Predictive Use of Tsh-Receptor Antibodies Assay as a Prognostic Index in Graves’ Patients Treated with Antithyroid Drugs or Radioactive-Iodine

1987 ◽  
pp. 517-519
Author(s):  
Roberto Concetti ◽  
Enrico Macchia ◽  
Lucia Gasperini ◽  
Giovanni Carone ◽  
Flavia Borgoni ◽  
...  
Author(s):  
Francis Essien ◽  
Callie Cheatham ◽  
Blake Elkins ◽  
Joshua Tate

Marine Lenhart Syndrome (MLS) is caused by a coexistence of active thyroid nodules and Graves’ disease1. Here, we present a case of hyperthyroidism characterized by the presence of stimulating TSH receptor antibodies, unsuccessful radioactive iodine ablation, ultimately requiring Methimazole followed by thyroidectomy. We review the current literature.


2001 ◽  
pp. 475-483 ◽  
Author(s):  
D Glinoer ◽  
P de Nayer ◽  
M Bex

OBJECTIVE: In Graves' hyperthyroidism treated with antithyroid drugs (ATD), the overall relapse rate reaches 30-50% following ATD discontinuation. Conflicting results have previously been reported with regard to the usefulness of combining ATD with thyroxine (l-T4), and thereafter maintaining l-T4 treatment after ATD withdrawal. Also, clinicians are in search of useful parameters to predict the risk of a recurrence of hyperthyroidism after ATD treatment. DESIGN: Eighty-two consecutive patients (70 women and 12 men; mean age 36 years) with a first episode of Graves' hyperthyroidism were investigated prospectively; they were treated with ATD for a total of 15 months, combined with l-T4 (for at least 12 months) after they had reached euthyroidism, with the aim of maintaining serum TSH below 2.5 mU/l during the combined therapy. Following ATD discontinuation, the patients were randomly assigned (double-blind placebo-controlled trial) to taking 100 microg/day l-T4 (vs placebo) for an additional year. METHODS: The following determinations were carried out at initial diagnosis: serum total T4 and tri-iodothyronine (T3), free T4 and T3, TSH, TSH-receptor antibodies (TSHR-Ab), thyroid scintigraphy and echography. During ATD treatment, serum free T4 and T3 and TSH concentrations were recorded after 1 (optional), 2, 4, 6, 9, 12 and 15 months, and echography at the end of ATD treatment. During the randomized trial, serum free T4 and T3 and TSH concentrations were checked every 3 months (or until a recurrence). TSHR-Ab titers were measured at initial diagnosis, after 6 months with ATD, and at the end of ATD treatment. RESULTS: l-T4 administration, both during and after ATD treatment, did not improve the final outcome and recurrence rates were similar in placebo and l-T4-treated patients (30%). Two parameters were identified that might be useful to help predict recurrence risks after ATD: (i) positive TSHR-Ab (at the end of ATD treatment) was significantly associated with a greatly increased recurrence risk; and (ii) despite the relatively small number of patients who were smokers, regular cigarette smoking was shown, for the first time, to be significantly associated with an increased recurrence risk. Also, the deleterious effect of smoking was shown to manifest its impact independently of TSHR-Ab titers at the end of ATD treatment. Thus, compared with the overall 30% recurrence risk, non-smoking patients with a negative TSHR-Ab (at the end of ATD) had a lower (18%) recurrence risk; smoking patients with negative TSHR-Ab (at the end of ATD) had a 57% recurrence risk; non-smoking patients with positive TSHR-Ab (at the end of ATD) had a high (86%) recurrence risk; the recurrence risk was 100% in those few patients who both smoked and maintained a positive TSHR-Ab at the end of ATD treatment. CONCLUSIONS: The present study confirmed that l-T4 administration during and after ATD withdrawal did not improve remission rate. Two factors, namely positive TSHR-Ab at the end of ATD treatment and regular smoking habits may represent clinically useful (albeit not absolute) predictors of the risk of recurrence in patients with Graves' hyperthyroidism treated with ATD. However, due to the relatively small number of smoking patients in the present cohort, this conclusion needs to be confirmed by a larger study.


Thyroid ◽  
2007 ◽  
Vol 17 (10) ◽  
pp. 923-938 ◽  
Author(s):  
Bernard Rees Smith ◽  
Jane Sanders ◽  
Jadwiga Furmaniak

1989 ◽  
Vol 120 (1) ◽  
pp. 99-106 ◽  
Author(s):  
B. Y. Cho ◽  
Y. K. Shong ◽  
H. K. Lee ◽  
C.-S. Koh ◽  
H. K. Min

Abstract. We studied the blocking type TSH receptor antibodies in 28 patients with primary myxedema and 21 patients with goitrous Hashimoto's thyroiditis by measuring the ability of their IgGs to inhibit TSH binding to its receptor, and to inhibit TSH-stimulated cAMP increase and [3H] thymidine incorporation in a rat thyroid cell line, FRTL-5. The incidences of TSH binding inhibitor immunoglobulin, thyroid stimulation inhibiting immunoglobulin and thyroid growth inhibiting immunoglobulin in patients with primary myxedema were 54.6, 75 and 65.2%, respectively, against 14.3,0 and 17.7%, respectively, in goitrous Hashimoto's thyroiditis. The antibodies inhibited dose-dependently not only TSH stimulated but also Graves' IgG-stimulated cAMP increase and [3H] thymidine incorporation. The TSH binding inhibitor immunoglobulin activities in patients with primary myxedema were significantly correlated with both the thyroid stimulation inhibiting immunoglobulin (r = 0.665; P<0.01) and the thyroid growth inhibiting immunoglobulin (r = 0.618; P<0.01) activity. Thirteen patients whose TSH binding inhibitor immunoglobulin activities were more than 50% had both strong thyroid stimulation inhibiting immunoglobulin (75.1–100%) and thyroid growth inhibiting immunoglobulin (57.4–100%) activities. These data suggest that the vast majority of patients with primary myxedema have potent blocking type TSH receptor antibodies. These might play a role in primary myxedema causing hypothyroidism and thyroid atrophy through inhibiting TSH-stimulated cAMP generation.


1984 ◽  
Vol 105 (3) ◽  
pp. 330-340 ◽  
Author(s):  
Tjerk W. A. de Bruin ◽  
Daan van der Heide ◽  
Maria C. Krol

Abstract. The effect of the anti-TSH receptor antibodies present in the sera of 8 patients with Graves' disease on the affinity constant (Ka) and the number (R) of TSH receptors in autologous human thyroid plasma membranes was investigated. Kinetic analysis of [125I]bTSH binding to human thyroid plasma membranes in the presence of autologous Graves' and normal gammaglobulins was carried out by means of a computer fitting programme. Analysis of the TSH-TSH receptor interaction in the presence of TSH alone yielded curvilinear Scatchard plots, indicating the existence of two independent classes of binding sites (high affinity Ka: 8.5 ± 4.8 × 108 m−1; low affinity Ka: 5.3 ± 2.7 × 106 m−1). Similarly the Scatchard plot for this interaction in the presence of normal gammaglobulins is also curvilinear. Linear Scatchard plots, indicating the existence of only one class of high affinity TSH binding sites (Ka: 3.5 ± 1.8 × 108 m−1), were obtained for both autologous gammaglobulins and pure IgG from 8 patients with Graves' disease. The number of high affinity TSH binding sites in the presence of Graves' gammaglobulins had increased on the average by a factor 3.76 ± 0.74 (sd) with respect to the number found in the presence of normal gammaglobulins. This marked change in the kinetic behaviour of the TSH binding sites provided evidence that there is a direct interaction between anti-TSH receptor antibodies and autologous TSH receptors. Divalency of Graves' IgG or linkage of Fab fragments by anti-Fab antiserum proved to be necessary to produce this specific change in the kinetic behaviour of TSH binding sites. Graves' IgG monovalent Fab and Fc fragments had no effect. We suggest that the mechanism by which anti-TSH receptor antibodies in Graves' disease mimick the biological action of TSH is the IgG-induced cross-linkage of TSH receptors.


Thyrotropin ◽  
1987 ◽  
pp. 307-314 ◽  
Author(s):  
P. Vitti ◽  
G. F. Fenzi ◽  
L. Chiovato ◽  
C. Marcocci ◽  
A. Pinchera

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