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Biomedical subjects

J Bronský

Publications and source records attributed to J Bronský.

7 recordsLinked to original sources

Dynamic changes of orexin A and leptin in obese children during body weight reduction.

In this study, we describe changes of plasma levels of the hypothalamic neuropeptide orexin A in obese children during the reduction of body weight and its relationship to other biochemical and anthropometrical parameters. We measured orexin A fasting plasma levels by the RIA method in 58 obese children--33 girls and 25 boys; mean age 13.1+/-0.38 years (range 7-18.5) before and after 5 weeks of weight-reduction therapy. Leptin, IGF-1, and IGFBP-3 levels were measured in all the subjects and were compared to orexin A levels and anthropometrical data. Average weight in subjects before weight-reduction was 74.2+/-2.79 kg and after weight-loss 67.4+/-2.60 kg (p<0.0001). Orexin A levels before the therapy were 33.3+/-1.97 pg/ml and after the therapy 51.7+/-3.07 pg/ml (p<0.0001). Levels of orexin A were not significantly different between girls and boys (p=0.7842). We found negative correlation between orexin A and age (r = -0.5395; p<0.0001), body height (r = -0.4751; p=0.0002), body weight (r = -0.4030; p=0.0017) and BMI (r = -0.2607; p=0.0481). No correlation was found between orexin A and IGF-1, IGFBP-3 or leptin. Orexin A plasma levels increased during body weight loss, whereas the reverse was true for leptin levels. These findings support the hypothesis that orexin A may be involved in regulation of nutritional status in children.

Adolescent↗

[Ghrelin--structure, function and clinical applications].

Ghrelin is a peptidic hormone composed of 28 aminoacid residues. It is produced by enteroendocrine cells of stomach and intestine. It is also produced in pancreas, kidney, placental tissue, thyroid gland, hypothalamus, and hypophysis. Gastrectomy leads to 65-80% decrease of plasma levels of ghrelin. In human organism, ghrelin stimulates secretion of growth hormone, prolactin, and ACTH. Ghrelin also has orexigenic activity (increases food intake), influences the sleep/wake cycle, gastric motility and secretion, cardiovascular functions, regulates endocrine function of pancreas and metabolism of glucose and shows an antiproliferative effect. Ghrelin is an important regulatory part of the homeostasis of the organism, and iterconnects neuroendocrine and metabolic response of the organism to starvation, and it is considered as a counterpart to leptin. Ghrelin was discovered by Japanese scientists in 1999 as a natural ligand of an "orphan" receptor GHS1a, which is specific for a group of synthetic peptides (growth hormone secretagogues--GHS) stimulating secretion of growth hormone. Plasma levels of ghrelin reflect short-time changes of food intake, as well as long-time changes of the nutritional state of the organism. Plasma levels of ghrelin are decreased after food intake and in obese humans, and they are increased during starvation and in patients with mental anorexia. Plasma levels of ghrelin in humans correlate negatively with body mass index, amount of body fat, size of adipocytes, and plasma levels of insulin, glucose, and leptin. Thus, ghrelin probably plays a role as a metabolic signal of hunger.

Energy Metabolism↗

[Activated factor XII in patients with hyperglycaemia and dyslipidaemia].

BACKGROUND: Increased plasma levels of activated factor FXII (FXIIa) are associated with increased risk of atherosclerosis and coronary heart disease. There are increased levels of FXIIa in patients with dyslipidaemia and also elevated levels of FXIIa have been reported in patients with diabetes mellitus. No studies were reported whether FXIIa correlates rather with plasma glucose levels or with other metabolic markers like hypertriacylglycerolemia. METHODS: We measured plasma FXIIa levels, triacylglycerols, uric acid and glucose in a group of 158 hyperglycaemic patients with P-glucose more than 8 mmol/l and variable serum lipid parameters [cholesterol, triacylglycerols, HDL-cholesterol, LDL-cholesterol, lipoprotein (a), apolipoprotein AI, apolipoprotein B] in a group of 55 patients of lipid clinic on hypolipidaemic treatment (statins, fibrates). RESULTS AND CONCLUSION: The comparison of FXIIa with the age in the group of hyperglycaemic patients has shown that the number of patients with FXIIa more than 2.5 microg/l is growing with increasing age. Low concentration of FXIIa was observed in the youngest age group (10-30 years), where all values are within the reference ranges. We proved positive correlation between plasma FXIIa levels and age, triacylglycerols, uric acid. No correlation was found between plasma FXIIa and glucose in both groups.

Adolescent↗

Amylin fasting plasma levels are decreased in patients with osteoporosis.

Amylin is a polypeptide hormone produced in pancreatic beta-cells that belongs to the family of calcitonin gene-related peptides. There is a 20% sequence homology between amylin and calcitonin and 44% homology with calcitonin gene-related peptide. Amylin and its fragments stimulate the proliferation of osteoblasts, inhibit bone resorption, and increase bone density and the amount of bone mass. We measured amylin total and unreduced amylin fasting plasma levels in patients with osteoporosis ( n=28; 3 men, 25 women; mean age 65 years), type 2 diabetes mellitus ( n=10; 5 men, 5 women; 64 years), and in the control group ( n=24; 11 men, 13 women; 53 years) using an ELISA kit with immunofluorescent detection (Linco). Amylin total plasma levels in patients with osteoporosis were 3.33+/-0.46 pmol/l (mean+/-SEM), in patients with type 2 diabetes 6.29+/-1.47 pmol/l (mean+/-SEM), and in the control group 8.48+/-3.12 pmol/l (mean+/-SEM). Mean plasma levels were lower in patients with osteoporosis than in patients with type 2 diabetes and in the control group. Unreduced amylin plasma levels in patients with osteoporosis ( n=28) were 2.51+/-0.87 pmol/l (mean+/-SEM), in patients with type 2 diabetes ( n=10) 4.15+/-0.95 pmol/l (mean+/-SEM) and in the control group ( n=5) 13.50+/-3.94 pmol/l (mean+/-SEM). Plasma levels were significantly lower in patients with osteoporosis than in patients with type 2 diabetes ( P<0.01) and in the control group ( P<0.001). Amylin plasma levels are decreased in patients with osteoporosis. Amylin deficiency in these patients may contribute to the development of osteoporosis. Amylin should be investigated in relation to the pharmacological treatment of osteoporosis.

Age Factors↗

Inhibin B, follicle stimulating hormone, luteinizing hormone and testosterone during childhood and puberty in males: changes in serum concentrations in relation to age and stage of puberty.

Inhibin B is a gonadal dimeric polypeptide hormone that regulates synthesis and secretion of follicle stimulating hormone (FSH) in a negative feedback loop. The aim of the present study was to determine changes in serum inhibin B, gonadotropins and testosterone concentrations during childhood and puberty in males. We studied the relationship between circulating inhibin B, gonadotropins and testosterone in serum of healthy boys during the first two years of life and then in pubertal development. Using a recently developed two-side enzyme-linked immunosorbent assay (ELISA), inhibin B levels were measured in the serum of 78 healthy boys divided into eleven age groups from birth to the end of pubertal development. In addition, serum levels of gonadotropins and testosterone were measured. Serum inhibin B, gonadotropins and testosterone increased during the first months of postnatal life. A peak in serum inhibin B and gonadotropins concentrations was observed around 3-4 months of age. There was a significant positive correlation between serum inhibin B and gonadotropins and testosterone levels during the first 2 years of life. After this early increase, serum inhibin B, gonadotropins and testosterone levels decreased significantly and remained low until puberty followed by an increase beginning with the onset of puberty. Serum levels of inhibin B reached a peak at stage G3 of puberty. Around midpuberty, inhibin B lost its positive correlation with luteinizing hormone (LH) and testosterone from early puberty, and developed a strong negative correlation with FSH, which persisted into adulthood. We conclude that inhibin B plays a key role in the regulation of the hypothalamic-pituitary-gonadal hormonal axis during male childhood and pubertal development. Inhibin B is a direct marker of the presence and function of Sertoli cells and appears to reflect testicular function in boys.

Aging↗

Inhibin B, follicle stimulating hormone, luteinizing hormone, and estradiol and their relationship to the regulation of follicle development in girls during childhood and puberty.

Inhibin B, produced by granulosa cells in the ovary, is a heterodimeric glycoprotein suppressing synthesis and secretion of the follicle stimulating hormone (FSH). The aim of the present study was to determine hormone profiles of inhibin B, FSH, luteinizing hormone (LH), and estradiol in girls during childhood and puberty and to evaluate whether inhibin B is a marker of follicle development. We examined the correlation between inhibin B and gonadotropins and estradiol during the first two years and across the pubertal development. Using a specific two-side enzyme-linked immunosorbent assay (ELISA), inhibin B levels were measured in the serum of 53 healthy girls divided into 8 groups according to age. In addition, serum FSH, LH, and estradiol were measured by chemiluminescent immunoassay in all serum samples. A rise in serum levels of inhibin B (55.2+/-7.3 ng/l, mean +/- S.E.M.) and FSH (1.78+/-0.26 UI/l), concomitant with a moderate increment of serum LH (0.36+/-0.09 UI/l) and estradiol (45.8+/-12.2 pmol/l) concentrations was observed during the first three months of life and declined to prepubertal concentrations thereafter. A strong positive correlation between inhibin B and FSH (r = 0.48, p<0.05), LH (r = 0.68, p<0.001) and estradiol (r = 0.59, p<0.01) was demonstrated during the first 2 years of life. A rise in serum levels of inhibin B, FSH, LH, and estradiol was found throughout puberty. Inhibin B had a strong positive correlation with FSH (stage I of puberty: r = 0.64, p<0.05; stage II of puberty: r = 0.86, p<0.01), LH (I: r = 0.61, p<0.05; II: r = 0.67, p<0.05), and estradiol (II: r = 0.62, p<0.05) in early puberty. From pubertal stage II, inhibin B lost this relationship to gonadotropins and estradiol. Serum inhibin B and FSH levels increased significantly during pubertal development, with the highest peak found in stage III of puberty (133.5+/-14.3 ng/l), and decreased thereafter. In conclusion, inhibin B is produced in a specific pattern in response to gonadotropin stimulation and plays an important role in the regulation of the hypothalamic-pituitary-gonadal axis during childhood and puberty in girls. Inhibin B is involved in regulatory functions in developing follicles and seems to be a sensitive marker of ovarian follicle development.

Adolescent↗

[Amylin--its physiological role in humans].

Amylin is a polypeptide hormone composed of 37 aminoacids, that is produced in pancreatic beta-cells, and that was discovered in 1987. Releasing amylin into the circulation is increased postprandially, proportionally to the amount of digested food. Daily profile of amylin plasma levels corresponds to the profile of insulin. Normal plasma levels of amylin vary from 4 pmol/L (fasting) to 25 pmol/L (postprandially). Receptors for amylin are highly concentrated especially in the central nervous system--area postrema and nucleus accumbens. There is a 20% sequence homology between amylin, calcitonin and adrenomedullin and 44% homology with calcitonin gene--related peptide. Amylin contributes to the regulation of postprandial glycaemia by suppression of glucagon release and by regulation of gastric emptying. Deficit os amylin is typical for diabetes mellitus type 1 or for the late stage of diabetes type 2. Insulin resistance in obese patients is characterized by increased levels of both insulin and amylin. Amylin decreases food intake and participates in the regulation of body weight. Some biochemical forms of amylin cause proliferation of osteoblasts and inhibit bone resorption. Amylin modulates insulin sensitivity of skeletal muscle, contributes to the regulation of blood pressure and causes vasodilatation.

Amyloid↗