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T Barreca

Publications and source records attributed to T Barreca.

At least 127 records · Page 7Linked to original sources

Evaluation of beta-endorphin secretion in patients suffering from episodic cluster headache.

In order to obtain data regarding peripheral levels of beta-endorphin in head pain syndromes, we evaluated the plasma beta-endorphin secretory pattern in 12 adult male patients suffering from cluster headache. Blood samples were drawn every 2 hours for a 24-hour period, and in addition at 30-minute intervals for 120 minutes during cluster attacks. The same sampling was repeated during an asymptomatic period. Cluster headache patients showed no significant beta-endorphin circadian rhythm and a delayed acrophase during cluster periods compared with that recorded in the remission period and in normal subjects. Eighteen cluster headache attacks were recorded during the study day, 13 (72%) of which were followed by a significant increase in beta-endorphin levels. No correlation was found between beta-endorphin maximum net increase and intensity and/or duration of pain. These data suggest the hypothesis of a temporary alteration of beta-endorphin circadian secretion, probably related to involvement of neural structures controlling biorhythm pacemakers.

Adult↗

Leptin levels in nonalcoholic steatohepatitis and chronic hepatitis C.

BACKGROUND/AIMS: Leptin is a peptide which regulates food intake and energy expenditure. Moreover, it is involved in the homeostasis of body composition and is linked to the regulation of insulin signaling, thus playing an important role in liver fat storage. Steatosis is a common finding in chronic hepatitis C, and both viral and metabolic factors have been suggested to explain the presence of this histological characteristic. In order to study leptin in chronic liver disease characterized by the presence of steatosis, we evaluated its serum levels in patients with nonalcoholic steatohepatitis (NASH), in chronic hepatitis C (CHC) patients with no histological findings of steatosis, and CHC patients with steatosis but no risk factors for its development. METHODOLOGY: We studied 6 male patients with NASH whose diagnosis was made on the basis of histological findings and clinical criteria. From among a cohort of 170 CHC patients we put together 2 groups of 6 male patients each (with or without steatosis at liver biopsy examination), who had no risk factors for NASH. Male patients were chosen in order to avoid gender influence on leptin levels. Further criteria for admission were similar impairment of liver metabolic function as assessed by the monoethylglycinexylidide (MEGX) test and, in patients with CHC, similar body mass index (BMI) and histological staging. Moreover, we evaluated leptin/BMI ratio, in order to rule out BMI influence on leptin levels. Leptin levels were assessed by means of radioimmunoassay. RESULTS: We found that BMI was higher in NASH compared to CHC (27.2 +/- 2.9 vs. 23.9 +/- 1.8; p = 0.01). Analysis of serum leptin levels showed an increasing trend starting from patients with CHC without steatosis (3.2 +/- 0.4 ng/ml), through CHC patients with steatosis (4.2 +/- 0.7 ng/ml) up to patients with NASH (5.7 +/- 2 ng/ml), although the differences observed were not statistically significant. Moreover, the ratio of leptin to BMI also followed the same trend showing increasing values (CHC without steatosis = 0.04 +/- 0.02; CHC patients with steatosis = 0.17 +/- 0.03; NASH = 0.203 +/- 0.07). Leptin levels and BMI showed a significant relationship (n = 18; r = 0.60; p < 0.01). CONCLUSIONS: The increasing trend observed in leptin serum levels among the different groups of patients showed that in chronic liver disease characterized by the presence of steatosis, leptin signaling is preserved. Moreover, CHC factors different from the metabolic ones should be investigated in order to explain the presence of steatosis. Further studies on broader groups of patients are needed to verify these preliminary results.

Adult↗

The 24-h pattern of human prolactin in serum.

Radioimmunoassay determinations of serum prolactin every 2 hrs in twelve healthy subjects (six women and six men), aged between 22 and 34, reveal that several episodes of hormone secretion occur over a 24-h period. The two episodes displaying significant oscillations have 24-h and 8-h periods, with maxima occurring respectively at 04(30) and at 07(00), 15(00) and 23(00). Accordingly, the highest prolactin levels in serum occur during the night, but oscillations are present throughout the day. The observation schedule adopted leads us to conclude that the main secretory rhythm is synchronized with sleep. The 8-h periods seem to be rather dependent on the course of time.

Adult↗