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Biomedical subjects

L Chiovato

Publications and source records attributed to L Chiovato.

At least 109 records · Page 6Linked to original sources

Interaction of the thyrotropin receptor on rat FRTL-5 thyroid cells with thyrotropin and a thyrotropin-stimulating autoantibody from Graves' patients.

FRTL-5 rat thyroid cells were either surface-labeled with 125I or biosynthetically labeled with [3H]N-acetylglucosamine, solubilized by lithium diiodosalicylate and immunoprecipitated after sequential exposure to bovine thyrotropin and anti-bovine thyrotropin. Autoradiography of polyacrylamide gels run under denaturing conditions and in the presence of a reducing agent revealed two prominent bands with approximate molecular weights of 66-70 kDa and 47 kDa. Immunoprecipitation of the same radiolabeled and solubilized membrane preparations with a Graves' disease IgG having thyroid stimulating but no thyrotropin-binding inhibiting activity revealed only one major band, migrating near the 47 kDa component reactive with thyrotropin. No bands were immunoprecipitated in control incubations using normal human IgG or substituting radiolabeled, solubilized membranes from a rat thyroid cell line with no thyrotropin receptor activity. Thin layer chromatography of Folch extracts of the [3H]-N-acetylglucosamine-labeled immunoprecipitates obtained by either procedure indicated that a specific thyroid ganglioside was coprecipitated with the immunoprecipitated proteins in both cases.

Animals↗

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↗

Cellular localization of the microsomal antigen and the thyroid peroxidase antigen.

Evidence has been accumulated that human thyroid microsomal/microvillar autoantigen (M) is expressed both in the cytoplasm and on the surface of thyroid follicular cells. The availability of this autoantigen to the immune system, possibly associated with abnormally expressed HLA-DR antigens may be relevant both to the triggering and to maintenance of thyroid autoimmune reactions. Preliminary biochemical characterization of M suggested that it was a glycoprotein with a mol. wt. of about 100-110 kD. recent studies carried out in our laboratories taking advantage of monoclonal antibodies provided evidence that the structure presently referred as M-Ag is represented by thyroid peroxidase (TPO). The identity between TPO and M is further supported by four-layer immunofluorescence analysis showing a complete overlap of the two antigens both in the surface and in the cytoplasm of thyroid cells and by the observation that the expression of M and TPO is similarly modulated by TSH, possibly through a cAMP-dependent mechanism.

Cells, Cultured↗

L-thyroxine therapy induces a fall of thyroid microsomal and thyroglobulin antibodies in idiopathic myxedema and in hypothyroid, but not in euthyroid Hashimoto's thyroiditis.

Thyroid microsomal (MAb) and thyroglobulin (TgAb) antibodies were sequentially measured by sensitive and quantitative radioassays in 17 patients with goitrous Hashimoto's thyroiditis (9 hypothyroid, 8 euthyroid) and in 19 patients with idiopathic myxedema before and at various time intervals up to 24-48 months after the institution of L-thyroxine therapy. Thyroid antibodies were also determined in 5 euthyroid subjects with Hashimoto's thyroiditis maintained without treatment for a similar period. During L-thyroxine administration a reduction of MAb with respect to the pretreatment level was found in 6 of the 9 (67%) hypothyroid patients with Hashimoto's thyroiditis and in 16 of the 19 (84%) patients with idiopathic myxedema. The decrease of MAb was highly significant in both groups (p less than 0.001 and p less than 0.0001, respectively). A fall of TgAb occurred in 2 of the 3 patients (75%) with hypothyroid Hashimoto's thyroiditis and in 9 of the 10 (90%, p less than 0.001) patients with idiopathic myxedema having abnormally elevated pretreatment TgAB levels. No consistent pattern of MAb and TgAb changes was observed in the euthyroid subjects with Hashimoto's thyroiditis, whether treated or untreated. In the hypothyroid patients with Hashimoto's thyroiditis a significant association was found between the decrease of MAb and the reduction of goiter size (p less than 0.05) occurring during L-thyroxine administration. Moreover, the decrease of MAb and TgAb in idiopathic myxedema was greater (p less than 0.05) in the patients with normalized serum TSH (less than or equal to 4 microU/ml) than in those showing only a partial reduction of serum TSH (greater than 4 microU/ml) under L-thyroxine.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

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↗

Expression of the microsomal antigen on the surface of continuously cultured rat thyroid cells is modulated by thyrotropin.

The thyroid microsomal antigen, commonly implicated in thyroid autoimmune diseases, is not confined to cytoplasm, but is also present on the surface of human thyroid cells in primary culture. In this study, a strain of differentiated rat thyroid cells (FRTL5) grown in continuous culture was used to investigate the relationship between functional status of the thyroid cell and expression of microsomal antigen on its surface. Sera from eight patients with Hashimoto's thyroiditis, one with idiopathic hypothyroidism, and three with hyperthyroid Graves' disease were selected for the presence of microsomal antibody, but undetectable thyroglobulin antibody. One additional serum sample from a patient with Graves' disease, which was negative for both thyroid antibodies was used. Sera from eight normal subjects were used as controls. Indirect immunofluorescence was applied to FRTL5 cells that were viable or fixed with acetone in order to expose intracellular antigens. When FRTL5 cells were cultured in Coon's medium containing TSH (300 microU/ml), positive indirect immunofluorescence surface staining was observed with sera containing microsomal antibody, but not with control sera or with the Graves' serum negative for microsomal antibody. A rough correlation was found between the intensity of the surface fluorescence and microsomal antibody titer. After acetone treatment, microsomal antibody-positive sera produced typical cytoplasmic staining. When FRTL5 cells were cultured in the absence of TSH, disappearance of the surface fluorescence and reduction of the cytoplasmic microsomal antigen occurred. Readdition of TSH progressively restored both the surface and cytoplasmic microsomal antigen. The present data indicate that the thyroid microsomal antigen is represented on the surface of FRTL5 cells, and its expression is modulated by TSH.

Animals↗

Evaluation of the rat thyroid cell strain FRTL-5 as an in-vitro bioassay system for thyrotrophin.

The cyclic AMP response to bovine TSH was characterized in a strain of rat thyroid follicular cells ( FRTL -5) maintained in continuous culture. Significant stimulation of intracellular cyclic AMP was attained at a TSH dose of 5 muu./ml. Cyclic AMP accumulation continued to increase, at higher TSH doses, with no evidence for attainment of a maximum level at the highest dose tested (5 mu./ml). The precision of TSH measurement was better than 10% over the range 50-5000 muu./ml, comparing favourably with that observed with analogous assays based on human cells, tissue slices or membrane preparations. Using sequential subcultures of FRTL -5 cells, the between-assay variation in response to a single dose of a standard preparation of bovine TSH (53/11; 370 muu./ml) was of the order of 20% which compared favourably with the between-assay variation observed with different cultures of human thyroid cells. Prolongation of the incubation of FRTL -5 cells with TSH to 3 h revealed a progressive increase in the extracellular accumulation of cyclic AMP. Addition of TSH to resting FRTL -5 cells resulted in a stimulation of inorganic iodide uptake with pronounced bell-shaped dose-response characteristics. Thus a maximum uptake was observed at a TSH dose of 100 muu./ml with a significant reduction at higher doses. Acute stimulation of cells with TSH (100 muu./ml) resulted in a rapid and marked alteration in cell morphology, with evidence of cellular retraction and surface ruffling.

Animals↗

In vitro and in vivo reversal of thyroid epithelial polarity: its relevance for autoimmune thyroid disease.

A method is described for culturing intact human thyroid follicles, based on the study of 40 thyroidectomy specimens from normal (n = 18) and diseased glands (n = 22). Reversal of the normal polarity of thyrocytes, whereby the microvilli move from the colloid edge to the vascular pole of the cells, occurs gradually when the amount of fetal calf serum (FCS) is changed from 0.5% to 10%. The translocation of thyroid 'microvillar' antigens, (surface expression of 'microsomal' and a separate surface antigen) from the follicular to the vascular pole of thyrocytes was assessed by indirect immunofluorescence with human sera containing microsomal antibodies, as well as by electron microscopy. In normal and diseased thyroid glands up to 80% of follicles became reversed after 5-10 days in high FCS and the microsomal/microvillar antigen persisted for about twice as long as in monolayer cultures. Spontaneous reversal of polarity was observed in six of eight glands from patients with Graves' thyrotoxicosis or toxic nodular goitre in freshly dispersed tissues or after 2 days in 0.5% FCS, unlike normal tissues where only a trace of reversal appeared after 7 days of culture under these conditions. It is postulated that polarity reversal may play a role in human thyroid autoimmunity as the normally secluded 'microvillar' antigens becomes transposed to the vascular pole of thyroid follicles where they are in direct contact with cytotoxic antibodies or sensitized immunocytes. This could initiate lesions in intact follicles. Inappropriate HLA-DR expression on thyrocytes, either stimulated by phytohaemagglutinin (PHA) or appearing spontaneously as an early marker of thyroiditis, did not correlate with reversal of polarity.

Antigens, Surface↗

Aberrant expression of HLA-DR antigen on thyrocytes in Graves' disease: relevance for autoimmunity.

To investigate the expression of class II histocompatibility antigens HLA-DR in the thyrocytes in autoimmune thyroid diseases, 47 thyroidectomy specimens were examined by immunofluorescence with monoclonal antibodies to the nonpolymorphic region of the DR molecule. Aberrant DR expression was most marked in the Hashimoto gland, with the entire section being strongly stained. DR expression was seen in discrete groups of follicles in 20/26 thyroids from patients with Graves' disease, in 2/9 non-toxic nodular goitres, and in none of 11 specimens of "normal" thyroid. The presence of lymphoid foci, "activated" T-cells, and immune complexes on the follicular basement membrane were not regularly associated with the DR-positive thyroid acini. HLA-A,B,C expression was also increased in the diseased glands. Expression of HLA-DR thus seems to be one of the earliest manifestations of autoimmune lymphocytic thyroiditis.

Adult↗

Detection of thyroid growth immunoglobulins (TGI) by [3H]-thymidine incorporation in cultured rat thyroid follicles.

A new bioassay is described for detecting the growth stimulating immunoglobulins (TGI) that contribute to goitre formation in human thyroid autoimmune diseases. It measures the incorporation of tritiated thymidine into intact rat thyroid follicles grown in tissue culture. This radiometric assay demands much less technical skill than the cytochemical bioassays (CBA) previously employed. It has good reproducibility and the techniques and apparatus are available in many clinical laboratories. Immunoglobulins (Igs) from 68% of patients with goitrous Graves' disease were positive, in proportion with goitre size, and this showed no correlation with T3 levels, or three accepted methods for conventional thyroid stimulating antibodies. Non-toxic nodular goitre cases gave positive results in 3/9 who had recurrences after one or more thyroidectomies and in 1/10 cases of familial simple goitre. All normal subjects and all endemic goitre cases were negative as well as 21 cases of sporadic non-toxic nodular goitre. Although it is less sensitive than the 'growth CBA' it clearly emphasizes the essential difference between the intensity of growth stimulus which leads to the regular hyperplasia of thyroid epithelium seen in Graves' thyrotoxicosis and the disorganized and metabolically uncoordinated hyperplasia typical of non-toxic nodular goitre.

Adult↗

Orbital cobalt irradiation combined with systemic corticosteroids for Graves' ophthalmopathy: comparison with systemic corticosteroids alone.

The effects of different methods of treatment of Graves' ophthalmopathy were evaluated in a series of 48 patients. Thirty-six patients were given combined treatment with orbital cobalt irradiation and systemic 6 alpha-methylprednisolone (methylprednisolone). Included in this group were 12 of 24 consecutive patients who were randomly assigned to either combined therapy or systemic methylprednisolone alone. The degree of ocular involvement and responses to treatment were evaluated by numerical scoring (ophthalmopathy index) and clinical assessment. Of the 36 patients treated by combined therapy, 12 (33%) showed excellent responses, 14 (39%) showed good responses, 9 (25%) showed slight responses, and 1 (3%) had no response. Treatment was more effective for soft tissue involvement, newly developed ophthalmoplegia, and optic neuropathy, while proptosis and longstanding ophthalmoplegia were less responsive. There was an inverse relationship between the duration of ophthalmopathy and the efficacy of treatment, more favorable results being observed when symptoms had been present for less than 2 yr. Treatment with systemic methylprednisolone alone was also effective, but, in general, responses were less satisfactory; 4 of the 12 patients of this group (33%) had good responses, 6 (50%) had slight responses, and 2 (17%) had no response. The results obtained in the 24 patients randomly assigned to combined therapy or steroid treatment alone were compared by evaluating changes in the ophthalmopathy index. Mean initial ophthalmopathy indices (6.4 vs. 6.2, respectively) showed no significant differences between the 2 groups, whereas the mean decrease in the group receiving combined therapy (4.8) was significantly greater (P less than 0.05) than that in the other group (3.2). In conclusion, the present study indicates that both orbital cobalt irradiation combined with systemic methylprednisolone treatment and systemic methylprednisolone therapy alone are valuable methods of treatment for Graves' ophthalmopathy, but the combined therapy proved to be more effective.

Adolescent↗