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Biomedical subjects

Ele Ferrannini

Publications and source records attributed to Ele Ferrannini.

At least 19 recordsLinked to original sources

Thiazolidinediones improve beta-cell function in type 2 diabetic patients.

Thiazolidinediones (TZDs) improve glycemic control and insulin sensitivity in patients with type 2 diabetes mellitus (T2DM). There is growing evidence from in vivo and in vitro studies that TZDs improve pancreatic beta-cell function. The aim of this study was to determine whether TZD-induced improvement in glycemic control is associated with improved beta-cell function. We studied 11 normal glucose-tolerant and 53 T2DM subjects [age 53+/-2 yr; BMI 29.4+/-0.8 kg/m2; fasting plasma glucose (FPG) 10.3+/-0.4 mM; Hb A1c 8.2+/-0.3%]. Diabetic patients were randomized to receive placebo or TZD for 4 mo. Subjects received 1) 2-h OGTT with determination of plasma glucose, insulin, and C-peptide concentrations and 2) two-step euglycemic insulin (40 and 160 mU.m-2.min-1) clamp with [3-(3)H]glucose. T2DM patients were then randomized to receive 4 mo of treatment with pioglitazone (45 mg/day), rosiglitazone (8 mg/day), or placebo. Pioglitazone and rosiglitazone similarly improved FPG, mean plasma glucose during OGTT, Hb A1c, and insulin-mediated total body glucose disposal (Rd) and decreased mean plasma FFA during OGTT (all P<0.01, ANOVA). The insulin secretion/insulin resistance (disposition) index [DeltaISR(AUC)/Deltaglucose(AUC)/IR] was significantly improved in all TZD-treated groups: +1.8+/-0.7 (PIO+drug-naïve diabetics), +0.7+/-0.3 (PIO+sulfonylurea-treated diabetics), and 0.7+/-0.2 (ROSI+sulfonylurea-withdrawn diabetics) vs. -0.2+/-0.3 in the two placebo groups (P<0.01, all TZDs vs. placebo, ANOVA). Improved insulin secretion correlated positively with increased body weight, fat mass, and Rd and inversely with decreased plasma glucose and FFA during the OGTT. In T2DM patients, TZD treatment leads to improved beta-cell function, which correlates strongly with improved glycemic control.

Body Composition↗

Low-grade systemic inflammation causes endothelial dysfunction in patients with Hashimoto's thyroiditis.

OBJECTIVE: The objective of this study was to assess whether low-grade systemic inflammation might contribute to the pathogenesis of endothelial dysfunction in patients with subclinical hypothyroidism (sHT) and autoimmune thyroiditis. BACKGROUND: sHT patients are characterized by peripheral endothelial dysfunction and low-grade inflammation. METHODS: In 53 sHT and 45 healthy subjects, we studied the forearm blood flow (strain-gauge plethysmography) response to intrabrachial acetylcholine (Ach) (0.15-15 microg/min.dl) with and without local vascular COX inhibition by intrabrachial indomethacin (50 microg/min.dl) or nitric oxide synthase blockade by N-mono methyl arginine (L-NMMA) (100 microg/min.dl) or the antioxidant vitamin C (8 mg/min.dl). The protocol was repeated 2 h after systemic nonselective COX inhibition (100 mg indomethacin) or selective COX-2 blockade (200 mg celecoxib) oral administrations. RESULTS: sHT patients showed higher C-reactive protein and IL-6 values. In controls, vasodilation to Ach was blunted by L-NMMA and unchanged by vitamin C. In contrast, in sHT, the response to Ach, reduced in comparison with controls, was resistant to L-NMMA and normalized by vitamin C. In these patients, systemic but not local indomethacin normalized vasodilation to Ach and the inhibition of L-NMMA on Ach. Similar results were obtained with celecoxib. When retested after indomethacin administration, vitamin C no longer succeeded in improving vasodilation to Ach in sHT patients. Response to sodium nitroprusside was unchanged by indomethacin or celecoxib. CONCLUSIONS: In sHT patients, low-grade chronic inflammation causes endothelial dysfunction and impaired nitric oxide availability by a COX-2-dependent pathway leading to increased production of oxidative stress.

Acetylcholine↗

Circulating soluble receptor for advanced glycation end products is inversely associated with glycemic control and S100A12 protein.

CONTEXT: The interaction of advanced glycation end products, including Nepsilon-(carboxymethyl)lysine-protein adducts (CML) and S100A12 protein, with their cellular receptor (RAGE) is implicated in the pathogenesis of diabetic vascular complications. RAGE has a circulating secretory receptor form, soluble RAGE (sRAGE), which, by neutralizing the action of advanced glycation end products, might exert a protective role against the development of cardiovascular disease. OBJECTIVE: The objective of the study was to investigate whether plasma sRAGE levels are associated with glycemic control, proinflammatory factors, or circulating ligands of RAGE such as plasma CML and S100A12 protein. STUDY DESIGN: We studied 160 subjects, 84 subjects with type 2 diabetes (aged 60 +/- 7 yr) and 76 nondiabetic controls (aged 45 +/- 10 yr). RESULTS: Plasma sRAGE was lower in diabetic patients than controls [141 (53-345) vs. 735 (519-1001) pg/ml, median (interquartile range), P < 0.0001], whereas CML levels were higher in diabetic patients than controls [67.9 (46.0-84.7) vs. 43.4 (28.0-65.0) microg/ml, P < 0.0001]. In stepwise regression analysis of the whole data set, hemoglobin A1c, insulin resistance (as homeostasis model assessment), and C-reactive protein were independently associated with plasma sRAGE, whereas age was not. In a subgroup of 26 diabetic and 24 nondiabetic subjects of similar age (54 +/- 3 yr), plasma S100A12 levels were higher in diabetic subjects [49 (39-126) vs. 28 (21-39) ng/ml]. Moreover, low sRAGE and high S100A12 were strongly associated with increased risk for cardiovascular disease (Framingham score). In this subgroup, the plasma S100A12 level was the only determinant of plasma sRAGE concentration. CONCLUSION: Plasma level of sRAGE is down-regulated in chronic hyperglycemia; among its ligands, S100A12 protein, but not CML, appears to be associated with this effect.

Adult↗

Myocardial triglyceride content and epicardial fat mass in human obesity: relationship to left ventricular function and serum free fatty acid levels.

CONTEXT AND OBJECTIVE: Ectopic fat accumulation within and around the myocardial wall has been implicated in the pathogenesis of heart disease in obesity. We evaluated myocardial and epicardial fat, left ventricular (LV) function, and metabolic risk factors in nine (five lean, four moderately obese) men. METHODS: Myocardial fat percent was quantified in the septum by proton magnetic resonance spectroscopy. Reproducibility was assessed by triplicate systolic and diastolic measurements. LV parameters and epicardial fat were determined by magnetic resonance imaging. Waist-to-hip ratio and liver enzymes (alanine transaminase) were used as surrogate markers of visceral and liver fat contents. RESULTS: Myocardial fat (2.1 +/- 0.5 vs. 0.8 +/- 0.1, P = 0.03) and epicardial fat (120 +/- 33 vs. 55 +/- 12 g, P = 0.08) were higher in obese than lean subjects. Individuals with above-median alanine transaminase values had a 4-fold elevation in myocardial fat. The coefficient of variation of repeated myocardial fat percent determinations was 17 +/- 3 and 23 +/- 3% in systole and diastole, respectively. Myocardial fat was correlated with free fatty acid (FFA) levels (r = 0.76; P = 0.017), epicardial fat (r = 0.69; P = 0.042), and waist-to-hip ratio (r = 0.70; P = 0.035), and it showed a tendency to associate positively with LV work. Epicardial fat was associated with peripheral vascular resistance (positively) and the cardiac index (negatively). FFA levels were significantly correlated with LV mass (r = 0.72; P = 0.030) and forward work (r = 0.74; P = 0.023). CONCLUSIONS/INTERPRETATION: The accumulation of triglyceride in and around the myocardium of moderately obese individuals is significant, and it is related to FFA exposure, generalized ectopic fat excess, and peripheral vascular resistance. These changes precede LV overload and hypertrophy.

Adipose Tissue↗

Recombinant human thyrotropin reduces endothelium-dependent vasodilation in patients monitored for differentiated thyroid carcinoma.

AIM: We evaluated endothelial-dependent vasodilation after administration of recombinant human TSH (rhTSH) in patients monitored for differentiated thyroid carcinoma. The role of inflammation and oxidative stress was also assessed. PROTOCOL: Twenty-four patients (21 women, mean age 40.5 +/- 9.2 yr) received rhTSH (0.9 mg daily) on 2 consecutive days. At baseline and the day after the second rhTSH injection, endothelium-dependent vasodilation as flow-mediated dilation (FMD, induced by 5 min of forearm ischemia) and endothelium-independent vasodilation (glyceril trinitrate 25 microg, sublingual) were evaluated by high-resolution ultrasound in the brachial artery. At each experimental time, blood was drawn for the evaluation of thyroglobulin, TSH, free T(3), free T(4), as well as IL-6, C reactive protein, TNFalpha, lipoperoxides, and ferric reducing antioxidant power levels as markers of inflammation and oxidative stress. RESULTS: At baseline, patients' serum TSH values were below the normal range [0.12 mIU/liter (range 0.01-0.30)] in the face of normal free T(4) and free T(3) levels; FMD (8.9 +/- 3.4 vs. 9.2 +/- 3.1%, respectively) and response to glyceril trinitrate (11.0 +/- 4.3 vs. 10.8 +/- 4.7%, respectively) were similar in patients and controls. All the patients had serum thyroglobulin value less than 1 ng/ml, suggesting the absence of cancer recurrences. Besides the expected elevation of serum TSH, rhTSH induced a significant impairment of FMD (7.4 +/- 3.0 vs. 8.9 +/- 3.4%; P < 0.01) along with a significant elevation of blood IL-6 (P = 0.01), TNFalpha (P < 0.001), and lipoperoxide levels (P = 0.01), as well as a reduction of ferric reducing antioxidant power (P = 0.01). CONCLUSIONS: rhTSH administration acutely impaired endothelium-dependent vasodilation, possibly through the induction of low-grade inflammation and reduced nitric oxide availability by oxidative stress.

Adult↗

Is insulin resistance atherogenic? A review of the evidence.

Several factors that increase the risk of cardiovascular disease tend to cluster together in the same individual. Insulin resistance is believed to be a pathophysiological disturbance that underlies many of the risk factors. Whether insulin resistance per se is a cardiovascular risk factor is uncertain. Insulin resistance of myocardial muscle has been documented both in patients with type 2 diabetes and in nondiabetic subjects with angiographically proven coronary artery disease. In addition, in diabetic patients there is a mismatch between the redistribution of blood flow and glucose uptake during insulinization. Finally, the endothelial dysfunction and the hyperinsulinemia that accompany insulin resistance may adversely affect myocardial function. The evidence from epidemiological studies or clinical trials is, however, mixed. In at least one recent prospective study in patients with congestive heart failure, insulin resistance was an independent predictor of cardiac death. Conclusive proof would require a prospective study in which insulin resistance is measured directly and adequate account is taken of the classical cardiovascular risk factors.

Cardiovascular Diseases↗

Increase of CXC chemokine CXCL10 and CC chemokine CCL2 serum levels in normal ageing.

No study has evaluated contemporaneously serum CXC and CC chemokines changes in normal ageing. Serum levels of CXCL10 (sCXCL10) (CXC) and CCL2 (sCCL2) (CC) prototype chemokines have been measured in 164 healthy subjects, from 10 to 79 years of age (82 males/82 females). By simple regression analysis, sCXCL10 and sCCL2 were significantly related with increasing age (r=0.32, p<0.001; r=0.31, p<0.0001, respectively), and with each other (r=0.30, p=0.0004). In a multiple linear regression model, only age and sCCL2 were significantly related to sCXCL10 levels (p<0.001); age and sCXCL10 were significantly related to sCCL2 levels (p<0.001). Subjects with high sCXCL10 levels (>150 pg/ml) were not significantly associated with those with high sCCL2 levels (>559 pg/ml). This study, performed in healthy subjects on an age gradient, demonstrates an increase of sCXCL10 and sCCL2 with advancing age; the differential increase of sCXCL10 or sCCL2 may reflect a general shift towards Th1 or Th2 cytokines pattern, respectively.

Adolescent↗

[11C]palmitate kinetics across the splanchnic bed in arterial, portal and hepatic venous plasma during fasting and euglycemic hyperinsulinemia.

PURPOSE: The liver is fundamental in regulating lipid metabolism, and it supplies fatty acids (FA) to the rest of the body in the form of triglycerides (TG); the time-related relevance of this process is incompletely defined. The aim of the study was to investigate the appearance of labeled TG in the hepatic vascular bed after [11C]palmitate injection during fasting and insulin stimulation. METHODS: Plasma [11C]palmitate kinetics in arterial, portal and hepatic venous lipid fractions was studied in eight anesthetized pigs during fasting or euglycemic hyperinsulinemia. Plasma analyses were conducted at 10 and 40 min after tracer injection. Corresponding liver positron emission tomography (PET) images were acquired for the semiquantitative determination of hepatic FA uptake. RESULTS: At 10 min, plasma levels of unchanged [11C]palmitate were lower in hyperinsulinemic than in fasting experiments in the artery and in the portal vein (P< or=.03), suggesting faster clearance. Levels of unmetabolized [11C]palmitate did not differ between portal and arterial plasma. In the fasting state, a tendency to a positive arterial and portal vs. hepatic venous gradient was observed, indicative of net hepatic [11C]palmitate extraction. Labeled TG were already detectable at 10 min (fasting vs. hyperinsulinemia, ns) and were higher in fasting than in hyperinsulinemic animals at 40 min (92+/-1% and 82+/-6% of arterial plasma radioactivity). Higher proportions of labeled TG were recovered in portal vein plasma, suggesting release by the gut. The portal and the arterial-portal vs. hepatic venous TG gradient tended to be positive. Accordingly, hepatic FA uptake was higher, but declined more rapidly during fasting than during hyperinsulinemia. CONCLUSION: The study indicates that the redistribution of [11C]palmitate between different lipid pools occurs within the short time interval of most PET experiments and is strongly influenced by insulin. Labeled TG constitute an additional [11C]palmitate source in the modeling of PET data.

Animals↗

Coronary atherosclerosis and alcohol consumption: angiographic and mortality data.

OBJECTIVE: Moderate alcohol consumption is associated with reduced cardiovascular disease (CVD) risk. Whether this protection is based on a lesser degree of coronary atherosclerosis has not been established. METHODS AND RESULTS: We studied 1676 men and 465 women consecutively undergoing coronary angiography. A score (ATS) was calculated by summing the percent lumen narrowing of all main vessels; alcohol consumption was quantitated by questionnaire. In univariate analysis, ATS was significantly (P< or = 0.001) associated with male sex, age, familial CVD, smoking, diabetes, hypertension, and serum cholesterol levels; alcohol consumption was associated with less frequent diabetes (P<0.001) and lower ATS (P = 0.02). By multivariate analysis, alcohol intake was associated with lower ATS (P<0.01) independently of the other risk factors; the estimated effect size was comparable to that associated with a 1-mmol decrement in serum cholesterol. Over a median follow-up of 93 months, 37 women and 194 men died from a cardiac cause. By Cox analysis, positive predictors for cardiac mortality were male sex (hazard ratio [HR], 1.7; 95% confidence interval [CI], 1.1 to 2.6]), age (HR, 2.1; 95% CI, 1.8 to 2.5 per decade) and diabetes (HR, 1.7; 95% CI, 1.2 to 2.4), whereas alcohol consumption was the only negative predictor (HR, 0.84; 95% CI, 0.71 to 1.00). CONCLUSIONS: In a selected high-risk population, moderate alcohol consumption was independently associated with less coronary atherosclerosis and lower risk for cardiac mortality.

Adult↗

Impact of incretin hormones on beta-cell function in subjects with normal or impaired glucose tolerance.

The mechanisms by which the enteroinsular axis influences beta-cell function have not been investigated in detail. We performed oral and isoglycemic intravenous (IV) glucose administration in subjects with normal (NGT; n = 11) or impaired glucose tolerance (IGT; n = 10), using C-peptide deconvolution to calculate insulin secretion rates and mathematical modeling to quantitate beta-cell function. The incretin effect was taken to be the ratio of oral to IV responses. In NGT, incretin-mediated insulin release [oral glucose tolerance test (OGTT)/IV ratio = 1.59 +/- 0.18, P = 0.004] amounted to 18 +/- 2 nmol/m(2) (32 +/- 4% of oral response), and its time course matched that of total insulin secretion. The beta-cell glucose sensitivity (OGTT/IV ratio = 1.52 +/- 0.26, P = 0.02), rate sensitivity (response to glucose rate of change, OGTT/IV ratio = 2.22 +/- 0.37, P = 0.06), and glucose-independent potentiation were markedly higher with oral than IV glucose. In IGT, beta-cell glucose sensitivity (75 +/- 14 vs. 156 +/- 28 pmol.min(-1).m(-2).mM(-1) of NGT, P = 0.01) and potentiation were impaired on the OGTT. The incretin effect was not significantly different from NGT in terms of plasma glucagon-like peptide 1 and glucose-dependent insulinotropic polypeptide responses, total insulin secretion, and enhancement of beta-cell glucose sensitivity (OGTT/IV ratio = 1.73 +/- 0.24, P = NS vs. NGT). However, the time courses of incretin-mediated insulin secretion and potentiation were altered, with a predominance of glucose-induced vs. incretin-mediated stimulation. We conclude that, under physiological circumstances, incretin-mediated stimulation of insulin secretion results from an enhancement of all dynamic aspects of beta-cell function, particularly beta-cell glucose sensitivity. In IGT, beta-cell function is inherently impaired, whereas the incretin effect is only partially affected.

Adult↗

Fasting-based estimates of insulin sensitivity in overweight and obesity: a critical appraisal.

OBJECTIVE: To identify simple methods to estimate the degree of insulin resistance. RESEARCH METHODS AND PROCEDURES: The performance of a wide range of fasting-based index estimates of insulin sensitivity was compared by receiver operating characteristic analysis (area under curves and their 95% confidence intervals) against the M value from euglycemic insulin clamp studies collected in the San Antonio (non-Hispanic whites and Hispanic residents of San Antonio, TX) and European Group for the Study of Insulin Resistance (non-diabetic white Europeans) databases (n = 638). RESULTS: Insulin resistance differed substantially between lean (BMI < 25 kg/m2), overweight or obese (BMI > or = 25 kg/m2), and type 2 diabetic individuals. Estimates of insulin resistance were, therefore, assessed in each group separately. In the overweight and obese subgroup (n = 302), the receiver operating characteristic performance of fasting-based indices varied from 0.72 (0.62 to 0.82), in the case of the insulin/glucose ratio, to 0.80 (0.72 to 0.88) in the case of Belfiore free fatty acids. One superior method could not be identified; the confidence intervals overlapped, and no statistically significant differences emerged. All indices performed better when using the whole study population, with fasting plasma insulin, homeostatic model assessment, insulin/glucose ratio, quantitative insulin sensitivity check index, glucose/insulin ratio, Belfiore glycemia, revised quantitative insulin sensitivity check index, McAuley index, and Belfiore free fatty acids showing area under curves of 0.83, 0.90, 0.66, 0.90, 0.66, 0.90, 0.85, 0.83, and 0.86, respectively, because of the inclusion of very insulin sensitive (lean) and very insulin resistant cases (diabetic subjects). DISCUSSION: In conclusion, a superior fasting-based index estimate to distinguish between the presence and absence of insulin resistance in overweight and obesity could not be identified despite the use of the large datasets.

Adolescent↗

Is insulin resistance the cause of the metabolic syndrome?

Following up on original descriptions of clustering of cardiovascular risk factors (chiefly, glucose intolerance, dyslipidaemia and hypertension) around the presence of insulin resistance, the metabolic syndrome has recently been upgraded to the status of a disease entity with an inherent predictive value for cardiovascular disease. In pathophysiological terms, insulin resistance (of glucose metabolism) and the attendant compensatory hyperinsulinaemia are causally related to each of glucose intolerance, dyslipidaemia, high blood pressure and vascular dysfunction. The physiological mechanisms are concisely reviewed here. However, insulin resistance/hyperinsulinaemia alone is insufficient to cause these abnormalities, for which other pathogenic factors (e.g. ss-cell dysfunction for glucose intolerance) are required. The metabolic syndrome, on the other hand, has evolved from a set of statistical associations believed to carry an excess of cardiovascular risk. In the various existing definitions, a mixture of physical, metabolic and clinical variables have been used on grounds of predictive value or practical ease. These variables belong to different phenotypes, which are upstream, intermediate and proximal, respectively, in their relation to clinical disease. The resulting 'syndromes' usually lack a cogent conceptual structure, may reflect the particular data set from which they are extracted and may be of limited applicability. While overt diabetes, clinical hypertension and frank dyslipidaemia are often present together in the same patient, a subclinical syndrome with a distinct, probable aetiology and a proven power as a risk indicator remains to be identified.

Blood Glucose↗

Thyroid disorders in chronic hepatitis C virus infection.

The prevalence of thyroid disorders has been evaluated in patients with hepatitis C virus (HCV) infection by many studies. From a review of the published controlled studies, it is possible to observe that: (1) most investigated patients with chronic HCV hepatitis, while a minority evaluated hepatitis C virus antibody (HCVAb)- seropositive patients (the two conditions are not comparable with regards to thyroidal repercussions, in fact, HCVAb-seropositive patients do not necessarily display changes of the immune system present in chronically infected HCV patients); and (2) some authors selected as internal control hepatitis B virus (HBV)-infected patients, while others selected apparently healthy controls or HCVAb-negative subjects. Pooling all data about HCV-positive patients (with chronic hepatitis or HCVAb positivity) and using as control the sum of healthy controls, HBV-infected patients and sera negative for HCVAb, a significant increase of the prevalence has been observed both for thyroid autoimmune disorders (odds ratio [OR] = 1.6; 95% confidence interval = [C]) 1.4-1.9) as well as for hypothyroidism (OR = 2.9; 95% CI = 2.0-4.1). The results of the epidemiologic studies showing an association between HCV infection and thyroid cancer need to be confirmed. The abovementioned evidences seem sufficient to suggest careful thyroid monitoring during the follow-up of patients with HCV infection.

Autoimmune Diseases↗

Increase of interferon-gamma-inducible CXC chemokine CXCL10 serum levels in patients with active Graves' disease, and modulation by methimazole therapy.

BACKGROUND: CXCL10 plays an important role in the initial phases of Graves' disease (GD) and autoimmune thyroiditis (AT); however, until now, CXCL10 serum levels (sCXCL10) in patients with GD have never been evaluated in relation to thyroid function and treatment. OBJECTIVE: To evaluate sCXCL10 in GD. DESIGN: Cross-sectional. PATIENTS: One hundred and three GD, 164 AT, 20 nontoxic multinodular goitre (NTMNG), 16 toxic nodular goitre (TNG) patients and 70 healthy controls (age- and sex-matched). MEASUREMENTS: We measured sCXCL10 in patients and controls, to relate this parameter to the clinical phenotype. RESULTS: Mean sCXCL10 in GD and AT patients were comparable (122+/-81 and 133+/-102 pg/ml) and significantly higher (P<0.01) than in controls or NTMNG patients (73+/- 32 and 76+/- 25 pg/ml, respectively). Hyperthyroid GD had significantly higher sCXCL10 than euthyroid or hypothyroid GD (145+/- 92, 107+/- 56 and 105+/- 46 pg/ml, respectively; P=0.01). GD patients with untreated hyperthyroidism had higher sCXCL10 than hyperthyroid or euthyroid GD patients under methimazole (MMI) treatment (166+/-125, 124+/- 41 and 94+/- 35 pg/ml, respectively; P=0.006). Comparable sCXCL10 levels were observed in newly diagnosed untreated hyperthyroid GD patients with respect to untreated patients with relapse of hyperthyroidism after a previous MMI course (176+/-125, 155+/- 97 pg/ml, respectively). GD had similar sCXCL10 to AT and higher than TNG patients or controls (all age- and sex-matched) (144+/- 81, 149+/- 114, 101+/- 27 and 86+/- 44 pg/ml, respectively; P=0.02). CONCLUSIONS: sCXCL10 is associated with the active phase of GD in both newly diagnosed and relapsing hyperthyroid patients. The reduction in sCXCL10 in treated patients with GD may be related to the immunomodulatory effects of MMI.

Adult↗

Prevalence of hypothyroidism and Graves disease in sarcoidosis.

BACKGROUND: The association of sarcoidosis (S) and thyroid autoimmunity has been reported by several studies in a wide range of variability. The aim of our study was to evaluate the prevalence of clinical and subclinical thyroid disorders in patients with S vs gender-matched and age-matched control subjects. METHODS: Thyroid hormones and antithyroid antibodies, thyroid ultrasonography and fine-needle aspiration were performed in 111 patients with S who had been consecutively referred to the Respiratory Pathophysiology Section of the University of Pisa, and the results were compared to 333 gender-matched and age-matched control subjects from the same geographic area. RESULTS: The odds ratio for subclinical hypothyroidism for female patients with S vs control subjects was 2.7 (95% confidence interval [CI], 1.3 to 5.9); for anti-thyroid peroxidase antibody titer (AbTPO) positivity, 2.2 (95% CI, 1.2 to 3.9); and for thyroid autoimmunity, 1.9 (95% CI, 1.1 to 3.2). The mean values of thyroid-stimulating hormone and AbTPO were higher in female S patients than in control subjects (p < 0.01). A significantly higher prevalence of clinical hypothyroidism (four patients) and Graves disease (three patients) was observed in female S patients than in control subjects (none; p = 0.005 and 0.0026, respectively). Two cases of papillary thyroid cancer were detected in S patients. No significant difference between S patients and control subjects was detected for free triiodothyronine and thyroxine, antithyroglobulin autoantibodies, thyroid volume and nodularity, and subclinical hyperthyroidism. CONCLUSIONS: Thyroid function, AbTPO antibodies, and ultrasonography should be tested as part of the clinical profile in female S patients. Subjects who are at high risk (female subjects, those with positive AbTPOs, and those with hypoechoic and small thyroid) should have thyroid function follow-up and appropriate treatment in due course.

Age Distribution↗