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Biomedical subjects

T Venditto

Publications and source records attributed to T Venditto.

8 recordsLinked to original sources

Endocrine secretions under abnormal light-dark cycles and in the blind.

Both endogenous and exogenous factors are involved in regulation of endocrine secretions. Among the exogenous ones, light plays an important role both in animals and in humans. Pineal gland mediates light action on the endocrine system, by means of variations of melatonin (MT) secretion. Here we discuss about the influence of abnormal light-dark cycles and in particular of blindness on pineal and pituitary secretions and on those of correlated glands. MT secretion is usually inhibited by light: thus it reaches the highest levels at night. Exposure to short or long photoperiod causes variations in circadian or infradian MT rhythmicity. Blind patients can show higher daytime levels with a phase-advanced or phase-delayed circadian rhythm. Lack of light stimulus affects cortisol rhythm shifting the zenith of secretion and inducing a free-running rhythm. Blindness can abolish nocturnal growth hormone (GH) peak and impair the GH response to some stimuli; moreover it impairs the growth of affected patients. Light stimulus influences favorably gonadal function both in animals and in man. In animals, sexual activity and gonadal function decline during the seasons with reduced luminosity. A similar finding has been described in women living in a region with a strong seasonal contrast in luminosity. Blindness can impair luteinizing hormone, follicle-stimulating hormone, prolactin and testosterone secretion in prepubertal boys causing pubertal delay or more severe hypogonadism; it can affect pubertal development and fertility in women. Light can influence thyroid function in animals. Lack of light stimulus in blind man seems to cause different effects on thyroid function before and after puberty. Increase of free thyroid hormone levels has been found in prepubertal but not in adult blind patients, probably due to a resetting of the threshold for thyrotropin feedback suppression after puberty in these patients.

Animals↗

Twenty-four hour melatonin pattern in acromegaly: effect of acute octreotide administration.

We investigated the melatonin (MT) circadian rhythm before and after somatostatin (octreotide) acute administration in ten subjects (4 M, 6 F. 23-52 yr old) with active acromegaly due to pituitary microadenoma. Blood samples were drawn every 2 hours over a 48-h span; after 24-h basal blood collection, octreotide (Sandostatin, Sandoz) 100 micrograms sc/8 h was administered. As control, 7 healthy adult subjects (3M, 4F; 26-50 yr old) were studied in basal condition over a 24-h span. Plasma MT and GH levels were measured by RIA in each sample, IGF-1 levels were measured by immunoradiometric assay in basal and after octreotide morning samples. The comparisons were made by Mann-U-Withney and Wilcoxon test as appropriate; the existence of a MT circadian rhythm was validated by cosinor analysis; GH and MT values were correlated by Pearson's correlation coefficient. All of 7 control subjects and 2 of 10 acromegalics had significant 24-h MT rhythm. The area under curve (AUC), mesor and amplitude of the MT rhythms in acromegalics were significantly lower than in the controls (p < 0.001, 0.002 and 0.0006, respectively), with an earlier acrophase (median value: 22:14 vs 02:08 h of controls). Basal plasma IGF-1 levels and circadian GH concentrations were significantly increased in acromegalics in comparison with the control group. Octreotide administration significantly reduced GH, restoring a circadian MT rhythm in 5 of 10 acromegalics, with MT mean mesor and AUC not different from controls. Mean amplitude still remained lower than controls (p < 0.0006), with an earlier acrophase (median 00:01 h). No significant correlation was found between individual GH and MT levels. Our data indicate a reduction of MT circadian secretion in acromegaly, due especially to a blunted nocturnal increase with earlier MT peak; moreover, acute octreotide administration increase MT levels without modifying amplitude and phase of night-time secretion significantly. These findings suggest a negative interrelationship between GH and MT secretions or a facilitatory influence of somatostatin on daytime MT release only. This partial recovery of pineal secretion after octreotide in acromegalics could be a clinically significant contribution to improve their quality of life, considering that MT is involved in the regulation of several important functions.

Acromegaly↗

Antisperm antibodies in prepubertal boys treated with chemotherapy for malignant or non-malignant diseases and in boys with genital tract abnormalities.

In several childhood diseases which have the ensuing risk of infertility in adult life because of direct hypothalamic-pituitary-testicular axis involvement, or as a consequence of therapeutic toxicity, the role of antisperm antibodies (ASA) is rarely addressed. The aim of this study was to investigate the occurrence of ASA in a large prepubertal male population (aged 1.2-13 years) consisting of three groups: Group I, 52 patients affected by malignant diseases (lymphoblastic leukaemia, malignant lymphoma, or Wilm's tumour, n = 42), or by nephrotic syndrome (n = 10); Group II, 212 patients with either genital tract abnormalities (cryptorchidism, inguinal hernia, funicular torsion or hypospadias, n = 202), or cystic fibrosis (n = 10); Group III: 100 age-matched normal boys. Group I and II patients were investigated at diagnosis and during or after treatment (drug, radiation or surgical therapy). Group III was used as controls. ASA were detected in sera by the Tray Agglutination Test (TAT) and indirect IgG, IgA and IgM immunobead tests (iIBT). All normal boys were ASA-negative using both tests. Twenty-six out of the 264 patients (9.8%) in Groups I and II were ASA-positive: 23 (8.7%) patients had a positive TAT with a titre of 1:32 to 1:128, whilst 14 (5.3%) had IgG-ASA after iIBT. Eleven patients (4.1%) were ASA-positive in both tests. Of the 26 ASA-positive boys, 24 had genital tract abnormalities (cryptorchidism, testicular torsion, hypospadias) and two had leukaemia with testicular infiltration. Treatment did not modify antibody positivity. Our data confirm that ASA can occur in prepubertal boys, mostly among cases with urogenital pathology, but that it is rare among other cases. Therefore autoimmune reaction against spermatozoa is another factor that should be considered in the evaluation of several conditions in childhood involving reproductive tract alteration and potential impairment of the blood testis (Sertoli cell) barrier.

Autoantibodies↗

Laparoscopic hysterectomy in a case of male pseudohermaphroditism with persistent Müllerian duct derivatives.

We describe laparoscopic diagnosis and treatment for a case of dysgenetic male pseudohermaphroditism with persistent Mullerian ducts. The patient, a 32 year old man, with a history of surgery for hypospadias and cryptorchidism during childhood, was referred because of anejaculation. He was of short stature, with male external genitalia composed of a small penis and hypoplastic testis (1 ml right, 6 ml left side). Plasma follicle stimulating hormone (FSH) was high (17 mUI/ml), testosterone low (1.9 ng/ml), and his karyotype was 46,XY. Pelvic ultrasound, nuclear magnetic resonance (NMR) and genitography disclosed a uterine-like structure with cavity communicating with the urethra. Laparoscopy and urethrocystoscopy confirmed the presence of a 4 cm uterus, which was removed endoscopically at the same time. A biopsy of the left gonad was also performed. The uterus contained endometrial tissue and was fibrotic. Histology of the left gonad showed spermatocytic arrest. We diagnosed dysgenetic male pseudohermaphroditism. Laparoscopy, in our opinion, is an optimal tool to diagnose and treat abnormal sexual conditions.

Disorders of Sex Development↗

Melatonin and the pituitary-thyroid axis status in blind adults: a possible resetting after puberty.

OBJECTIVE: Increased levels of free thyroid hormones have been previously described in prepubertal blind subjects and have been thought to be a consequence of a partial target organ refractoriness due to the early and prolonged lack of light perception. The aim of this study was to clarify whether this abnormality is permanent or transient and the interrelationships between melatonin and thyroid hormone secretion. MEASUREMENTS: Total and free thyroid hormones, TSH, thyroxine-binding globulin (TBG), reverse triiodothyronine (rT3) and melatonin were measured in plasma samples obtained at 0800 h (two hours after lights-on) in a group of 11 totally (group 1) and 16 partially (group 2) blind adult patients and in 10 age-matched healthy subjects. RESULTS: Both totally and partially blind patients showed melatonin levels higher than in controls (330 +/- 106 pmol/l, group 1 and 361 +/- 159 pmol/l, group 2, respectively; controls: 53 +/- 12 pmol/l, P < 0.001 vs both groups), but fT4, fT3, T4, T3 TSH, rT3 and TBG concentrations showed no significant differences from controls. CONCLUSIONS: A possible resetting of pituitary-thyroid axis regulation can occur in blindness after puberty; variations of melatonin secretion could play a role in this. The inhibitory effect of melatonin on thyroid gland function found in animals does not seem to occur in humans. Elevated melatonin levels, both in patients with total blindness and in those with light perception only, suggest that more complex mechanisms other than light signalling are involved in the changes of melatonin secretion in blindness.

Adolescent↗