[Histopathological study of the thyroid gland during primary hyperparathyroidism].
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Biomedical subjects
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The aims of the study were to clarify the cause of increased serum beta 2-microglobulin as a marker of thyroid hyperfunction. Serum beta 2-microglobulin was measured in 31 untreated hyperthyroid patients, all of them with normal renal function. Twenty-one subjects were affected by diffuse toxic goiter and 10 by toxic adenoma. Serum free thyroid hormones, TSH, anti-thyroglobulin and anti-microsomal antigen autoantibodies were determined, too. Thyroid hormone and creatinine levels did not differed between both sets of patients. beta 2-microglobulin was higher than normal in 90% of cases with diffuse toxic goiter and in 70% of those with toxic adenoma (p less than 0.05), but mean beta 2-microglobulin concentrations didn't differ between the two groups. No difference was found in beta 2-microglobulin levels in diffuse toxic goiter group according to the presence or absence of autoantibodies. beta 2-Microglobulin and thyroid hormones were not correlated in either diffuse toxic goiter and toxic adenoma groups. These data confirm the high prevalence of elevated beta 2-microglobulin concentrations in hyperthyroidism. As renal function was normal, this rise is due to beta 2-microglobulin overproduction. This increased production is a hormone mediated effect, even if lymphocyte activation may contribute in diffuse toxic goiter. beta 2-microglobulin is not correlated with thyroid hormone concentrations so that at present it isn't a useful marker of hyperthyroidism severity for practical purposes.
The aim of the study was to investigate bone metabolism in adult onset idiopathic myxedema. We studied 13 untreated patients (11 women and 2 men, age ranging 24-64 years) and, as a control group 15 healthy subjects (13 women and 2 men, age ranging 24-64 years). The hypothyroid group had significantly lower urinary excretion of hydroxyproline (4.40 +/- 0.63 vs. 8.60 +/- 1.3 mg/g, p less than 0.05) and serum concentration of osteocalcin (4.45 +/- 0.41 vs. 7.76 +/- 0.55 ng/ml, p less than 0.001). This low urinary excretion of hydroxyproline points to reduced osteoclastic bone resorption, while the low serum level of osteocalcin supports the view that osteoblastic bone formation is sluggish, too. Therefore bone metabolism in adult myxedema is characterized by a general reduction of remodelling. The stimulating actions of thyroid hormones on both bone resorption and new synthesis are further supported by the positive correlations between free hormone fractions and either urinary hydroxyproline and serum osteocalcin. Serum calcium, phosphorus, urinary calcium and phosphorus, and serum calcitrophic hormones (vitamin D, calcitonin, parathyroid hormone, measured as intact molecule) did not differed between the two groups; this finding might be related to the low fraction of active bone in hypothyroidism. The slow bone turnover seems to have few clinical consequences, but replacement therapy might produce accelerated osteoporosis, perhaps as a result of bone hypersensitivity to thyroid hormones.
Several bone metabolism biochemical parameters were measured to evaluate the increased serum osteocalcin (sBGP) in hyperthyroidism. Twenty patients (19 women and 1 man, aged 22-69) and 20 age and sex-matched healthy subjects were examined. The following serum measurements were performed: calcium, phosphate, mid-molecule PTH, calcitonin, 25OH vitD, alkaline phosphatase, total and free thyroid hormones; urinary excretion of calcium, hydroxyproline and creatinine was also measured. The results (mean +/- standard error) show significant increases of sBGP (16.4 +/- 1.02 ng/mL; p less than 0.001), serum calcium (10.1 +/- 0.1 mg/dL; p less than 0.001), alkaline phosphatase (144.0 +/- 11.7 UI/L; p less than 0.001), urinary calcium (315.6 +/- 48.5 mg/g urinary creatinine; p less than 0.001) and hydroxyproline (43.0 +/- 6.1 mg/g urinary creatinine; p less than 0.001). A significant correlation between total and free thyroid hormones and sBGP was found. Accelerated bone turnover in hyperthyroid patients is therefore confirmed: both osteoclastic bone resorption, as suggested by increased serum and urinary calcium and urinary hydroxyproline, and osteoblastic bone formation, as suggested by increased serum osteocalcin and alkaline phosphatase, are stimulated.
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We studied the prevalence and the pathogenesis of hypogonadism in 16 male patients affected by idiopathic haemochromatosis. Thirteen patients were untreated, 14 had liver cirrhosis; alcohol intake was actually less than 80 g/die. LH and FSH were measured in the basal state and after iv. bolus of 100 micrograms of synthetic gonadotropin-releasing hormone. Plasma concentrations of testosterone, LH-FSH were determined, respectively, by RIA and LIA. Ten patients complained of loss of libido and potency (Group A): this group, as compared to controls, had significant reductions of testosterone, basal gonadotropins and pituitary responses. Nine of these patients disclosed testicular hypotrophy and low blood testosterone: 8 showed hypogonadotropic hypogonadism with low testosterone and LH-FSH responses, often accompanied by reduced basal concentrations of gonadotropins; one patient had a primitive testicular failure with low testosterone but a high response of LH to the GnRH. The other 6 patients had normal sexual activity (Group B): their testicular volumes and testosterone concentrations were normal, but 2 patients disclosed both LH and FSH hyperresponsiveness to the GnRH, which suggests an early primitive testicular failure. Our data emphasize the high prevalence of hypogonadism in male haemochromatosis subjects and disclose that sexual activity, testicular volume and laboratory results are tightly correlated. Stimulation with GnRH proved that hypothalamic-pituitary dysfunction is by far the most frequent cause of testicular failure in idiopathic haemochromatosis.
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