PubMed HealthSearch

Biomedical subjects

G F Fenzi

Publications and source records attributed to G F Fenzi.

At least 19 recordsLinked to original sources

A reappraisal of the role of methimazole and other factors on the efficacy and outcome of radioiodine therapy of Graves' hyperthyroidism.

The outcome of radioiodine therapy of Graves' hyperthyroidism was retrospectively evaluated in 274 consecutive patients treated from 1975 to 1984. At 1-yr follow-up, permanent hypothyroidism occurred in 36.9% of patients and the cumulative incidence of hypothyroidism progressively increased up to 79.3% after 7-10 yr. At the end of the follow-up period, 148 patients (54%) were hypothyroid, 115 (42%) euthyroid and 11 (4%) still hyperthyroid. The prevalence of hypothyroidism was significantly higher in patients with small goiters (less than or equal to 50 g) than in those with large goiters (greater than 90 g). Moreover, hypothyroidism was more frequent in patients with high thyroglobulin antibodies titers (greater than or equal to 1:25,600) than in those with low titers or negative tests, and occurred earlier in the former group than in the latter ones Correction of thyrotoxicosis was obtained after the administration of a single dose of 131I in 187 patients (63.6%); 69 patients required two doses and 11 three or more doses. Seven patients refused further treatment with 131I after the first dose. In an effort to identify possible factors affecting the efficacy of 131I therapy, we evaluated the results obtained after the administration of the first dose of radioiodine. We found that large goiters, rapid iodide turnover and adjunctive therapy with methimazole shortly after radioiodine were associated with a higher rate of persistence of thyrotoxicosis, whereas an increased prevalence of hypothyroidism was observed in patients with small goiters and in those not treated with methimazole up to one week after 131I.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Neuropsychological assessment in schoolchildren from an area of moderate iodine deficiency.

Neuropsychological assessment was carried out in schoolchildren from a montane area of Eastern Tuscany (Tiberina Valley). This area was found to be moderately iodine deficient (mean urinary iodine excretion: 39 micrograms/g creatinine), with a cumulative goiter prevalence of 51.9% in schoolchildren aged 6-14 yr (goiter prevalence in the control iodine-sufficient area: 5.6%). No significant differences in serum TT4, TT3, FT4I, TSH levels between the endemic and control areas were found, whereas serum thyroglobulin values were significantly higher in the iodine-deficient area (61 +/- 8 vs 17 +/- 1 ng/ml, p less than 0.01). No differences were found as to the height, body weight and pubertal development in the two areas. Neuropsychological assessment, performed in a representative sample of 50 schoolchildren from the endemic area and 50 schoolchildren from the control area, matched for age, sex and socioeconomical conditions, failed to show major differences between the two groups in the global neuropsychological performance and cognitive levels. However, minor but significant differences were noted in the information vocabulary and coding subtests, at least in children aged 8. Although familial cultural influences might play a role, it would appear that some marginal impairment, with particular regard to motor-perceptual functions, be present in areas of moderate iodine deficiency.

Adolescent

Recent advances in the understanding of humoral and cellular mechanisms implicated in thyroid autoimmune disorders.

In this review new data are reported indicating that the thyroid microsomal-microvillar antigen can be identified with thyroid peroxidase (TPO). This concept derives from binding studies of monoclonal and polyclonal microsomal antibodies to TPO purified by affinity chromatography or obtained by recombinant DNA technology. Furthermore, immunofluorescence studies performed on cultured thyroid cells have shown the presence of a TPO-related antigen on the surface of the cells. The expression of the TPO antigen is modulated by TSH through the cAMP pathway. The functional activities of TSH receptor autoantibodies have also been characterized. From these studies the following conclusions can be drawn: (i) TSH receptor antibodies possess multiple biological activities, interfering or mimicking TSH actions; (ii) a good correlation is observed between stimulation of adenylate cyclase and of iodide uptake by Graves' IgG. In these IgG preparations, adenylate cyclase- and growth-stimulating activities cannot be separated; (iii) antibodies blocking the TSH-dependent AC are present in patients with autoimmune hypothyroidism; (iv) a mixture of stimulating and blocking antibodies may coexist in the same patient, whose clinical status may result from the sum of the biological activities of these antibodies. Finally, new data are reported on the identification and characterization of T cell clones infiltrating the thyroid tissue of subjects with thyroid autoimmune disorders. The majority of these clones were CD8+ cytolytic T cells with natural killer activity. These latter data may be of importance in the mechanisms of thyroid damage observed in Hashimoto's glands.

Antibody Formation

Simultaneous assay of thyroid adenylate cyclase- and growth-stimulating antibodies using FRTL-5 cells. Evidence suggesting their identity in patients with Graves' disease.

The relationship between thyroid growth-stimulating antibodies (TGSAb) and thyroid adenylate cyclase-stimulating antibodies (TSAb) in patients with Graves' disease is still a matter of controversy. To investigate this problem, we have developed an assay for the simultaneous measurement of TSAb and TGSAb using FRTL-5 cells. TSAb was detected by its ability to stimulate iodide (I-) uptake and TGSAb by the 3H-thymidine ([3H]-Tdr) incorporation assay. Thirty-four immunoglobulin G (IgG) preparations from patients with active Graves' disease were selected from a previous series in order to include both TSAb-negative IgGs (n = 9) and TSAb-positive IgGs (n = 25) by the cAMP stimulation assay, with a wide range of stimulatory activity. With one exception, the TSAb-positive IgGs produced a significant stimulation of I- uptake; 20 of them were also TGSAb-positive. The nine IgGs negative in the cAMP assay, were also negative in the I-uptake and the [3H]-Tdr incorporation assays. The majority of samples had a similar potency in the two assays and a significant positive correlation was found (r = 0.76; P less than 0.001). Two IgGs previously shown to inhibit TSH-stimulated adenylate cyclase in FRTL-5 cells produced an almost complete inhibition (80-90%) of both TSH- and Graves' IgG-stimulated I- uptake and [3H]-Tdr incorporation. In conclusion, using a simultaneous assay for thyroid growth and adenylate cyclase stimulation, TGSAb in Graves' patients were found only in TSAb-positive IgGs; both Graves' IgG-stimulated activities were inhibited by antibodies blocking the TSH-dependent adenylate cyclase stimulation. Our data strongly suggest that the same antibody may be responsible for both goitre and thyroid hyperfunction of Graves' disease.

Adenylyl Cyclases

Assays of TSH-receptor antibodies in 576 patients with various thyroid disorders: their incidence, significance and clinical usefulness.

UNLABELLED: The incidence and the significance of TSH-receptor antibodies in Graves' disease and in various thyroid disorders have been evaluated. TSH-binding inhibiting antibodies (TBIAb) and thyroid stimulating antibodies (TSAb) were detected in a large proportion of Graves' disease patients (TBIAb in 68.8% and TSAb in 77.8%), in a small number of patients with idiopathic myxoedema or Hashimoto's thyroiditis, and were not detected in patients with endemic euthyroid goitre, differentiated thyroid carcinoma and toxic adenoma. Furthermore, TSH-receptor antibodies were present in some patients with toxic multinodular goitre (TBIAb in 12.7% and TSAb in 15.9%). When TSH-receptor and other thyroid autoantibodies were compared, it was found that 13 of the 15 Graves' patients with negative tests for thyroglobulin and thyroid microsomal antibodies were positive for TSH-receptor antibodies. On the other hand, 9 of the 11 patients with toxic multinodular goitre who had positive TSH-receptor antibody tests, also had serum thyroglobulin and/or thyroid microsomal antibodies. No significant differences in the prevalence of TSH-receptor antibodies were found in Graves' patients irrespective of the presence of ophthalmopathy or pretibial myxoedema. Elevated TBIAb activity at the end of anti-thyroid drug treatment was found in 52.9% of Graves' patients who subsequently relapsed, while in Graves' patients in remission TBIAb was always negative. TSH-receptor antibody results were not predictive of the outcome of radioiodine treatment in Graves' disease. Finally no correlation could be found between TBIAb and TSAb in Graves' disease and Hashimoto's thyroiditis. IN CONCLUSION: the high incidence of TSH-receptor antibodies in Graves' disease confirms their pathogenetic role in the development of hyperthyroidism; TSH-receptor antibodies in Graves' disease are not significantly associated with the presence of ophthalmopathy or pretibial myxoedema; TSH-receptor antibody assays may be useful for the diagnosis of Graves' disease in the absence of other signs of autoimmunity. TBIAb seems to be a good predictor of relapse in Graves' patients treated with anti-thyroid drugs; a fraction of toxic multinodular goitre could be a nodular variant of Graves' disease.

Autoantibodies

Demonstration of blocking immunoglobulins G, having a heterogeneous behaviour, in sera of patients with Graves' disease: possible coexistence of different autoantibodies directed to the TSH receptor.

Previous studies by us and others have shown that Graves' immunoglobulins G (IgGs) behaved as agonists or even antagonists of TSH. In this paper we have looked for the existence of IgG preparations without any thyroid stimulatory activity but able to significantly block the action of TSH in 128 hyperthyroid Graves' patients. The presence of TSH-binding inhibiting antibodies (TBIAb) and that of thyroid stimulating antibodies (TSAb) was evaluated by a radioreceptor assay using solubilized thyroid plasma membranes and by assaying the adenylate cyclase (AC) function of thyroid plasma membranes, respectively. Seventeen IgGs were negative for TSAb but positive for TBIAb in the screening, using only one concentration of IgG. Three kinds of activity were investigated in these IgGs at different doses: (1) TSH-binding inhibiting activity; (2) thyroid AC stimulating activity; and (3) the inhibition of TSH-induced AC stimulation. The results showed that the level of activity was not always dose-dependent. A significant (greater than 20%) inhibition of the TSH-dependent AC stimulation was present in 15 of the 17 IgGs examined: this inhibition was more elevated at lower than at higher doses in two preparations. No significant correlation was found between the three activities. In short, we have been able to demonstrate the existence of 'blocking' antibodies, apparently without any stimulatory activity, in some patients with Graves' disease. The diphasic pattern of the dose-response curves of some IgGs and the lack of correlation between the different activities can be explained by the co-existence in the sera of Graves' patients of different autoantibodies varying in concentration, binding affinity constant and intrinsic biological activity.

Adenylyl Cyclases

Increased level of thyroglobulin mRNA in a human familial goiter.

Thyroglobulin (Tg) and its specific mRNA were analyzed in the thyroid gland of two cases of familial goiter. A three-fold increase in the level of stable protein and functional Tg mRNA was found in the goiter of one of the two patients in whom a desiodase defect was demonstrated. Normal concentrations of both Tg and its mRNA were found in the other goiter in which no enzymatic defect could be shown. Our results suggest that the increase of Tg mRNA levels found in the goiter with a desiodase defect was due to a chronic stimulation of the gland by TSH.

Adolescent

Detection and characterization of autoantibodies blocking the TSH-dependent cAMP production using FRTL-5 cells.

Autoantibodies blocking the TSH-stimulated cAMP production (TBkAb) were measured in immunoglobulin G (IgG) preparations from 38 patients with primary autoimmune hypothyroidism, using FRTL-5 cells. TBkAb were detectable in 15/23 IgG preparations from patients with untreated idiopathic myxedema, and in 2/15 IgGs from patients under L-thyroxine treatment. None of the IgG from 22 normal subjects or from 10 patients with nonautoimmune hypothyroidism following total thyroidectomy caused any significant effect on the TSH-stimulated cAMP production. No correlation was found between TBkAb and the thyroid microsomal antibody. Antibodies inhibiting the 125I-TSH binding to TSH receptor were detectable in only 3/20 patients; IgGs from these 3 patients were also positive in the TBkAb assay. One IgG with potent TBkAb activity inhibited the TSH-stimulated adenylate cyclase in a competitive manner, while it had no effect on the forskolin-stimulated cAMP production. The inhibiting action of this IgG was almost completely lost after preabsorption with human thyroid membranes. In conclusion, we describe a new practical and sensitive method for the measurement of TBkAb; TBkAb are distinct from the microsomal antibody, and are probably directed to the TSH receptor.

Adenylyl Cyclases

Role of the adenylate cyclase-cAMP system on TSH-stimulated thyroid cell growth.

TSH is a trophic factor for cultured rat thyroid cells (FRTL-5). In the present study we have investigated the mechanism by which TSH promotes cell growth and evaluated the possible role of the adenylate cyclase (AC)-cAMP system in this process. The mitogenic activity of several agents was evaluated by measuring their effect on cell number or 3H-thymidine incorporation into DNA. Forskolin and cholera toxin, two potent and specific activators of the AC, induced a dose dependent increase of 3H-thymidine incorporation. The maximal stimulation, observed at concentrations of 10 microM and 10 ng/ml, respectively, was beta 80% of that obtained with optimal concentrations of TSH. A similar effect was obtained with a Graves' IgG preparation (0.2 mg/ml) able to stimulate the thyroid AC or with 3-isobutyl-1-methyl-xanthine (IBMX, 0.5 mM), a phosphodiesterase inhibitor. 8-bromo cAMP (0.5 mM), a cAMP analog, also stimulated 3H-thymidine incorporation, and its potency was approximately 60% of that of TSH. Similar results were obtained when the mitogenic activity of these compounds was evaluated by cell number. Norepinephrine (NE, 10 microM), although devoid of AC stimulatory activity in these cells, also stimulated 3H-thymidine incorporation, but its potency was only 20-30% of that of TSH. Indomethacin (100 microM), an inhibitor of phospholipid and arachidonic acid metabolism, was able to inhibit the stimulatory effect of NE (84%), and to a lesser extent of TSH (63%) and cholera toxin, had minor effect on forskolin (24%), IBMX (16%) and Graves' IgG (8%), and no effect on 8-bromo cAMP.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenylyl Cyclases

Role of autoimmune and familial factors in goiter prevalence. Studies performed in a moderately endemic area.

The goitrogenic role of autoimmune phenomena in endemic goiter is still uncertain. Scanty and discrepant results have been reported in different areas of the world. This prompted us to evaluate the prevalence of circulating thyroid antibodies in an area of North-Western Tuscany during a survey for endemic goiter. The survey was carried out according to the P.A.H.O. criteria in a stable community. In all schoolchildren (n = 142, age range 7-15 yr) and in most of their parents (n = 159), thyroid size was evaluated and urine was collected for iodine determination. Blood was drawn for determination of circulating thyroid microsomal (MAb) and thyroglobulin antibodies (TgAb), TT3, TT4 and TSH. Prevalence of goiter in schoolchildren was 77.9% and 94.8% in their parents. Mean (+/- SD) urinary iodine excretion was 55.0 +/- 2.1 micrograms/24 h. The overall frequency of TgAb and MAb in the adult population was 14.4%, statistically higher than that of control subjects matched for sex and age. The frequency in schoolchildren was 4.3%. The presence of goiter in children was unrelated to the presence of thyroid antibodies in parents, whether goitrous or nongoitrous. A higher prevalence of goiter was found in children with goitrous parents as compared to children with nongoitrous parents (p less than 0.005). In conclusion, the frequency of thyroid autoantibodies in the adult population of the endemic area studied was increased, but showed no relation with the presence of goiter. The prevalence of goiter in children was associated with the presence of goiter but not of thyroid autoantibodies in parents. These data suggest that autoimmune phenomena are of limited importance in the development of endemic goiter.

Adolescent

T cell subsets and thyroid-stimulating antibodies in patients with Graves' disease in clinical remission.

Patients with active Graves' disease almost constantly show phenotypic alterations of T lymphocytes, such as an increase of "activated" cells recognized by various surface markers (e.g. la antigens). Such alterations are present in a certain number of apparently cured patients. The data herein reported refer to 25 patients with Graves' disease in clinical remission, in whom we have attempted to correlate T cell subset imbalances, the presence of thyroid-stimulating antibodies (TSAb) and the outcome of the subsequent relapse. The results obtained show a significant association between TSAb and the increase of la-positive T cells: no relationship was found between TSAb and other T lymphocyte subsets. One-year clinical follow-up of the patients enabled us to see relapses of hyperthyroidism in only two patients, who had shown in the first control both TSAb positivity and increased la-positive T cells. These results, in our opinion, suggest a role of la antigens expression on T lymphocytes in the clinical course of Graves' disease.

Antigens, Surface

Is humoral thyroid autoimmunity relevant in amiodarone iodine-induced thyrotoxicosis (AIIT)?

Amiodarone, an iodine containing drug, may induce thyrotoxicosis by an uncertain mechanism. In this study the role of thyroid autoimmunity was evaluated in 28 consecutive patients referred to us because they had become hyperthyroid during long-term amiodarone administration. Titres of thyroglobulin and thyroid microsomal antibodies, TSH binding-inhibitory and thyroid stimulating antibodies were evaluated. Underlying thyroid disorders were demonstrated in 20 patients (9 of them had toxic diffuse goitre, seven toxic multinodular goitre and four toxic adenoma), while eight patients did not show any apparent thyroid gland abnormality. Circulating thyroid autoantibodies could be found in all amiodarone iodine-induced hyperthyroid patients with toxic diffuse goitre and in one with toxic multinodular goitre, whilst they were absent in the other patients. These studies suggest that thyroid autoimmunity has little if any role in the development of thyrotoxicosis in amiodarone treated patients without underlying thyroid disorders. Furthermore, in amiodarone-iodine-induced thyrotoxicosis associated with various thyroid diseases, the humoral markers of thyroid autoimmunity show an incidence similar to that observed in spontaneous hyperthyroidism.

Adult

Thyroid-stimulating antibody mimics thyrotropin in its ability to desensitize the adenosine 3',5'-monophosphate response to acute stimulation in continuously cultured rat thyroid cells (FRT-L5).

TSH preincubation induces refractoriness to further stimulation of cAMP accumulation by the hormone in cultured thyroid cells. The question of whether the thyroid-stimulating antibodies (TSAb) present in sera of patients with Graves' disease have the same desensitizing effect as TSH was evaluated in this study using a differentiated strain of rat thyroid cells (FRT-L5) which requires TSH for growth and develops refractoriness to acute TSH stimulation of cAMP accumulation. Cells cultured for 4-5 days in medium deprived of TSH recovered responsiveness to TSH and TSAb. Refractoriness to TSH was reinduced in these cells by a 24-h preincubation with 250 microU/ml TSH. The addition of 100 microM KI or 100 microM methimazole to the medium together with TSH did not modify TSH-induced refractoriness. Four different TSAb preparations all induced refractoriness to TSH-stimulated cAMP accumulation. TSAb preincubation induced refractoriness to acute TSAb as well as TSH-stimulated cAMP accumulation. TSAb-induced desensitization was dose dependent and required prolonged (8-24 h) exposure to TSAb. Furthermore, the desensitization induced by TSAb as well as that caused by TSH were significantly inhibited by cycloheximide, indicating the need for de novo protein synthesis. In conclusion, TSAb mimics TSH in the induction of refractoriness in FRT-L5 cells.

Animals

Thyroid autoimmunity and endemic goiter.

The goitrogenic role of autoimmune phenomena in endemic goiter is still uncertain. Scanty and discrepant results have been reported in different areas of the world. This prompted us to evaluate the prevalence of circulating thyroid antibodies in an area of northwestern Tuscany during a survey for endemic goiter. The survey was carried out according to the P.A.H.O. criteria in a stable community. In all schoolchildren (n = 142; age range 7-15 years) and in most of their parents (n = 159), thyroid size was evaluated and urine was collected for iodine determination. Blood was drawn for determination of circulating thyroid microsomal (MAb) and thyroglobulin antibodies (TgAb). TSH binding-inhibiting (TBIAb) and thyroid growth-stimulating antibodies (TGSAb), TT3, TT4 and TSH. Prevalence of goiter in schoolchildren was 77.9% and 94.8% in their parents. Mean (+/- S.D.) urinary iodine excretion was 55.0 +/- 2.1 micrograms/24 h. The overall frequency of TgAB and MAB in the adult population was 14.4, statistically higher than of control subjects matched for sex and age. The frequency in schoolchildren was 4.3%. TBIAb and TGSAb were undetectable in all tested cases. The presence of goiter in children was unrelated with the presence of thyroid antibodies in parents, whether goitrous or non-goitrois. A higher prevalence of goiter was found in children with goitrous parents as compared to children with non-goitrous parents (P less than less than 0.005). In conclusion, the frequency of thyroid autoantibodies in the adult population of the endemic area studies was increased, but showed no relation with the presence of goiter.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent

Can the inhibition of prostaglandin synthesis affect the adenylate cyclase response to thyroid stimulating antibodies?

The majority of Graves' immunoglobulins have the capacity to stimulate thyroid adenylate cyclase (AC) activity in vitro. So far, the exact events leading to AC activity stimulation by thyroid stimulating antibody (TSAb) are not known. It has been suggested that TSAb activates thyroid AC through prostaglandin (PG) synthesis, implying the concept that TSH and TSAb stimulate AC in different ways. If this is so, the inhibition of PG synthesis should notably reduce the response of thyroid plasma membrane to TSAb. We have, therefore, investigated the effect of 2 inhibitors of PG synthesis on the TSAb-stimulated AC activity in a crude human thyroid plasma membrane preparation. Neither indomethacin, nor hydrocortisone, even at concentrations able to completely inhibit PG synthesis, had any significant effect on the thyroid plasma membrane response to TSAb. The results suggest, therefore, that, at least under our experimental conditions, PG does not mediate the AC activation by TSAb. Consequently, the aforementioned suggestion should not be used to claim that TSH and TSAb activate thyroid AC through different pathways. The data, however, do not exclude that TSAb may determine PG synthesis in thyroid cells through the phosphatidylinositol signal system (Pl system).

Adenylyl Cyclases

Reciprocal changes of serum thyroglobulin and TSH in residents of a moderate endemic goitre area.

Subjects living in iodine deficient areas were reported to have elevated serum thyroglobulin (Tg) concentrations. This finding was interpreted as related to thyroid stimulation. Discrepant results, however, were found when serum Tg concentrations were correlated either with serum TSH or with goitre size. In this study we investigated the relationships between goitre size, serum Tg and serum TSH in 488 unselected adult subjects living in an endemic area of North-Western Tuscany (Garfagnana district). The control group comprised 352 subjects residing in a non-endemic area. In the endemic area a high prevalence of goitre was found (80.1%), thyroid enlargement being slight to moderate in the majority of cases and very large only in six subjects. Serum Tg concentrations increased and serum TSH levels decreased with the size of goitre. Statistical analysis by the chi-square cross correlation test showed that the converse changes of serum Tg and serum TSH in relation to goitre size were highly significant. These findings indicate that the increase of serum Tg occurring in endemic goitrous subjects may be related to factors other than TSH stimulation. Functional autonomy of the thyroid may account for the finding of low serum TSH and elevated serum Tg values in patients with large goitres. The present data do not exclude the possibility that the release of Tg is influenced by TSH stimulation, but indicate that other factors may be responsible for the increased levels of Tg found in endemic goitre.

Adult