surgical trauma and dynamic physical exercise. The stimulus inducing neuroendocrine response during hypoglycemia is the glucopenia. The signal for the activation of the neuroendocrine response is generated in glucosensitive cells which are not located in a single brain structure (hypothetical glucostat). The signal for growth hormone, vasopressin and oxytocin release is produced in brain structures protected by the blood-brain barrier, that for ACTH release in regions both protected and unprotected by the barrier, while the signal for prolactin release is generated in tissues lacking the blood-brain barrier. The neuroendocrine response during surgical trauma is activated by a signal formed in the damaged tissue reaching the CNS by neural pathways. Moreover, cytokins may participate on endocrine stimulation in those surgical interventions in which a large amount of bacterial endotoxins is released. During a complicated surgery, e.g. during a bypass other signals and modifying factors, such as hypothermia, dilution of blood, hypoperfusion of organs, rewarming of the body and hormone degradation in the oxygenator are important. On the On the other hand, during a short-term dynamic exercise, a forward regulation by a central signal from the activated CNS motor center comes into play with the consequent release of catecholamines, growth hormone, etc. In the control of some other hormones (beta-endorphin, partly ACTH) and especially during a long term exercise, neural signals from working muscles (feedback) are also involved. During a static exercise mainly catecholamines triggered by signals from working muscle cells are activated. The understanding of the signal and mechanisms of neuroendocrine activation during stress is indispensable for selective modulation of physiological and pathological responses.

Central Nervous System↗

Head-up tilt and lower body suction: comparison of hormone responses in healthy men.

The purpose of this study was to compare, in the same subjects, hormonal responses to 30-min head-up tilt (HUT) and lower body suction (LBNP) of different intensity (24 degrees and 70 degrees, and 15 and 35 mm Hg, respectively). Basal pooled individual data from -10 min (n = 32) were within normal reference limits: norepinephrine (NE) averaged 318 +/- 23 pg/ml; epinephrine, 34.0 +/- 5.5 pg/ml; plasma renin activity (PRA), 0.72 +/- 0.08 ng ATII/ml/h; aldosterone, 164 +/- 20 pg/ml; atrial natriuretic peptide (ANP), 29.9 +/- 2.0 pg/ml; cGMP, 6.29 +/- 0.59 mmol/l; cortisol, 95.7 +/- 5.8 ng/ml; and ACTH, 50.3 +/- 2.6 pg/ml. The low-level stimuli failed to induce consistent changes in hormone levels. From the onset of the stimulus (minute 0) to its termination (minute 30), norepinephrine (NE) increased by 101% with LBNP-35, and by 70% with HUT70, respectively. The NE increase with LBNP-35 was higher (p < 0.05) than with HUT70. Epinephrine rose with HUT70 (by 162%) only. PRA increased by 157% with LBNP-35, and by 119% with HUT70, respectively; these responses were not significantly different. Aldosterone rose equally (by 85 and 89%) with LBNP-35 and HUT70 but not with the low-level stimuli. No consistent changes were observed in ANP, c-GMP or ACTH concentrations. Cortisol values fell during the LBNP and HUT24 situations but rose transiently after HUT70. We conclude that the hormones investigated respond differently to head-up posture and lower body suction and in a specific manner. Greater effects of high-level stimuli (HUT70, LBNP-35) were noted as compared to low-level stimuli (HUT24, LBNP-15). The application of combined sets of models stimulating the cardiovascular system may aid in the analysis of responses of hormonal systems in man.

Adult↗

Vasopressin and oxytocin in stress.

Though oxytocin and vasopressin are similar in structure and are produced in the same brain regions, they show specific responses under stress conditions. In humans, increases in peripheral blood vasopressin appear to be a consistent finding during many acute stress situations, while in rats, vasopressin secretion is unresponsive to several stimuli known to induce ACTH and catecholamine release. Even decreases in vasopressin levels during stress were described. In accordance with others, we observed enhanced vasopressin release in response to stress stimuli with an osmotic component such as hypertonic saline injection but also during exposure of rats to a warm environment. Immobilization stress which fails to induce vasopressin release was reported to increase hypothalamic vasopressin mRNA and plasma vasopressin levels in chronically adreno-demedullated rats. Unlike vasopressin, oxytocin may be considered a typical stress hormone responding to osmotic as well as other stress stimuli. We found that acute exposure of rats to immobilization stress resulted in an increase in oxytocin mRNA level. In addition, we have shown that magnocellular neurons of the paraventricular nucleus, but not the supraoptic nucleus, are essential for oxytocin release during immobilization stress. The release of posterior pituitary hormones represents an important component of the stress response.

Animals↗