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L Grasso

Publications and source records attributed to L Grasso.

At least 55 records · Page 3Linked to original sources

Treatment of amiodarone-induced thyrotoxicosis, a difficult challenge: results of a prospective study.

Amiodarone-induced thyrotoxicosis (AIT) occurs in both abnormal (type I) and apparently normal (type II) thyroid glands due to iodine-induced excessive thyroid hormone synthesis in patients with nodular goiter or latent Graves' disease (type I) or to a thyroid-destructive process caused by amiodarone or iodine (type II). Twenty-four consecutive AIT patients, 12 type I and 12 type II, were evaluated prospectively. Sex, age, severity of thyrotoxicosis, and cumulative amiodarone dose were similar. Type II patients had higher serum interleukin-6 (IL-6; median, 440 vs. 173 fmol/L; P < 0.001), but lower serum thyroglobulin levels. Several weeks of thionamide therapy in eight type II or prolonged glucocorticoid administration in two type I patients had previously failed to control hyperthyroidism. Type II patients were given prednisone (initial dose, 40 mg/day) for 3 months and achieved normal free T3 and IL-6 after an average of 8 and 6 days, respectively. Exacerbation of thyrotoxicosis with increased serum IL-6 values, observed in 4 patients while tapering steroid, was promptly corrected by increasing it. Type I patients, given methimazole (30 mg/day) and potassium perchlorate (1 g/day), achieved normal free T3 and IL-6 concentrations after an average of 4 weeks. Exacerbation of thyrotoxicosis with markedly increased IL-6 was controlled by prednisone in 3 of 4 cases. Distinction of different forms of AIT is essential for its successful management. Type II AIT should be treated with glucocorticoids; type I AIT should be treated with methimazole and potassium perchlorate. Exacerbation of thyrotoxicosis, which may occur in both forms and is probably related to destructive processes, should be controlled by the addition/increase in glucocorticoids.

Adult↗

Study of serum 3,5,3'-triiodothyronine sulfate concentration in patients with systemic non-thyroidal illness.

Sulfation is an important pathway of triiodothyronine (T3) metabolism. Increased serum T3 sulfate (T3S) values have been observed during fetal life and in pathological conditions such as hyperthyroidism and selenium deficiency. Similar variations have also been reported in a small number of patients with systemic non-thyroidal illness, but the underlying mechanisms have not been elucidated. In this study, serum T3S concentrations have been measured by a specific radioimmunoassay in 28 patients with end-stage neoplastic disease (ESND) and in 44 patients with chronic renal failure (CRF); 41 normal subjects served as controls. Both ESND and CRF patients had lower serum total T4 (TT4) and total T3 (TT3) than normal controls, while serum reverse T3 (rT3) was increased significantly in ESND (0.7 +/- 0.5 nmol/l; p < 0.001 vs. controls) but not in CRF (0.3 +/- 0.1 nmol/l). The TT3/rT3 ratio, an index of type I iodothyronine monodeiodinase (type I MD) activity, was reduced significantly in both groups of patients. Serum T4-binding globulin (TBG) was decreased in CRF but not in ESND patients. Serum T3S was significantly higher both in ESND (71 +/- 32 pmol/l) and CRF (100 +/- 24 pmol/l) than in controls (50 +/- 16 pmol/l, p < 0.001). Serum T3S values showed a positive correlation with rT3 values and a negative correlation with both TT3 and FT3 values in ESND, but not in CRF. In the latter group a positive correlation was observed between T3S and TBG values. The T3S/FT3 ratio was higher both in CRF (18 +/- 5) and in ESND (23 +/- 18) as compared to controls (10 +/- 4). Serum inorganic sulfate was increased and correlated positively with T3S values in CRF patients. In conclusion, the results of this study in a large series of patients confirm that patients with systemic non-thyroidal illness have increased serum T3S levels. The mechanisms responsible for these changes appear to be different in ESND and CRF patients. In ESND the increase in serum T3S levels is mainly related to reduced degradation of the hormone by type I MD, whereas in CRF it might be driven by the enhanced sulfate ion concentration, and could be partially dependent on the impaired renal excretion of T3S. Because T3S can be reconverted to T3, it is possible that increased T3S concentrations contribute to maintenance of the euthyroid state in systemic non-thyroidal disease.

Adult↗

p53-independent induction of WAF1/CIP1 in human leukemia cells is correlated with growth arrest accompanying monocyte/macrophage differentiation.

The p53 tumor suppressor gene plays a role in controlling a G1 phase checkpoint. The WAF1/CIP1 gene with encodes p21WAF1/CIP1 protein, an inhibitor of cyclin-dependent kinases, is a downstream mediator of p53 function. We examined expression of the WAF1/CIP1 gene and its relationship to growth arrest and differentiation in p53-null human leukemic cell lines. We show that p53-independent induction of WAF1/CIP1 occurs in human leukemia cells treated with 12-O-tetradecanoylphorbol-13-acetate, okadaic acid, or IFN-gamma but not with retinoic acid, vitamin D3, or DMSO. Furthermore, WAF1/CIP1 induction correlates with growth arrest associated with monocyte-macrophage differentiation. The present studies support the idea that WAF1/CIP1 gene expression can be regulated through multiple mechanisms, suggesting that strategies may be designed to restore the G1 checkpoint controls in p53-null cells by targeting these p53-independent mechanisms of WAF1/CIP1 induction.

Blotting, Northern↗

Relationship of the increased serum interleukin-6 concentration to changes of thyroid function in nonthyroidal illness.

Variations in the serum concentration of interleukin-6 (IL-6) have been reported concomitantly with thyroid dysfunction: increased serum IL-6 levels have been found in patients with thyroidal destructive processes, such as subacute thyroiditis, some forms of amiodarone-induced thyrotoxicosis, or after percutaneous ethanol injection into "hot" thyroid nodules, as a result of the cytokine release from the damaged thyrocyte. In addition, recent in vitro evidence suggests that IL-6 might account, at least in part, for changes of thyroid economy found in nonthyroidal illness (NTI). In this cross-sectional study we addressed this problem by measuring serum IL-6 levels in 71 patients with NTI, due to neoplasia (n = 25), chronic liver disease (n = 9), chronic renal failure (n = 28), or other chronic nonthyroidal disorders (n = 9). These patients had reduced mean serum total T3 (TT3) and free T3 (FT3) concentrations, normal total and free T4 levels, normal TSH values, and increased serum reverse T3 (rT3) concentration (with the exception of chronic renal failure patients, who had normal rT3 levels). Serum IL-6 concentration was increased above normal (i.e. > 100 fmol/L) in almost all NTI patients, especially in those with low T3 values (median value: 258 fmol/L, range 73-3210, vs 152 fmol/L, range < 12.5-460, in patients with normal TT3 values, p < 0.001). Serum IL-6 values in NTI patients were negatively correlated with serum FT3 values (r = 0.56, p < 0.001), and positively correlated with serum rT3 values (r = 0.78, p < 0.001).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Serum interleukin-6 in amiodarone-induced thyrotoxicosis.

Amiodarone, an iodine-rich cardiac drug, may induce thyrotoxicosis (AIT), which can occur in patients with preexisting thyroid abnormalities and in subjects with apparently normal thyroid glands. The pathogenesis of AIT is often due to iodine-induced excessive thyroid hormone synthesis, especially in patients with underlying thyroid disease. In some instances, however, AIT may be related to a destructive process due to amiodarone-induced thyroiditis, resulting in thyroid cell damage and thyroid hormone release into the circulation. Another thyroid inflammatory process, subacute thyroiditis, has been recently reported to be associated with markedly increased serum interleukin-6 (IL-6) levels. To investigate the significance of serum IL-6 levels in AIT, we evaluated in a cross-sectional study the following subjects: 27 AIT patients, 15 with no apparent thyroid abnormalities (AIT-) and 12 with nodular goiter and/or thyroid autoimmune disease (AIT+); 14 euthyroid patients receiving chronic amiodarone therapy; 10 patients with amiodarone-induced hypothyroidism; 56 patients with spontaneous hyperthyroidism due to Graves' disease (n = 35) or toxic adenoma/nodular goiter (n = 21); 20 subjects with nontoxic goiter; and 50 healthy controls. Serum free thyroid hormone concentrations did not differ in patients with amiodarone-induced or spontaneous hyperthyroidism. Mean (+/- SE) serum IL-6 values were as follows: AIT-, 573.5 +/- 78.7 fmol/L (range, 149.4-1145.1); AIT+, 152.7 +/- 46.3 fmol/L (range, < 25-505.6); euthyroid patients receiving chronic amiodarone therapy, 51.4 +/- 10.0 fmol/L (range, < 25-122.5); amiodarone-induced hypothyroidism, 43.8 +/- 8.4 fmol/L (range, < 25-84.3); Graves' disease, 108.2 +/- 18.2 fmol/L (range, < 25-250); toxic adenoma/nodular goiter, 97.6 +/- 10.3 fmol/L (range, < 25-168.9); nontoxic goiter, 47.3 +/- 7.1 fmol/L (range, < 25-106.6); and controls, 37.8 +/- 6.2 fmol/L (range, < 25-99.4). Serum IL-6 values in AIT- patients were markedly higher (P < 0.0001) than those in all other groups. Values in AIT+, although slightly higher, did not significantly differ from those in patients with spontaneous hyperthyroidism. AIT- patients had low 24-h thyroidal radioiodine uptake (RAIU), whereas AIT+ had inappropriately low normal to high (9-58%) RAIU values in the presence of excess iodine. The presence of markedly elevated serum IL-6 concentrations and low thyroidal RAIU values in patients with AIT without underlying thyroid disease suggests the presence of amiodarone-induced thyroiditis as the etiology of thyrotoxicosis. Treatment of 2 such patients with prednisone was associated with a dramatic reduction and prompt normalization of IL-6 and thyroid hormone values.(ABSTRACT TRUNCATED AT 400 WORDS)

Adult↗

Interleukin-6: a marker of thyroid-destructive processes?

Increased serum interleukin-6 (IL-6) concentrations have recently been reported in patients with subacute thyroiditis and in some patients with amiodarone-induced thyrotoxicosis, possibly because of cytokine release from damaged thyroid cells. In this study, serum IL-6 levels were determined by an enzyme-linked immunosorbent assay method in 18 patients given percutaneous intranodular ethanol injection (PIEI) for autonomously functioning thyroid nodule, 12 patients treated with radioactive iodine (RAI) for Graves' disease or toxic adenoma, and 23 patients submitted to fine needle aspiration (FNA) for nonfunctioning thyroid nodules. Baseline serum IL-6 levels did not differ in the 3 groups. PIEI was followed by a dramatic increase in median IL-6 values from 42 fmol/L (range, < 25 to 84) to 381 fmol/L (range, 61-9870; P < 0.0001); the peak value was attained as little as 10 min after injection. RAI was also followed by a significant (P < 0.0001) increase in IL-6 from 52 fmol/L (range, < 25 to 84) to 189 fmol/L (range, 119-1417 fmol/L); the increase after RAI was lower than that after PIEI (P < 0.05), and the peak value was attained later (after 24 h). FNA was also followed by a slight, but significant, increase in the serum IL-6 concentration from 21 fmol/L (range, < 25 to 103) to 109 fmol/L (range, < 25 to 360; P < 0.0001 vs. baseline). The increase in IL-6 was correlated with the size of nodule or goiter (P < 0.0001), but not with the amount of injected ethanol or the dose of radioiodine delivered to the thyroid. Serum thyroglobulin also increased after PIEI, RAI, or FNA, but no significant correlation could be demonstrated with the increase in IL-6. The results of this study support the concept that in the absence of nonthyroidal illnesses, which are often associated with increased serum concentrations of the cytokine, IL-6 can be regarded as a useful marker of thyroid-destructive processes.

Adenoma↗

False negative results observed in anti-thyroid peroxidase autoantibody determination by competitive radioimmunoassays using monoclonal antibodies.

OBJECTIVE: Anti-thyroid peroxidase autoantibody (anti-TPO) and anti-thyroid microsomal antibody (anti-M) are strictly related, but discrepancies are sometimes observed. The aim of this study was to assess the incidence and to identify the causes of these discrepancies. DESIGN AND ANTIBODY MEASUREMENTS: Anti-M by passive hemagglutination and anti-TPO by two competitive monoclonal antibody-assisted radioimmunoassays (RIA-1 and RIA-2) were measured in 10,103 sera from 4232 subjects (663 male, 3569 female) screened for thyroid disease. RESULTS: Anti-TPO and anti-M correlated quite well (r = 0.7 and p < 0.0001 by RIA-1: r = 0.74 and p < 0.0001 by RIA-2), with discrepancies mostly limited to sera with low antibody titers. After exclusion of the latter samples, anti-TPO were detected in only 79 (1.4%) out of 5317 anti-M negative sera, but were undetectable in a more consistent proportion (130/2880 = 4.5%) of sera from patients with autoimmune thyroid disease and positive anti-M. In 61 sera of the latter group, anti-TPO was measured by a non-competitive RIA (RIA-3). Forty-one (67.7%) were positive by RIA-3, suggesting the presence of anti-TPO not competing with the monoclonal antibodies of RIA-1 and RIA-2. The remaining 20 sera had undetectable anti-TPO also by RIA-3. Nineteen (95%) of these sera had positive anti-thyroglobulin (anti-Tg) autoantibody and preincubation with thyroglobulin inhibited the agglutination reaction of anti-M tests. CONCLUSION: Anti-TPO by competitive monoclonal antibody-assisted RIA is negative in a minority of sera of patients with autoimmune thyroid disease and positive anti-M. This could be accounted for by anti-Tg producing false positives in the anti-M assay and by a subset of anti-TPO not competing with the monoclonal antibodies in the RIA. When autoimmune thyroid disease is suspected on clinical grounds, a negative anti-TPO test with a competitive RIA should be confirmed always by a non-competitive assay.

Antibodies, Monoclonal↗

Interleukin 6 effects on the pituitary-thyroid axis in the rat.

It has been postulated recently that cytokines, and in particular interleukin 1 (IL-1) and tumor necrosis factor-alpha (TNF-alpha), may have a role in the pathogenesis of the changes of serum thyroid hormone concentrations that are encountered in patients with non-thyroidal illness (NTI). Many of the IL-1 and TNF-alpha effects are believed to be mediated by the induction of IL-6 synthesis, which might, therefore, represent an important mediator of thyroid hormone changes in NTI. To address this problem, male Wistar rats were injected subcutaneously with 2.5 micrograms of recombinant human IL-6 (rhIL-6, in 500 microliters of saline solution), with 2.5 micrograms of rhIL-6 preincubated with 100 microliters of anti-IL-6 neutralizing antibody or with saline solution alone (control group). Administration of rhIL-6 resulted in a significant decrease of thyroxine (T4) from 82 +/- 4 nmol/l (mean +/- SEM) to a nadir of 33 +/- 3 nmol/l (p < 0.0001) after 48 h, and of triiodothyronine (T3) from 1.6 +/- 0.1 to 0.8 +/- 0.1 nmol/l after 48 h (p < 0.0001). A slight decrease in serum T4 and T3 concentrations also was observed in the control group, but the lowest values (T4, 66 +/- 3 nmol/l; T3, 1.2 +/- 0.1 nmol/l) were significantly higher (p < 0.0001) than in IL-6-treated rats. The IL-6-induced changes could be prevented by preincubation of rhIL-6 with its neutralizing antibody.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Increased serum interleukin-6 concentration in patients with subacute thyroiditis: relationship with concomitant changes in serum T4-binding globulin concentration.

Interleukin-6 (IL-6) is the main mediator of the acute phase response. Increased serum concentrations of the cytokine have been found in patients with nonthyroidal inflammatory disorders and infections. In 18 patients with subacute thyroiditis (SAT) evaluated within 1-2 weeks after the onset of the disease, serum IL-6 values, as assessed by an ELISA method having a limit of detection of 25 fmol/L, ranged 139.2-543.9 fmol/L (mean +/- SE, 287.2 +/- 28.2 fmol/L). These values were significantly higher than those of 25 normal healthy controls (mean +/- SE, 26.2 +/- 5.5 fmol/L, range < 25-99.4), 18 of whom had serum IL-6 values below the detection limit. The increase in serum IL-6 levels in SAT patients appeared to be related to the inflammatory disorder and not to thyrotoxicosis, because 18 Graves' disease patients and 13 patients with toxic adenoma or toxic multinodular goiter had significantly lower serum IL-6 concentrations (101.7 +/- 35.2 fmol/L, range < 25-251, for Graves' disease, 79.6 +/- 41.4 fmol/L, range < 25-168.5, for toxic adenoma, p < 0.001 vs SAT for both groups) despite the markedly higher levels of total and free thyroid hormones. Neither free T4 nor free T3 values were correlated with serum IL-6 levels both in SAT and Graves' patients. Twelve SAT patients were reevaluated 3-4 months later, after remission of the disease and at least one month after glucocorticoid withdrawal. At the final observation, all SAT patients showed a normalization of IL-6 concentration, which was undetectable in 8/12 (mean +/- SE, 22.8 +/- 5.4 fmol/L, p < 0.001 vs acute phase values).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Treatment of amiodarone iodine-induced thyrotoxicosis with plasmapheresis and methimazole.

The present report illustrates the clinical and biochemical outcome in two amiodarone iodine-induced thyrotoxicosis (AIIT) patients submitted to plasmapheresis. Amiodarone was discontinued, and treatment with MMI (40 mg/day) was started. In addition, patients were submitted to two sessions of plasma-exchange, with a one-day interval between the two session. In both patients serum total T3 (TT3) and free T3 (FT3) concentrations decreased promptly but in contrast to the serum TT3, FT3 levels remained steadily above the normal range. A similar behaviour was observed for total T4 and free T4 plasma concentrations. Interestingly, a clearcut clinical amelioration was observed in both patients even before a reduction of circulating free thyroid hormone concentrations could be documented. In conclusion, our experience indicates that plasmapheresis may be useful in order to obtain a rapid amelioration of severe clinical picture of thyrotoxicosis, but cannot be considered as a definite therapy in AIIT. It should be considered that plasmapheresis is not devoid of risks and is also a very expensive procedure.

Aged↗

Relationship between nocturnal serum thyrotropin peak and metabolic control in diabetic patients.

Circadian variations in serum TSH, especially its nocturnal rise, are often blunted in nonthyroidal illness. We analyzed TSH secretion in 15 diabetic patients (7 with type I and 8 with type II diabetes mellitus). Patients were evaluated when diabetes was poorly controlled (fasting blood glucose ranging from 13.7-19.2 mmol/L with absence of ketoacidosis) and after achieving glycemic control. Before correction of hyperglycemia, the nocturnal serum TSH peak (2230-0200 h) was abolished in 11 of 15 patients (73%); the mean (+/- SE) night TSH/morning TSH x 100 was 109.0 +/- 9.5 (range, 66.7-166.7) vs. a mean of 216.5 +/- 27.0 (range, 139.8-462.5) in normal controls. The mean morning TSH value in diabetics (1.9 +/- 0.4 mU/L) did not differ from that in normal age- and sex-matched controls. The mean TSH increase after iv administration of TRH was only slightly reduced (8.4 +/- 1.2 mU/L pretreatment vs. 10.8 +/- 1.6 mU/L posttreatment), with the TRH test blunted in 3 cases. No differences were found between type I and type II patients. Correction of hyperglycemia was associated with the reappearance of a nocturnal TSH peak in all but 1 patient (mean TSH peak, 198.2 +/- 13.0; P = NS vs. controls). This change paralleled the normalization of serum total T3 and rT3, which were reduced and increased, respectively, when diabetes was poorly controlled. An inverse relationship was found between serum fructosamine levels and the nocturnal TSH peak, suggesting that metabolic decompensation accounts for the abolishment of the latter.

Adult↗

Enhanced iodine concentrating capacity by the mammary gland in iodine deficient lactating women of an endemic goiter region in Sicily.

Iodine balance during pregnancy and lactation was investigated by measuring iodine concentration in the urine of 11 pregnant women, born and living in a moderately iodine deficient endemic goiter area in Northeastern Sicily, collected during the last week of pregnancy, and between the 5th and 7th day after delivery, and in their milk sampled simultaneously with the urine of their newborns. The results were compared with those obtained on similar samples from 16 euthyroid age-matched nongoitrous women and their offspring from an iodine sufficient area. Urinary iodine concentration in pregnant women from the endemic area (1.28 +/- 0.13 micrograms/dl, mean +/- SE) was significantly lower than that of pregnant women from the iodine sufficient area (3.77 +/- 0.57 micrograms/dl) (t = 3.56, p less than 0.005). The longitudinal measurement of iodine concentration in each nursing woman showed a marked increase (approximately 90%) when compared with the values obtained during pregnancy in both endemic and control groups (2.32 +/- 0.36 and 7.76 +/- 2.08 micrograms/dl; t = 2.13 p less than 0.05, respectively). The slight difference in milk iodine concentration between the endemic (3.25 +/- 0.77 micrograms/dl) and the control (4.33 +/- 0.57 micrograms/dl) group was not statistically significant (t = 1.14; p less than 0.5, NS). Similarly no difference was found in urinary iodine excretion between the endemic and the control newborn groups (3.41 +/- 0.76 and 4.30 +/- 0.65 micrograms/dl, respectively, t = 0.88 p less than 0.1, NS).(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Iodine contamination in subjects admitted to a general hospital.

Urinary iodine excretion was measured in 300 consecutive patients admitted to a general hospital for nonthyroidal disease. Iodine contamination (values greater than 300 micrograms l/g creatinine) was found in 29.3% of cases, mostly due to amiodarone and iodinated contrastographic agents. The source of iodine contamination was not detected in 23% of cases.

Adolescent↗

Circulating antibodies to DNA-related antigens in patients with autoimmune thyroid disorders.

A high prevalence of antibodies to double-stranded DNA (AbDNAds) has been recently reported in serum of patients with autoimmune thyroid disorders, but the specificity of this finding has been questioned. For this reason, the prevalence of several antibodies to DNA-related nuclear antigens (AbDRENA) has been evaluated in sera of patients with autoimmune and non-autoimmune thyroid disease. The study group included: 46 Graves' disease patients, 28 Hashimoto's thyroiditis patients, 25 patients with toxic nodular goitre and 11 with non-toxic nodular goitre. Twenty-eight Graves' patients were retested during methimazole (MMI) therapy, and 5 after radioiodine administration. Twenty-two patients with systemic lupus erythematosus and 28 normal subjects served as positive and negative controls, respectively. AbDRENA included: AbDNAds by RIA or immunofluorescence (IF); antibodies to single-stranded DNA (AbDNAss) and antibodies to histone (AbHist) by ELISA methods; antibodies to nuclear antigens (ANA) by immunofluorescence. RIA values were considered to be abnormal when 2 SD above the mean of normal controls. In our study 13% of Graves' patients were positive for AbDNAds by RIA: all of them had negative tests by IF; 11% were positive for AbDNAss, 2% for AbHist and 7% for ANA. A comparable prevalence of positive results for AbDNAds by RIA, with negative IF tests, was found in Hashimoto's thyroiditis patients. No significant changes of antibody levels were observed in Graves' patients during MMI treatment or after radioiodine administration. A positivity for AbDNAds or AbDNAss was found in 8% of patients with toxic nodular goitre, but in none of those with non-toxic goitre.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Therapy of Graves' disease with sodium ipodate is associated with a high recurrence rate of hyperthyroidism.

To evaluate the long-term efficacy of sodium ipodate (IPO) in the treatment of hyperthyroid Graves' disease, we studied 12 consecutive patients with Graves' hyperthyroidism treated only with 500 mg IPO po daily for several weeks to 22 months. Serum thyroid hormone concentrations markedly decreased and serum free T3 values normalized in all patients within 7 days of therapy. Five patients (42%, Group 1) were euthyroid after 6 weeks of IPO treatment and remained so until IPO was discontinued after 22 months. Recurrence of hyperthyroidism after drug withdrawal occurred in only one of these Group 1 patients, who was promptly responsive to a second course of IPO. In contrast, seven of 12 patients (58%, Group 2) relapsed with recurrent hyperthyroidism between 14 and 42 days of IPO therapy. After IPO was withdrawn, these Group 2 patients were treated with methimazole (20-30 mg/day, initial dose), but the therapeutic response was poor and delayed. Two patients were still hyperthyroid after 6 months of methimazole treatment. Elevated serum FT3 concentrations were observed in the Group 2 patients at 21 days following the early normalization of serum FT3 concentrations. No changes in serum thyroglobulin and thyroid microsomal and TSH-receptor autoantibody titers were observed in either groups during IPO therapy. In conclusion, the results of the present study demonstrate that IPO rapidly restores euthyroidism, but its prolonged administration is associated with a high rate of relapse of hyperthyroidism and a poor response to subsequent methimazole treatment and that long-term IPO administration does not affect humoral markers of thyroid autoimmunity.

Adolescent↗

The nocturnal serum thyrotropin surge is abolished in patients with adrenocorticotropin (ACTH)-dependent or ACTH-independent Cushing's syndrome.

TSH secretion was evaluated in 10 patients with ACTH-dependent (pituitary microadenoma, n = 5) or ACTH-independent [adrenal adenoma (n = 4) or carcinoma (n = 1)] Cushing's syndrome, and in 12 normal controls matched for age and sex. Serum TSH concentration was assayed at night, from 2200-0200 h, and in the morning, both basally and 30 min after iv injection of 200 micrograms synthetic TRH. Patients with hypercortisolism showed significantly reduced serum total T4 and T3 and free T3 concentrations and increased serum reverse T3 levels. Their mean baseline serum TSH concentration in the morning, albeit slightly lower, did not significantly differ from those of controls. The mean peak TSH value after TRH was significantly reduced, and a blunted TSH response to TRH was found in 4 out of 10 patients. At variance with normal controls, who showed nighttime TSH values 63-228% higher than morning values, 9 out of 10 patients had nighttime levels not different from or even lower than those in the morning; the remaining patient had nighttime TSH values marginally (33%) higher than in the morning. An inverse relationship (r = 0.80, P less than 0.001) was found between serum cortisol and TSH values both at night and in the morning. No differences were found either in the pattern of TSH secretion or in the TSH response to TRH between patients with ACTH-dependent and those with ACTH-independent Cushing's syndrome. These results show a substantial impairment of TSH secretion, and in particular the loss of the nocturnal surge of the hormone, in patients with Cushing's syndrome. Although the origin of the nocturnal TSH rise is probably multifactorial, cortisol, at least when secreted in excess, appears to play an important role in its regulation.

Adrenocorticotropic Hormone↗

The lack of nocturnal serum thyrotropin surge in patients with nontoxic nodular goiter may predict the subsequent occurrence of hyperthyroidism.

TSH secretion, with particular regard to the nocturnal TSH surge, was evaluated in 115 subjects with non-toxic nodular goiter. All patients were clinically and biochemically euthyroid. After 18-36 months of follow-up (mean, 24 months), hyperthyroidism occurred in 21 (18%; group 1), while the remaining 94 remained euthyroid (82%; group II). The analysis of hormonal data at the time of first observation showed that the 2 groups had similar total and free T4 and T3 serum concentrations. Morning serum TSH values in group I were lower than those in group II patients (0.6 +/- 0.1 vs. 1.1 +/- 0.1 mU/L; P less than 0.001); this difference was even more striking for the nocturnal values (0.6 +/- 0.1 vs. 2.2 +/- 0.2 mU/L; P less than 0.0001); nocturnal values were significantly lower than morning values in group II, but not in group I. The mean peak TSH value after TRH was also significantly reduced in group I (5.5 +/- 0.4 vs. 9.2 +/- 0.7 mU/L; P less than 0.001). Morning TSH values in group II did not differ from those in controls (1.3 +/- 0.1 mU/L), whereas nocturnal and TRH stimulated peak TSH values were slightly but significantly lower. The nocturnal serum TSH values in control subjects were 62-390% higher than morning values. The nocturnal TSH surge was abolished in 18 of 21 (86%) group I patients and in 7 of 94 (8%) group II patients. TRH testing resulted in an absent or blunted TSH responses in 5 subjects in group I and 6 in group II. Analysis by the Galen and Gambino predictive model; comparing the abolition of the nocturnal TSH surge and the abnormal TRH test as predictors of the subsequent occurrence of hyperthyroidism, showed that the former had higher sensitivity (86% vs. 24%) and predictivity (72% vs. 45%). In conclusion, the results of the present study demonstrate that the evaluation of the nocturnal TSH surge may be useful in identifying patients with nontoxic nodular goiter in whom hyperthyroidism may eventually occur. Patients who lack the nocturnal serum TSH surge are more prone to develop thyroid hyperfunction; their thyroid status should, therefore, be more carefully and frequently monitored.

Adult↗