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Triiodothyronine production in Graves' hyperthyroidism.

OBJECTIVE: To quantify the relative contributions of thyroid secretion and peripheral generation to triiodothyronine (T(3)) production in untreated Graves' hyperthyroidism. PATIENTS, DESIGN, AND MEASUREMENTS: Thirty-one patients with hyperthyroidism, of whom 6 had T(3) toxicosis, and 21 surgically and radioiodine ablated patients with thyroid cancer on thyroid stimulating hormone-suppressive therapy in whom serum T(3) should reflect peripheral generation alone were compared with respect to serum free thyroxine (T(4)) and serum free T(3) concentrations. MAIN OUTCOMES: Serum free T(4)/free T(3) molar ratios were virtually identical in the patients with T(4)+T(3) toxicosis (2.7 +/- 0.4) and those with T(3) toxicosis (2.6 +/- 0.4) and were significantly lower than in the patients with thyroid cancer (4.0 +/- 0.4) (p < 0.001). In the hyperthyroid patients, peripherally generated T(3) was calculated as the quotient of the individual serum free T(4) concentration and the free T(4)/free T(3) molar ratio in thyroid cancer; this value was subtracted from the individual measured free T(3) concentration to derive the value for secreted T3. Secreted T(3) accounted for 33 +/- 6% of T(3) production in T(4)+T(3) toxicosis and 34 +/- 10% in T(3) toxicosis. CONCLUSIONS: This study indicates that about one third of T3 production in untreated Graves' hyperthyroidism, irrespective of whether presenting as T4+T3 toxicosis or T3 toxicosis, arises from thyroid secretion as compared to about 20% in normal individuals.

Adult↗

Severe coronary artery spasm can be associated with hyperthyroidism.

BACKGROUND: Coronary artery spasm is not infrequently seen in Korea. Most of the patients with coronary spasm show a focal spasm in coronary angiography. However, the cause of the disease is not well known. There have been a few anecdotal case reports of coronary artery spasm associated with hyperthyroidism, but there has not been a report concerning a large series of such patients. Over a period of 5 years and 8 months, we experienced eight patients having the diffuse or severe type of coronary artery spasm in association with hyperthyroidism. METHODS: We investigated the characteristics of the patients with coronary artery spasm, which was diagnosed by coronary angiography or by provocation with an intracoronary injection of acetylcholine or ergonovine. The demographic data, coronary angiographic findings, thyroid function test results, and the follow-up clinical data of the eight patients having coronary artery spasm associated with hyperthyroidism were analyzed. RESULTS: All eight patients had Graves' disease. In six patients, the coronary arterial vasoconstriction developed during the coronary angiography without an injection of ergonovine. In three patients, the left main stem coronary artery was involved in the spasm. Among these eight patients, five were female, and all of these female patients were < or = 51 years old. All of the patients were treated with anti-thyroid medications, calcium channel blockers, and long-acting nitroglycerines; they all remained free of chest pain during the median follow-up period of 5 years. CONCLUSIONS: A severe form of coronary artery spasm could be associated with hyperthyroidism. A high level of suspicion and the thyroid function study should be mandatory for patients with coronary artery spasm, especially for the young female patients.

Angina, Unstable↗

Evidence that factors other than particular thyrotropin receptor T cell epitopes contribute to the development of hyperthyroidism in murine Graves' disease.

Immunization with thyrotropin receptor (TSHR)-adenovirus is an effective approach for inducing thyroid stimulating antibodies and Graves' hyperthyroidism in BALB/c mice. In contrast, mice of the same strain vaccinated with TSHR-DNA have low or absent TSHR antibodies and their T cells recognize restricted epitopes on the TSHR. In the present study, we tested the hypothesis that immunization with TSHR-adenovirus induces a wider, or different, spectrum of TSHR T cell epitopes in BALB/c mice. Because TSHR antibody levels rose progressively from one to three TSHR-adenovirus injections, we compared T cell responses from mice immunized once or three times. Mice in the latter group were subdivided into animals that developed hyperthyroidism and those that remained euthyroid. Unexpectedly, splenocytes from mice immunized once, as well as splenocytes from hyperthyroid and euthyroid mice (three injections), all produced interferon-gamma in response to the same three synthetic peptides (amino acid residues 52-71, 67-86 and 157-176). These peptides were also the major epitopes recognized by TSHR-DNA plasmid vaccinated mice. We observed lesser responses to a wide range of additional peptides in mice injected three times with TSHR-adenovirus, but the pattern was more consistent with increased background 'noise' than with spreading from primary epitopes to dominant secondary epitopes. In conclusion, these data suggest that factors other than particular TSHR T cell epitopes (such as adenovirus-induced expression of conformationally intact TSHR protein), contribute to the generation of thyroid stimulating antibodies with consequent hyperthyroidism in TSHR-adenovirus immunized mice.

Adenoviridae↗

Differentiation of autoimmune ophthalmopathy from Graves' hyperthyroidism by analysis of genetic markers.

Graves' hyperthyroidism and dysthyroid eye disease are closely related autoimmune conditions. Whether the eye disease is an integral part of Graves' disease or a separate entity is controversial. To investigate this we have examined the genetic associations of ophthalmopathy and hyperthyroidism, and compared their phenotype and gene frequencies with a control normal population. HLA-A, B, and DR antigens were typed in 67 patients with dysthyroid eye disease (GO), 60 hyperthyroid patients without significant eye disease (HT) and 500 normal subjects. Patients were also typed for a variety of other genetic markers: blood group systems (10), serum proteins (6) and red cell enzyme systems (10). Increased frequency of B8 and DR3 in Graves' disease was confirmed; B17 occurred less frequently and appears to be protective. HLA antigen frequencies for GO did not differ from HT. The MNS blood group showed a significant association with Graves' disease, the HT patients having a deficit of the s gene compared with controls. The most interesting finding was an increased frequency of blood group P in GO patients compared with either HT or controls. Significant differences were not seen with any of the other HLA antigens, blood groups, protein or enzyme markers considered individually. Multivariate analysis applied first to the HLA and then to the non-HLA systems indicated clear separation of the two patient groups. Although Graves' eye disease shares the same HLA associations as hyperthyroidism, it differs in the increased frequency of P blood group, suggesting that additional genetic factors may determine which patients with Graves' disease develop ophthalmopathy.

Autoimmune Diseases↗

Development of postpartum spontaneously resolving transient Graves' hyperthyroidism followed immediately by transient hypothyroidism.

A 25-year-old woman with a history of Graves' disease, in remission for 8.5 years following 6 months of methimazole therapy, first came to our attention 5 months after her first delivery with clinical and biochemical hypothyroidism, markedly elevated titre of anti-thyroid microsomal antibody (MCHA; 1:102400) and mildly elevated activity of thyrotropin-binding inhibitory immunoglobulins (TBII; 29.5%). After short-term (3 months) treatment with L-thyroxine therapy, the development of hyperthyroidism in the first trimester of the second pregnancy, which remitted through the second and third trimesters, was observed. TBII showed a peak value (93.1%) 1 month after the onset of hyperthyroidism, and a normal value (12.4%) 6 d after delivery. One month after the second delivery, the patient developed hyperthyroidism, with an elevation of 99mTc thyroid uptake (5.58%; normal range 0.5-2.5%), which was immediately followed by transient clinical and biochemical hypothyroidism. Concomitant increases in MCHA titre and TBII activity were observed after delivery, and both reached peak levels (1:409600 and 81.0%, respectively) one and a half months after the onset of hypothyroidism. Thyroid-stimulating antibody (TSAb), measured using FRTL-5 thyroid cells, was detected at a weakly positive level (161%) on initial examination, and the serial change in TSAb was almost identical to that in TBII. Patients with Graves' disease may develop Graves' type hyperthyroidism, followed immediately by transient hypothyroidism due to coexisting destructive autoimmune thyroiditis during the early postpartum period, despite increasing TSAb activity.

Adult↗

Gastric, pancreatic, and biliary responses to meals in hyperthyroidism.

Upper gastrointestinal function in response to a mixed nutrient meal was evaluated in hyperthyroid patients, both before and after therapy, and in healthy controls. Gastric secretion, gastric emptying, and pancreatic secretion were all normal and normally integrated postprandially in the hyperthyroid patients. Bile acid output was reduced (P less than 0.05) in this group of patients relative to healthy controls. Duodenal bile acid concentrations, however, were above the critical micellar concentration in most of the hyperthyroid patients, and the bile acid output and concentration remained unchanged in all patients three months after treatment. After radioactive iodine therapy, when gastrointestinal symptoms were returning toward normal, a small but statistically significant increase in gastric secretion was observed. However, gastric emptying and pancreatic secretion, like biliary secretion, remained unchanged. Abnormalities responsible for the diarrhoea and steatorrhoea in hyperthyroidism appear to reside primarily distal to the duodenum. However, reduced bile acid output may be a contributory factor in some patients.

Adult↗

Sodium ipodate in the preparation of Graves' hyperthyroid patients for thyroidectomy.

Sodium ipodate (SI) is an oral cholecystographic agent that also affects thyroid hormone metabolism. It inhibits the peripheral T4 to T3 conversion and the thyroidal hormone release. We investigated the safety and efficacy of SI (500 mg daily during 5 days) in the preparation for subtotal thyroidectomy of 7 Graves' hyperthyroid patients in whom treatment with thionamides was unsuccessful due to allergy or noncompliance. Plasma T3 levels (mean +/- SD) decreased from 4.90 +/- 1.80 nmol/l on day 0 to 1.70 +/- 0.30 nmol/l on day 4 of treatment. Thyroidectomy performed on day 5 of treatment was uneventful. In comparison with 14 Graves' hyperthyroid patients who underwent thyroidectomy during the same period after conventional preparation with thionamides and potassium iodide, the therapeutic outcome 1 year postoperatively was similar in both groups. However, in the mildly hypothyroid patients prepared with SI, the plasma thyroid-stimulating hormone level was transiently higher 3 and 6 months postoperatively. It is concluded (1) that SI is a safe and efficacious drug in the preparation of Graves' hyperthyroid patients for thyroidectomy; (2) the therapeutic outcome 12 months postoperatively is similar in SI and in conventionally prepared Graves' hyperthyroid patients, and (3) postoperative mild or subclinical hypothyroidism is more pronounced in SI than in conventionally prepared patients.

Adult↗

Thyroid status influence on adiponectin, acylation stimulating protein (ASP) and complement C3 in hyperthyroid and hypothyroid subjects.

BACKGROUND: Thyroid abnormalities (hyperthyroid and hypothyroid) are accompanied by changes in intermediary metabolism including alterations in body weight, insulin resistance and lipid profile. The aims of this study were to examine plasma ASP, its precursor C3 and adiponectin in hyperthyroid and hypothyroid subjects as compared to controls. METHODS: A total of 99 subjects were recruited from endocrinology/out-patient clinics: 46 hyperthyroid subjects, 23 hypothyroid subjects and 30 control subjects. Subjects were evaluated for FT4, FT3, TSH, glucose, insulin, complete lipid profile and the adipokines: adiponectin, acylation stimulating protein (ASP) and complement C3. RESULTS: Hyperthyroidism was associated with a 95% increase in adiponectin (p = 0.0002), a 47% decrease in C3 (p < 0.0001), no change in ASP and increased ASP/C3 ratio (p = 0.0012). Hypothyroidism was associated with a 31% increase in ASP (p = 0.008). Adiponectin and C3 correlated with FT3 (r = 0.383, p = 0.004 and r = -0.277, p = 0.007, respectively) and FT4 (r = 0.464, p = 0.003 and r = -0.225, p = 0.03, respectively). ASP correlated with TSH (r = 0.202, p = 0.04). Adiponectin did not correlate with either ASP or C3, only ASP and C3 correlated (r = -0.197, p = 0.05). Adiponectin was negatively correlated with BMI, total cholesterol and plasma triglyceride, while C3 was positively correlated with BMI and total cholesterol. Surprisingly, adiponectin was positively correlated with insulin (r = 0.293, p = 0.02) and HOMA-IR (r = 0.373, p = 0.003) while C3 was negatively correlated with glucose (r = -0.242, p = 0.022, insulin (r = -0.184, p = 0.05) and HOMA-IR. CONCLUSION: These changes suggest that thyroid disease may be accompanied by changes in adipokines, which may contribute to the phenotype expressed.

Journal Article↗

Treatment of autoimmune hyperthyroidism in a murine model of Graves' disease with tumor necrosis factor-family ligand inhibitors suggests a key role for B cell activating factor in disease pathology.

Hyperthyroid Graves' disease is a common autoimmune disorder mediated by agonistic antibodies to the TSH receptor, termed thyroid stimulating antibodies (TSAbs). Recently members of the TNF superfamily, B cell activating factor (BAFF) and a proliferation-inducing ligand (APRIL), have been identified along with their receptors, B cell maturation antigen and transmembrane activator and calcium-modulator and cyclophilin ligand interactor, and the BAFF-specific receptor. BAFF is a fundamental B cell survival/maturation factor, and both BAFF and APRIL have been implicated in antibody production. We investigated the effect of interfering with BAFF- and APRIL-mediated signals in an induced model of Graves' disease by blockade of these factors using soluble decoy receptors. In a therapeutic setting in mice with established hyperthyroidism, we show that blockade of BAFF or BAFF+APRIL with BAFF-specific receptor-Fc and B cell maturation antigen-Fc, respectively, leads to significant reductions in the induced hyperthyroidism. This was supported by a parallel pattern of declining TSAbs in the responding animals. Histopathological analysis of splenic sections from treated animals revealed marked reductions in the B cell follicle regions, but staining with anti-CD138 revealed the persistence of plasma cells. Thus, the reductions in TSAbs in the treated animals were not related to overall plasma cell numbers in the secondary lymphoid organs. Our results are the first to demonstrate attenuation of established hyperthyroidism by therapeutic intervention aimed at autoreactive B cells and indicate that both BAFF and APRIL appear to play important roles in the development and survival of the autoantibody producing cells in this model.

Adenoviridae↗

Effects of short and long duration hypothyroidism and hyperthyroidism on the plasma adrenocorticotropin and corticosterone responses to ovine corticotropin-releasing hormone in rats.

We report here a study of the plasma ACTH and corticosterone responses to synthetic ovine CRH (oCRH) in hypothyroid and hyperthyroid rats studied 7, 15, and 60 days after either thyroidectomy or the administration of pharmacological doses of T4. The purpose of this study was to further clarify the time-dependent effects of alterations in thyroid status on the functional integrity of the hypothalamic-pituitary-adrenal axis and to aid in the interpretation of the oCRH stimulation test in hypo- and hyperthyroid states. Our data demonstrate that hypothyroid rats have a significant reduction in the cerebrospinal fluid (CSF) levels of corticosterone and a significant decrease in adrenal weight in association with significant increases in the plasma ACTH response to oCRH. On the other hand, the corticosterone response to the ACTH released during the oCRH stimulation test was significantly reduced in hypothyroidism. With increasing duration of thyroidectomy-induced hypothyroidism, there was a progressive fall in CSF corticosterone levels, a progressive increase in the plasma ACTH response to oCRH, and a gradual normalization of the corticosterone responses to the ACTH released during oCRH stimulation. Our findings in hyperthyroid rats were generally the converse of those seen in hypothyroidism. Hence, there was a significant increase in the CSF levels of corticosterone and a significant increase in adrenal weight in association with an initial slight decrease in the ACTH response to oCRH. On the other hand, the corticosterone response to the ACTH released during oCRH stimulation was significantly increased. There was a gradual increase in the magnitude of the rise in CSF corticosterone levels with time, as well as a gradual normalization of adrenocortical responses during oCRH stimulation. The ACTH plasma clearance rates were similar in hypo-, hyper-, and euthyroid rats. Our data do not permit definitive identification of the precise locus in the hypothalamic-pituitary-adrenal axis that is principally affected by experimentally induced alterations in thyroid status. However, these data are most compatible with a subtle hypothyroid-induced centrally mediated adrenal insufficiency and a subtle hyperthyroid-induced centrally mediated hypercortisolism. These data also suggest that alterations in hypothalamic-pituitary-adrenal function in states of disturbed thyroid function become somewhat more pronounced as the duration of thyroid dysfunction increases. The fact that pituitary-adrenal responses to oCRH are consistently altered in states of thyroid dysfunction may be relevant to the clinical interpretation of oCRH stimulation tests.(ABSTRACT TRUNCATED AT 400 WORDS)

Adrenocorticotropic Hormone↗

Hyperthyroid Graves' disease causes insulin antagonism.

Oral glucose tolerance and pancreatic suppression tests were carried out in six young hyperthyroid men before treatment and 2-4 weeks after thyroid function tests returned to normal and in six normal men matched for age and weight. Glucose intolerance was present in the hyperthyroid individuals. It improved, but did not return to normal, after treatment. Insulin secretion was increased, and the peak values were delayed in the patients. Treatment did not influence the amount or pattern of the insulin response. Steady state plasma glucose levels (milligrams per dl +/- SEM) were significantly (P less than 0.001) higher in the hyperthyroid patients before treatment (128.6 +/- 2.4) than in the normal subjects (86.1 +/- 3.1). Although after treatment, steady state plasma glucose levels (116.1 +/- 2.7) decreased significantly (P less than 0.001), they remained higher than those in normal subjects (P less than 0.01). Therefore, insulin action was impaired in hyperthyroidism and had not returned to normal by 2-4 weeks after thyroid function tests were in the normal range.

Adult↗

Effects of chronic iodine administration on thyroid status in euthyroid subjects previously treated with antithyroid drugs for Graves' hyperthyroidism.

In view of the adverse effects of the administration of pharmacological quantities of iodine to euthyroid patients with a history of a wide variety of thyroid disorders, it has been suggested that iodine-containing medications and radioopaque dyes containing iodine should be avoided, if possible, in patients with underlying thyroid disease. We have now prospectively studied the effects of pharmacological doses of a saturated solution of potassium iodide (SSKI) on thyroid function in euthyroid patients with a previous history of hyperthyroid Graves' disease successfully treated with antithyroid drugs. Ten euthyroid women (mean age, 56 yr) who had hyperthyroid Graves' disease successfully treated with methimazole 36.4 +/- 4.7 months earlier were evaluated before, during, and after the administration of 10 drops SSKI daily for 90 days. The following thyroid function tests were obtained: serum T4, T3, TSH, TSH receptor antibody (TSH-RAb), and antithyroid peroxidase antibody (AbTPO) concentrations; TRH tests; and iodine perchlorate discharge tests. Serum T4, T3, basal and TRH-stimulated TSH, and TSH-RAb values were normal before SSKI administration, but serum AbTPO levels were markedly positive in 7 and iodine perchlorate discharge tests were positive in 4 of these 10 women. During SSKI administration, basal and TRH-stimulated serum TSH values increased above normal in 2 women with normal serum T4 and T3 concentrations; thyroid hormone values and TRH tests were normal in the other 8 patients and similar to values observed in 4 euthyroid women without a history of thyroid disease given SSKI. Serum AbTPO increased slightly, but significantly, during SSKI administration in the 7 women with positive values at baseline (P < 0.05). TSH-RAb remained undetectable. After SSKI withdrawal, the 10 women were reevaluated 60 and 120 days later. Two women developed a blunted TSH response to TRH, but normal serum T4 and T3 concentrations, and 2 women developed overt hyperthyroidism, with undetectable basal and TRH-stimulated serum TSH and elevated serum T4 and T3 concentrations, requiring methimazole therapy. All values in the remaining 6 women were similar to those present before SSKI administration. These results suggest that some euthyroid patients with a history of antithyroid drug therapy for Graves' disease may develop thyroid dysfunction during and after excess iodine administration. The development of subclinical hypothyroidism during SSKI administration was not clinically important, but the occurrence of overt hyperthyroidism after SSKI was discontinued did require antithyroid drug therapy. It is advisable, therefore, to avoid iodine-containing substances in euthyroid patients with a history of antithyroid drug therapy for Graves' disease.

Antithyroid Agents↗

The iodine perchlorate discharge test before and after one year of methimazole treatment of hyperthyroid Graves' disease.

We have recently reported that many euthyroid patients with a history of Graves' disease treated years earlier with methimazole (MMI) have a positive iodide (500 micrograms)-perchlorate discharge test (I-ClO4 test), suggesting a permanent thyroid iodide organification defect. We now report the results of the I-ClO4 test in patients with hyperthyroid Graves' disease before beginning a 1-yr course of MMI therapy and 40 days after MMI was discontinued. Twenty-nine patients (25 women and 4 men; mean age, 38 +/- 1.7 yr) with their first episode of hyperthyroid Graves' disease were studied. Before MMI therapy, I-ClO4 tests were carried out, and serum T4, T3, and TSH were measured to confirm the diagnosis of hyperthyroidism. A positive I-ClO4 test is defined as more than 15% 131I discharged from the thyroid 1 h after the administration of 1 g KClO4. Patients were then treated with 20 mg MMI for the first 2 months and variable doses thereafter for the next 10 months to maintain euthyroidism. Serum T4, T3, and TSH were measured monthly. Forty days after MMI was discontinued, I-ClO4 tests were repeated, and serum T4, T3, and TSH were measured every 2 months thereafter. Before MMI treatment, the I-ClO4 test was positive in 20 of 29 patients (69%) and negative in 9. The favorable responses (normal serum T4 and T3 values) to MMI therapy were similar in both groups. We have thus far studied 16 patients after MMI was discontinued and 9 of 12 patients (75%) with a negative I-ClO4 test after MMI therapy, and 1 of 4 patients (25%) with a positive test remained in remission for a mean of 7 months. We conclude that the I-ClO4 test is frequently positive in patients with untreated hyperthyroid Graves' disease, suggesting either an inability to organify the increased iodide concentrated by the hyperfunctioning gland or the concomitant presence of Hashimoto's thyroiditis, which almost always is associated with a positive I-ClO4 test. The former hypothesis is more likely, because many patients with a positive I-ClO4 test before MMI therapy had a negative test after MMI was discontinued.

Adult↗

Different growth hormone (GH) response to GH-releasing peptide and GH-releasing hormone in hyperthyroidism.

Altered GH responses to several pharmacological stimuli, including GHRH, have been found in hyperthyroidism. The mechanisms underlying these disturbances have not been fully elucidated. GH-releasing peptide-6 (GHRP-6) is a synthetic hexapeptide that specifically stimulates GH release both in vitro and in vivo. The mechanism of action of GHRP-6 is unknown, but it probably acts by inhibiting the effects of somatostatin on GH release. The aim of this study was to evaluate the effects of GHRP-6 on GH secretion in patients with hyperthyroidism (n = 9) and in control subjects (n = 9). Each subject received GHRP-6 (1 microg/kg, iv), GHRH (100 microg, iv), and GHRP-6 plus GHRH on 3 separate days. GH peak values (mean +/- SE; micrograms per L) were significantly lower in hyperthyroid patients compared to those in control subjects after GHRH alone (9.0 +/- 1.3 vs. 27.0 +/- 5.2) and GHRP-6 plus GHRH (22.5 +/- 3.5 vs. 83.7 +/- 15.2); a lack of the normal synergistic effect of the association of both peptides was observed in thyrotoxicosis. However, a similar GH response was seen in both groups after isolated GHRP-6 injection (31.9 +/- 5.7 vs. 23.2 +/- 3.9). In summary, we have shown that hyperthyroid patients have a normal GH response to GHRP-6 together with a blunted GH responsiveness to GHRH. Our data suggest that thyroid hormones modulate GH release induced by these two peptides in a differential way.

Adult↗

A possible role of immunoglobulin E in patients with hyperthyroid Graves' disease.

To investigate the possible participation of immunoglobulin E (IgE) in the autoimmune process of Graves' disease, incidence of elevation of serum IgE level, TSH receptor antibody (TRAb), and thyroid status were studied in 66 patients with hyperthyroid Graves' disease, 54 patients with Hashimoto's thyroiditis, 19 patients with bronchial asthma, and 15 patients with pollen allergy. In hyperthyroid Graves' patients, elevation of serum IgE levels (> or = 170 U/mL) was found in 19 of 66 patients (29%), 11 of whom had hereditary and/or allergic conditions. Elevations of serum IgE levels were found in 63% of patients with bronchial asthma and in 40% of patients with pollen allergy. Mean values of serum IgE were the same in patients with hyperthyroid Graves' disease and with bronchial asthma. During methimazole treatment TRAb decreased without fluctuation of IgE levels in both groups. The decrease in TRAb was significantly greater in patients with normal IgE than in patients with IgE elevation. After prednisone administration, reduction in TRAb was greater in patients with normal IgE than that in patients with IgE elevation. High incidence of IgE elevation in hyperthyroid Graves' disease and slower reduction in TRAb in association with IgE elevation suggest a difference in the autoimmune processes in Graves' disease with and without elevation of IgE.

Adolescent↗

Plasma polymorphonuclear elastase in patients with hyperthyroidism.

We studied plasma polymorphonuclear elastase (PMNE) levels before and during methimazole treatment in patients with hyperthyroidism. Plasma PMNE levels in patients with hyperthyroidism were significantly higher than those of normal subjects and patients with thyroid adenoma. Plasma PMNE levels in patients with Graves' disease were significantly reduced when their thyroid functions after methimazole treatment were normal, compared with the levels of the patients before treatment. In patients with hyperthyroidism there was a significant positive correlation between plasma PMNE and serum FT3, but no correlation between plasma PMNE and serum TRAb. The results suggested that PMNE was secreted from blood neutrophil in hyperthyroid state patients with Graves' disease and that it was beneficial for helping determining peripheral thyroid function.

Adenoma↗

A hyperthyroid patient with Graves' disease who was strongly resistant to methimazole: investigation on possible mechanisms of the resistance.

We treated a patient who was hyperthyroid due to Graves' disease and strongly resistant to methimazole (MMI): in spite of good compliance, she needed 150 mg of MMI daily to control her hyperthyroidism. To elucidate the reasons of resistance to MMI, her serum and intrathyroidal MMI concentrations were determined by high pressure liquid chromatography (HPLC). After taking a 30 mg dose of MMI, she had a similar serum MMI concentration-time curve to that of a normal subject: drug malabsorption and rapid drug metabolism were not evident when studied after surgical treatment. After her serum containing MMI was incubated with Protein G, the MMI concentration of the fraction not bound to Protein G did not change significantly from that of untreated serum: the possibility of anti-MMI IgG antibody production was considered unlikely. Furthermore, the intrathyroidal concentration of MMI in a surgically obtained tissue specimen was 3 micrograms/g wet tissue and appeared to be comparable with those of other Graves' tissues reported. Considering that the patient had been taking 150 mg per day of MMI by the time of thyroidectomy, her intrathyroidal MMI concentration was relatively low, suggesting possible impairment of intrathyroidal MMI accumulation. The possibilities of impaired intrathyroidal actions and the severity of hyperthyroidism, especially high T3 levels, also remained as possible causes. In conclusion, here was a severely hyperthyroid patient who was poorly responsive to conventional doses of MMI, and impairment of thyroid uptake of MMI or of pathways after uptake were considered as possible mechanisms.

Adult↗

The management of hyperthyroidism due to Graves' disease in Japan in 1988. The Japan Thyroid Association.

The management of hyperthyroidism due to Graves' disease in Japan was the subject of a survey of the members of the Japan Thyroid Association (JTA), and the results were compared to those of the European Thyroid Association (ETA). In the questionnaire, in vivo and in vitro diagnostic procedures, the choice of treatment and the details of the treatment for a patient with typical, moderate and uncomplicated hyperthyroidism due to Graves' disease was at first asked, and eight variations with a single alternative were proposed to evaluate how each alternative would affect the choice of treatment. For the diagnostic procedures, thyroid uptake/scintigraphy was carried out by approximately 60% of the respondents and the isotope mainly used was 123I. The number of in vitro tests used for diagnosis averaged 8.1 +/- 1.8 tests. Measurements of basal TSH and free T4 were the most frequent tests performed to confirm the diagnosis of hyperthyroidism (94 and 80%, respectively). Determinations of microsomal, thyroglobulin and TSH-receptor autoantibodies were also employed by many respondents (96, 96 and 77%, respectively). On the other hand, the free T4 index and TRH test were less frequently employed. In the treatment of these patients, antithyroid drug treatment was the first choice, and surgery was not, in general, regarded as a primary therapy except in a patient with a large goiter. The frequency of the respondents who advocated radioiodine therapy was considerably higher for patients with recurrences and old age. No respondents proposed radioiodine therapy for young patients. Specialists tended to favor their own specialist treatment regimens. The initial dose of antithyroid drugs was reduced according to thyroid function, and withdrawal of antithyroid drug treatment was determined by some specific criteria (basal TSH in supersensitive assays, TSH-receptor autoantibodies, T3 suppression test, etc.). The aim of radioiodine therapy and surgery was to restore euthyroidism. The significant differences between the results from the JTA and those from the ETA were as follows; radionuclide used for thyroid uptake/scintigraphy was mainly 123I in Japan, but 131I in Europe, the number of diagnostic studies in Japan was more than that in Europe, and the dosage of antithyroid drugs was reduced according to thyroid function and discontinued based on certain specific criteria in Japan, but after fixed periods in Europe. These results may represent actual trends in how hyperthyroidism due to Graves' disease is managed in specialist clinics in Japan today and the differences between the JTA and the ETA.

Antithyroid Agents↗