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M Tonacchera

Publications and source records attributed to M Tonacchera.

54 records · Page 3Linked to original sources

Detection of antibodies blocking thyrotropin effect using Chinese hamster ovary cells transfected with the cloned human TSH receptor.

Chinese hamster ovary (CHO) cells transfected with the cloned human TSH receptor (CHO-R) were used to develop an assay to detect thyroid autoantibodies blocking the TSH-dependent cAMP production (TSHBAb). The study group included 38 patients with goitrous Hashimoto's thyroiditis (HT) and 47 subjects with atrophic thyroiditis (AT). In the HT group, 8 patients had subclinical hypothyroidism (HT-SH) and 30 had overt hypothyroidism (HT-H). Thirty normal subjects served as controls. Immunoglobulin G (IgG) was prepared from serum by double chromatography on DEAE-Sephadex. CHO-R cells were seeded in 96-well plates and were cultured for 48 h before the assay in RPMI-1640 medium plus 1 mmol/L glutamine, 10% fetal calf serum, and 0.4 g/L geneticin. In the assay for TSHBAb, CHO-R cells were incubated with IgG alone (0.5-2 mg/ml), TSH alone (0.2-625 mU/L), or IgG plus TSH; all samples were diluted in hypotonic medium containing 0.5 mmol/L isobutylmethylxanthine (IBMX). After 2 h of incubation at 37 degrees C in 5% CO2-95% air atmosphere, TSH-stimulation was quantified by measuring extracellular cAMP by a RIA. IgGs from normal subjects did not significantly modify the stimulation of adenylate cyclase produced by TSH, the results obtained ranging between -30% and +18% (mean +/- SD = -3 +/- 14%). All IgGs producing an inhibition greater than 2SD from the mean of controls (> 25%) were considered positive for blocking antibodies. TSHABAb were detected in 1/8 (12.5%) patients with HT-SH, in 7/30 (23.3%) with HT-H and 16/47 (34.0%) patients with AT.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Constitutively active receptors as a disease-causing mechanism.

Membrane receptors have appeared early in evolution as the means for the unicellular organism to sense its environment. With the emergence of social cellular life in multicellular organisms, membrane receptors have acquired the additional functions of sensing the presence of similar cells (as in the aggregation phenomenon of Dictyostelium discoideum) (Klein et al., 1988) or the presence of the mate (Saccharomyces cerevisiae) (Cross et al., 1988), and to detect endocrine signals emitted by cells in distant tissues. As the latter function is central to homeostasis and regulation of cell growth, the downstream regulatory cascades under receptor control are the subject of intense research with implications in virtually all fields of biomedical science. The impact of the analysis of tyrosine kinase-activated cascades on our understanding of carcinogenesis is but one example of such an advance.

Animals↗

Studies on the in vitro cytotoxic effect of amiodarone.

Amiodarone, a potent antiarrhythmic drug, contains 37.2% iodine by weight and may induce either hypo- or hyperthyroidism. The high iodine content of amiodarone may be responsible for both complications, but a cytotoxic effect of the drug on the thyroid resulting in thyroiditis has been reported. In the present study the cytotoxic effect of amiodarone was evaluated in three culture systems with different biological properties: 1) a strain of rat thyroid cells (FRTL-5 cells) that maintains most differentiated functions of normal thyroid cells, including an active iodide pump, but an inability to organify iodide; 2) a line of Chinese hamster ovary (CHO) fibroblasts; and 3) freshly prepared primary cultures of human thyroid follicles (hTF) that trap and organify iodide. Cells were radiolabeled with 51Cr and incubated for 24 h with medium alone, medium plus amiodarone (3.75-200 microM), medium plus an iodinated radiographic contrast agent (sodium diatrizoate; 7.5-200 microM), or medium plus potassium iodide (7.5-300 microM). At concentrations ranging from 75-200 microM, amiodarone induced a significant and dose-dependent release of 51Cr in FRTL-5 cells. In contrast, diatrizoate or KI had no cytotoxic effect on FRTL-5 cells. In the same molar concentrations, amiodarone was also cytotoxic in CHO cells. In hTF, the release of 51Cr produced by amiodarone occurred at a lower concentration (37.5 vs. 75 microM) and was significantly greater than that in FRTL-5 cells. The cytotoxic effect of amiodarone in hTF was partially, but significantly, reduced by methimazole, an inhibitor of iodide organification. In the FRTL-5 cell culture system, amiodarone also produced a dramatic inhibition of TSH-stimulated cell growth. This growth-inhibiting effect of amiodarone was evident at low concentrations (3.75-7.5 mumol/liter) of the drug, which did not produce significant cytotoxicity. In conclusion, 1) amiodarone had a cytotoxic effect in CHO fibroblasts, a nonthyroid cell line; 2) this cytotoxic effect occurred in thyroid cells independent of their ability to organify iodide; 3) however, the toxic effect of amiodarone was greater and occurred at a lower molar concentration in freshly prepared human thyroid follicles that trap and organify iodide; and 4) in the latter culture system, methimazole, an inhibitor of iodide organification, partially, but significantly, reduced the cytotoxic effect of amiodarone. These data suggest that thyroid cytotoxicity produced by amiodarone is mainly due to a direct effect of the drug on thyroid cells, but excess iodide released from the drug may contribute to its toxic action.

Amiodarone↗

Recombinant thyrotropin receptor and the induction of autoimmune thyroid disease in BALB/c mice: a new animal model.

In a preliminary study, we observed the production of TSH binding-inhibiting (TBII) and thyroid-blocking (TBAb) antibodies accompanied by lymphocytic infiltration of the thyroid in a pool of male BALB/c mice immunized with the extracellular domain (ECD) of the human TSH receptor (TSHR) expressed as a maltose-binding protein (MBP) fusion in bacteria. In the present study we evaluated the humoral response to the same antigenic preparation in a new series of individual male and female BALB/c mice immunized ip on day 0 with 100 micrograms MBP-ECD and days 25, 39, and 53 with 50 micrograms MBP-ECD in an adjuvant composed of aluminum oxide, magnesium hydroxide, and Bordetella pertussis vaccine. Mice immunized with MBP served as control. Individual sera and immunoglobulins were tested for TBII, TBAb, and thyroid-stimulating antibodies (TSAb) on days 0, 32, 46, and 60, and total circulating T4 levels were measured by RIA. Animals were killed on day 120, their thyroids were examined histologically, the infiltrates were characterized using monoclonal antibodies specific for T-cells (total, activated, helper, and suppressor), B-cells, and macrophages. Sera and immunoglobulins G of the MBP-treated control group were all negative for TSAb, TBAb, and TBII activity. The receptor-immunized mice, despite having high titers of antibodies to the immunogen in an enzyme-linked immunosorbent assay, displayed a heterogeneous response in terms of biological activity, with 3 of 7 female and 4 of 8 male mice having TBAb/TBII activities that persisted and whose activity increased throughout the experiment. No significant TSAb antibody activity was observed. Total T4 levels were also heterogeneous even before immunization, but 9 of 15 MBP-ECD-treated mice had levels below the normal range after immunization, and 7 of these also had TBII/TBAb activities. At the end of the experiment, only 4 of the MBP-ECD-treated female mice survived, but all of them had a severe lymphocytic infiltration of their thyroid, composed mostly of activated T-cells, although B-cells and macrophages were also present. A similar infiltrate was seen in 4 of 8 male MBP-ECD-treated mice. No infiltrate was observed in male or female MBP-treated mice. The model described demonstrates the feasibility of using the TSHR as an immunogen to overcome tolerance and mimics some characteristics of human autoimmune disease of the thyroid.

Animals↗

Failure to detect thyroid growth-promoting activity in immunoglobulin G of patients with endemic goiter.

The [3H]thymidine incorporation assay in FRTL-5 cells was used to measure thyroid growth-stimulating antibody in the purified immunoglobulin G (IgG) fraction of patients with endemic nontoxic goiter (grade I-III) living in Italy (n = 34) or Peru (n = 37). IgG of euthyroid nongoitrous subjects living in the same endemic area (n = 25) and from an area of sufficient iodine intake were used as controls. Bovine TSH (10 mU/L) and thyroid-stimulating antibody of Graves' disease produced a significant increase in [3H]thymidine incorporation and DNA content in FRTL-5 cells. IgG from Italian or Peruvian patients with endemic goiter produced a small increase in [3H]thymidine incorporation in FRTL-5 cells (131 +/- 54% and 165 +/- 57%, respectively), which was indistinguishable from that obtained with IgG from normal nongoitrous subjects residing in endemic or nonendemic areas (167 +/- 80% and 161 +/- 36%, respectively). For comparison 18 of 25 (72%) IgG of hyperthyroid patients with Graves' disease produced clear-cut increases in [3H]thymidine incorporation (1142 +/- 1065%) and DNA content (219%) in FRTL-5 cells. IgG from patients with endemic goiter, at variance with Graves' IgG, did not cause an increase in DNA in FRTL-5 cells. All Graves' IgG that stimulated [3H]thymidine incorporation in FRTL-5 cells also stimulated cAMP production in this culture system, whereas no adenylate cyclase stimulation was produced by IgG from patients with endemic goiter. The prevalence of thyroglobulin antibody and thyroperoxidase antibody in endemic goiter patients did not differ from that in control subjects residing in the same iodine-deficient area. Our data show that sera of endemic goiter patients are devoid of thyroid growth-stimulating antibody and thyroid-stimulating antibody activities. These observations argue against a direct role of thyroid autoimmunity in the development of goiter in iodine-deficient areas.

Adult↗

Evidence for the secretion of thyrotropin with enhanced bioactivity in syndromes of thyroid hormone resistance.

Resistance to thyroid hormone (RTH) is a rare genetic disorder associated with diverse mutations in the thyroid hormone receptor beta-gene. TSH-dependent thyroid hyperstimulation, leading to goiter and elevated thyroid hormone levels, is a characteristic feature of RTH. However, about 60% of untreated resistance patients have circulating TSH levels within the normal range, raising the possibility that the biological activity of TSH is altered. We, therefore, assayed the bioactivity of circulating TSH in 11 patients from 8 different kindreds with RTH, measuring cAMP production in Chinese hamster ovary cells transfected with the recombinant human TSH receptor as well as in FRTL-5 cells. The ratio of biologically active vs. immunoreactive TSH (B/I) was significantly higher in RTH patients than in 8 normal controls [TSH B/I, 4.2 +/- 0.9 (range, 2.2-11.9) vs. 1.3 +/- 0.2 (range, 0.6-2.1)]. TSH released in response to TRH had a bioactivity similar to that of circulating TSH under basal conditions. On the contrary, supraphysiological doses of T3 normalized the B/I ratio of circulating TSH. Concanavalin-A chromatography of TSH from RTH patients showed the presence of circulating forms with altered carbohydrate branching. Our data indicate that the bioactivity of circulating TSH in thyroid hormone resistance syndromes is enhanced and can be normalized after T3 administration. These findings may account for the occurrence of goiter and elevated thyroid hormone levels in RTH patients despite normal serum TSH concentrations.

Adult↗

Identification and functional characterization of two new somatic mutations causing constitutive activation of the thyrotropin receptor in hyperfunctioning autonomous adenomas of the thyroid.

It has recently been shown that somatic and germ line mutations of the TSH receptor gene cause autonomous hyperfunctioning thyroid adenomas and nonautoimmune toxic thyroid hyperplasia by constitutive activation of the TSH receptor. A "saturated" map of these mutations is a prerequisite for a systematic screening for these clinically important mutations. In this context, it is also of interest to determine whether different amino acid substitutions at the same residue cause constitutive activation of the TSH receptor, as suggested by site-directed mutagenesis of the alpha 1 beta-adrenergic receptor. We, therefore, screened further hyperfunctioning autonomous adenomas of the thyroid for constitutively activating mutations. We identified two new somatic mutations, changing alanine in position 623 to valine (A623V) and threonine in position 632 to isoleucine (T632I). Both mutations constitutively activated cAMP when transiently expressed in COS cells. Together with neighboring mutations, the T632I mutation demonstrates the importance of transmembrane domain VI for the activation of the TSH receptor and characterizes it as a hot spot for constitutively activating mutations. The previously identified A623I and the newly identified A623V mutations demonstrate that several amino acid substitutions at the same residue can cause constitutive activation of the TSH receptor.

Adenoma↗

Thyroid autoimmunity and female gender.

Sexual dimorphism exists in regard to the immune response between women and men, and it accounts for the greater prevalence of thyroid autoimmunity in women. Similarly to the human situation a sex-related susceptibility to autoimmune thyroiditis is evident in animal models. A direct influence of genes on sex chromosomes (X or Y) on the immune response has been postulated in some models of autoimmune thyroiditis in rats. On the other hand sex hormones have been implicated to explain the majority of sex differences in the autoimmune response against the thyroid. A state of immune suppression during pregnancy influences the clinical course of autoimmune thyroid diseases, in that a typical amelioration during pregnancy is accompanied by aggravation following delivery. This immunologic rebound phenomenon may also underly the post partum thyroid dysfunction in otherwise healthy women with a genetic predisposition to autoimmune thyroid disease. Thyroid autoimmunity also interferes with the female reproductive function. Hypothyroidism and less frequently hyperthyroidism due to thyroid autoimmune disorders may produce menstrual dysfunction, anovulation and eventually infertility. Maternal hyper- or hypothyroidism can affect the outcome of pregnancy, producing a higher incidence of miscarriages, maternal complications, and congenital malformations. Untreated maternal hypothyroidism produced by Hashimoto's disease during pregnancy can impair the neurological development of the fetus due to a reduced availability of maternal thyroxine during early gestation.2+ More specifically, fetal and/or neonatal hypo- or hyperthyroidism produced by the transplacental passage of maternal thyroid autoantibodies can impair growth and neuropsychological development of affected children.

Female↗

Detection of thyroid-stimulating antibody using Chinese hamster ovary cells transfected with cloned human thyrotropin receptor.

A clone of Chinese hamster ovary (CHO) cells transfected with the cloned human TSH receptor (CHO-R) was used to optimize an assay for thyroid-stimulating antibody (TSAb), measuring adenylate cyclase stimulation by purified immunoglobulin G from patients with Graves' disease. Optimal sensitivity to bovine TSH (1 mU/L) and TSAb was obtained using hypotonic buffer and measuring extracellular cAMP. In time-response experiments, TSAb stimulation was maximal after 2 h of incubation in hypotonic buffer. Under these conditions, a significant stimulation by Graves' immunoglobulin G was obtained with 33 of 35 (94%) samples from patients with untreated Graves' disease and with 21 of 23 (91%) from patients who relapsed after a course of antithyroid drugs. On the other hand, TSAb was detected in only 12 of 20 (60%) patients who were euthyroid during methimazole treatment and in 4 of 11 (36%) who were euthyroid after a course of antithyroid drugs. All samples from Graves' patients were also tested for TSAb activity on FRTL-5 cells. The results of cAMP stimulation in FRTL-5 and CHO-R showed a fairly good correlation (r = 0.60; P < 0.0001). In particular, of the 58 patients with active Graves' disease (35 with untreated hyperthyroidism and 23 relapsed after methimazole), 43 (74%) were positive in both assays, 3 (5%) were negative in both, 11 (19%) were negative in FRTL-5 and positive in CHO-R, and 1 (1.7%) was negative in CHO-R and positive in FRTL-5. In conclusion, CHO cells transfected with the cloned human TSH receptor are suitable for the clinical assay of TSAb. The sensitivity of this assay is higher than that obtained using FRTL-5 cells, having the additional advantages of expressing the human TSH receptor and requiring less cumbersome procedures for cell culture.

Adenylyl Cyclases↗

Thyroid function and thyroid autoimmunity independently modulate serum concentration of soluble interleukin 2 (IL-2) receptor (sIL-2R) in thyroid diseases.

OBJECTIVE: The serum concentration of soluble interleukin-2 receptor (sIL-2R) is a marker of T-lymphocyte activation. Increased circulating sIL-2R has been reported in untreated Graves' disease. This finding has been interpreted as the consequence of the autoimmune activation, but recent data suggest that sIL-2R is directly correlated to thyroid state. The aim of this study was to elucidate the respective roles of autoimmunity and thyroid function in modulating serum sIL-2R. DESIGN AND PATIENTS: sIL-2R was evaluated in 20 normal euthyroid subjects and in a large series of patients with autoimmune and non-autoimmune thyroid disorders in different functional state. MEASUREMENTS: sIL-2R was assayed by a solid-phase monoclonal antibody assisted ELISA method. RESULTS: Serum sIL-2R in normals was 461 +/- 186 U/ml (mean +/- SD). Increased sIL-2R was found in 61 hyperthyroid patients with Graves' disease (1610 +/- 962 U/ml, P < 0.0001) and in 23 with toxic adenoma (1121 +/- 598 U/ml, P < 0.0001). Restoration of euthyroidism lowered to normal sIL-2R in both groups. Serum sIL-2R was higher in euthyroid Graves' disease patients with active than in those with non-active ophthalmopathy. Decreased serum sIL-2R (228 +/- 93 U/ml, P < 0.0001) was found in 30 patients hypothyroid after total thyroidectomy. Highly variable circulating sIL-2R (range 100-1456 U/ml, mean +/- SD: 379 +/- 301 U/ml) was found in 49 patients with hypothyroid Hashimoto's thyroiditis (P = NS vs normals; P < 0.02 vs post-thyroidectomy hypothyroid patients). Treatment with L-thyroxine increased sIL-2R in all thyroidectomized and in the majority of Hashimoto's thyroiditis patients. In individual Hashimoto's thyroiditis patients (mostly with increased serum sIL-2R), L-thyroxine caused a decrease of circulating sIL-2R, sIL-2R was normal in 29 patients with euthyroid Hashimoto's thyroiditis. Both in Graves' disease and in Hashimoto's thyroiditis, no correlation was found between sIL-2R and anti-thyroglobulin, anti-thyroid peroxidase and anti-thyrotrophin-receptor autoantibodies. Highly significant positive correlation between serum thyroid hormones and sIL-2R was found in all study groups. CONCLUSIONS: In thyroid disorders thyroid hormones are the main regulator of serum sIL-2R concentration. The contribution of autoimmune activation may be detected only in some patients with autoimmune hypothyroidism, while in Graves' disease the role of the immune system is masked by the hyperthyroid state.

Adolescent↗

Thyroid hypoechogenic pattern at ultrasonography as a tool for predicting recurrence of hyperthyroidism after medical treatment in patients with Graves' disease.

An abnormal thyroid echographic pattern characterized by a diffuse low echogenicity has been described in Hashimoto's thyroiditis and Graves' disease. The aim of the present work was to study the relationship between thyroid hypoechogenicity and the outcome of treatment for hyperthyroidism with antithyroid drugs in patients with Graves' disease. The study group included 105 patients who underwent a course of methimazole treatment. Thyroid ultrasonography was carried out at diagnosis, and autoantibodies to thyrotropin receptor (TR-ab) were measured at the end of treatment. During the follow-up after methimazole treatment, 87/105 (83%) patients had relapse of hyperthyroidism and 18/105 (17%) were in remission. Recurrence of hyperthyroidism occurred in 71/76 (93%) patients with thyroid hypoechogenicity and in 16/29 (55%) of those with normal thyroid echogenicity (chi 2 = 19.0; p less than 0.0001). Positive TR-ab values at the end of methimazole treatment were found in 59/76 (78%) patients with thyroid hypoechogenicity and in 12/29 (41%) patients with normal thyroid echogenicity (chi 2 = 10.9; p less than 0.0001). Sixty-five/87 (74%) patients with relapse of hyperthyroidism and 6/18 (33%) of those who remained euthyroid were TR-ab-positive at the end of methimazole treatment (chi 2 = 9.8; p less than 0.002). The finding of thyroid hypoechogenicity at diagnosis had higher specificity (0.81) and sensitivity (0.72) with respect to TR-ab positivity at the end of methimazole treatment (0.74 and 0.66 respectively) for the prediction of relapse of hyperthyroidism. Therefore, the evaluation of thyroid echographic pattern can be considered a useful prognostic tool in patients with Graves' disease.

Adult↗

Use of FRTL-5 for the study of thyroid antibodies involved in goitrogenesis.

Some authors have suggested a role of autoimmunity in the pathogenesis of iodine deficiency disorders (IDD). For this purpose we have searched for thyroid adenylate cyclase stimulating antibody (TSAb) and thyroid growth stimulating antibody (TGSAb) in patients with endemic goiter (EG) and endemic cretinism (EC). Immunoglobulins G preparations (IgGs) were tested in FRTL-5 cells. TSAb were calculated as percent of cAMP increase over basal production and TGSAb were expressed as percent of increase of 3H-thymidine incorporation and DNA content in FRTL-5 cells. Our results show that IgGs from goitrous patients were devoid of TSAb and TGSAb activities, while in the same conditions IgGs from patients with Graves' disease had the ability to stimulate cAMP production and 3H-thymidine incorporation in FRTL-5 cells. These data argue against a direct role of TSAb and TGSAb in the pathogenesis of IDD.

Adenylyl Cyclases↗

Maturation of pituitary-thyroid function in the anencephalic fetus.

The recent availability of both cordocentesis and ultrasensitive/highly specific immunometric assays for TSH and its subunit determination along with direct "two-step" assays for free thyroid hormone measurement, prompted us to study the maturation of hypothalamic-pituitary-thyroid axis in normal and anencephalic human fetuses from 17 to 26 weeks of gestation. In addition, TSH bioactivity was measured as cAMP accumulation in CHO cells transfected with recombinant human TSH receptor and TSH carbohydrate structure was studied by lectin chromatography. In both normal and anencephalic fetuses, circulating TSH and FT4 levels significantly increased from 17 to 26 weeks of gestation. Circulating FT3 concentrations were very low (0.5-3.1 pmol/l), while alpha-SU levels were very high (20-417 mg/l). Both FT3 and alpha-SU levels did not change from 17 to 26 weeks of gestation and, again, no differences between normal and anencephalic fetuses were recorded. Circulating TSH from both normal and anencephalic fetuses showed an enhanced bioactivity and was more retained on the lectin column than adult TSH, thus indicating that molecules with different carbohydrate structure are circulating during fetal development. In conclusion, the present data demonstrate that the absence of the hypothalamus does not compromise the maturation of pituitary-thyroid function and that the mechanisms underlying the secretion of TSH molecules with elevated bioactivity and different structure of glycosylated chains are not dependent on hypothalamic neuroendocrine control.

Anencephaly↗

Thyroid autoimmunity and neuropsychological development.

Thyroid autoimmunity may affect neuropsychological development by interfering with the fetal and/or neonatal thyroid status; indeed, both hypo- and hyperthyroidism during the fetal-neonatal life may be associated with a subsequent impairment of intellectual and psychomotor performances. Maternal thyroid status during early pregnancy, and in particular hypothyroidism due to autoimmune thyroiditis, can also affect the fetal neurological development. Finally, anti-thyroid drugs used to control hyperthyroidism in pregnant women with Graves' disease have been widely investigated for their possible effect on the intellectual development of the offspring.

Congenital Hypothyroidism↗

Evaluation of L-thyroxine replacement therapy in children with congenital hypothyroidism.

The outcome of L-thyroxine (L-T4) replacement therapy in children with congenital hypothyroidism (CH) remains to be completely evaluated. In this paper the overall pattern of response to L-T4 replacement therapy was studied in a group of 19 children with CH diagnosed by neonatal screening (10 with hypoplastic/aplastic thyroid disease, group H/A; 9 with gland ectopy, group E) who were followed-up for 60 +/- 27 months (mean +/- SD). With 1 exception serum T4 at diagnosis was greater than 2 micrograms/dl in children of group E and less than 2 micrograms/dl in those of group H/A. The initial dose of L-T4 (8-10 micrograms/kg BW/day) was modified in relation to age and weight in order to maintain serum TSH less than or equal to 5 microU/ml and FT3 in the normal range. A general inverse correlation between serum TSH and FT4 or FT3 concentrations was found, and the mean levels of serum FT4 and FT3 were significantly higher according to the following order of TSH results: low TSH (0-0.5 microU/ml) greater than normal (greater than 0.5-5 microU/ml) greater than elevated TSH (greater than 5 microU/ml). TSH levels less than or equal to 5 microU/ml were associated with FT4 values in the upper half of the normal range (54% of observations) or even higher (46%). Elevation of serum FT4 alone with FT3 values in the normal range did not result in clinical thyrotoxicosis, alteration of growth or premature craniosynostosis.(ABSTRACT TRUNCATED AT 250 WORDS)

Child↗

Incidence of antibodies blocking thyrotropin effect in vitro in patients with euthyroid or hypothyroid autoimmune thyroiditis.

Autoantibodies blocking the TSH-dependent production of cAMP in thyroid cells (TSH-BAb) have been described in atrophic thyroiditis (AT; idiopathic myxedema) and in neonates with transient hypothyroidism, but their incidence in autoimmune thyroiditis in relation to thyroid status remains to be completely established. To this purpose TSH-BAb were evaluated in a group of 140 consecutive patients with autoimmune thyroiditis, which included 26 cases of AT and 114 subjects with goitrous Hashimoto's thyroiditis (HT); among the goitrous group 27 were euthyroid (HT-E), 32 had subclinical hypothyroidism (HT-SH), and 55 had clinical hypothyroidism (HT-H). TSH-BAb were measured in immunoglobulin G prepared by DEAE-Sephadex A-50 by determining their ability to inhibit TSH-dependent cAMP production in a differentiated strain of cultured rat thyroid cells (FRTL-5). Using this sensitive and reproducible method, TSH-BAb were detected in 12 of 26 (46%) patients with AT, in 1 of 27 (3.7%) subjects with HT-E, in 3 of 32 (9.4%) with HT-SH, and in 20 of 55 (36%) with HT-H. The prevalence of TSH-BAb was higher in AT vs. HT-H (P less than 0.001), HT-SH (P less than 0.001), or HT-E (P less than 0.001), and in HT-H vs. HT-SH (P less than 0.001) or HT-E (P less than 0.001). Mean TSH-BAb levels in AT were higher than those in HT-H (P less than 0.005) and HT-SH (P less than 0.025); the difference was not significant between HT-H and HT-SH. An inverse correlation was found between TSH-BAb levels and estimated goiter weight (P less than 0.005). The results of the present study indicate that 1) in autoimmune thyroiditis TSH-BAb are detectable almost exclusively in hypothyroid patients, their prevalence being higher in overt hypothyroidism than in subclinical thyroid failure; 2) the prevalence of TSH-BAb and their mean levels are higher in hypothyroid patients with AT than in those with HT; and 3) therefore, the presence of circulating TSH-BAb appears to be related to the development of hypothyroidism and thyroid atrophy.

Adult↗

Measurement of cAMP accumulation in Chinese hamster ovary cells transfected with the recombinant human TSH receptor (CHO-R): a new bioassay for human thyrotropin.

Circulating TSH bioactivity may vary in several clinical and experimental conditions. Since the reliability of the current methods for the measurement of TSH bioactivity is limited, a new bioassay based on cAMP accumulation in Chinese Hamster Ovary cells transfected with recombinant human TSH receptor (CHO-R) was set up. The sensitivity was 0.3 +/- 0.1, 0.4 +/- 0.1 and 0.01 +/- 0.01 micrograms/L for TSH IRP 80/558, recombinant human TSH and bovine TSH, respectively. Standard curves were parallel, and the intra- and inter-assay coefficients of variation were 13 +/- 1.1% and 22 +/- 1.9%, respectively. LH, FSH, CG and TSH subunits did not stimulate cAMP accumulation up to high concentrations. Circulating TSH was partially purified by immunoaffinity separation and concentrated before being bioassayed. However, plain sera with high TSH levels, such as those from primary hypothyroid patients (PH), could be directly tested in CHO-R bioassay, provided that sera were added at concentrations lower than 10%. TSH from 6 normal subjects had biological to immunological ratio (B/I) ranging from 0.6 to 2.1 (mean +/- SD = 1.4 +/- 0.5). TSH from 6 patients with PH showed bioactivity significantly lower than in normals (B/I = 0.6 +/- 0.3; p < 0.001; range = 0.3-1.1). TSH from 5 patients with central hypothyroidism of hypothalamic origin (CH) had undetectable basal bioactivity (B/I < 0.2), which normalized in only one patient after acute TRH and in all patients after chronic TRH administration. In conclusion, CHO-R cells provide an excellent tool for evaluating TSH bioactivity, owing to high sensitivity, specificity, reproducibility and feasibility of the assay.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Thyroid autoimmunity: really an important cause of sporadic congenital hypothyroidism?

The transplacental transfer of maternal antithyroid antibodies has recently been hypothesised as an aetiological factor in CH. In order to test this hypothesis, mothers and newborns identified by neonatal screening as suffering from hypothyroidism were tested for TgAb, MAb and TSHBAb. Significant titres of MAb and TgAb antibodies were found in 5% of the newborns and their mothers. TSHBAb was found in 1 out of 18 newborns and 1 out of 14 mothers. A causal link was found between the transplacental transfer of IgG inhibiting thyroid growth and function induced by TSH from a mother with Hashimoto's thyroiditis a newborn with CH and in her CH newborn. However the present series did not reveal the high percentage of cases with CH and thyroid antibodies reported by others and particularly not among the neonates born to mothers without any kind of maternal thyroid pathology. It therefore seems that the role of autoimmunity in the pathogenesis of CH and TH is yet to be clarified.

Autoantibodies↗