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[Radioiodine (131I) as the only treatment of hyperthyroidism. Results of 10 years of experience].

This work present the results of the use of 131I, as first line and only, antithyroid treatment, applied to 120 patients suffering from autoimmune hyperthyroidism, compared to 64 patients with toxic goiter and adenoma. The diagnostic weight of the determination of the various antithyroid antibodies was assessed in the identification of autoimmune hyperthyroidism, for which TRAb and TPO Ab are the most significant. The evolution after treatment of a preexisting ophthalmopathy (i.e. Graves'disease) was never found to be alarming and in most cases regularly improved with time. A single case (out of 72) of autoimmune hyperthyroidism with no preexisting sign developed a severe ophthalmopathy after treatment, which was well controlled thereafter. Mean cumulated 131I doses to control hyperthyroidism were 22.8 mCi for toxic goiter, 21.6 mCi for adenoma, 14.1 mCi for autoimmune hyperthyroidism and 16.7 mCi for Graves'disease. Post 131I hypothyroidism was found in 28.2% of toxic goiters, 12.1% of adenomas, 66% of autoimmune hyperthyroidisms and 70% of Graves'disease. No relapse was observed after treatment. A surgical indication was proposed for cases requiring more than two 131I doses to control hyperthyroidism.

Adenoma↗

[Respiratory muscle function and serum enzymology in hyperthyroidism before and after treatment].

To investigate the effect of hyperthyroidism on respiratory muscle function and its possible mechanism, the thyroid function, serum enzymology, serum potassium, pulmonary function and respiratory muscle function were examined in 60 patients with Grave's disease before treatment and 26 patients among them after treatment, and 20 normal subjects as control. T3, T4, and FT4 increased while FVC and PImax, which reflect the respiratory muscle strength, and Pi/PImax, which reflects the reserve capacity of inspiratory muscle, decreased significantly in the 60 patients with Grave's disease, compared with the ones of normal subjects. The comparison of above measurements in the 26 patients between before- and after-treatment showed that respiratory muscle strength increased obviously along with the improvement of throid function. The serum enzymology, potassium and TSH, however, were not abnormal and not changed after treatment. The thyroid functions in 10 patients with hyperthyroid heart disease were not different, compared with the ones of other 50 patients without hyperthyroid heart disease, but their respiratory muscle strength was significantly lower than the ones of latter. The above results suggested that hyperthyroidism could lead to significant decrease of respiratory muscle strength and its reserve capacity, whereas treatment for hyperthyroidism would improve respiratory muscle function, so the measurement of respiratory muscle function in hyperthyroidism cases might be useful in prediction of hyperthyroid heart disease.

Adult↗

[A clinical study on coincidence with hyperthyroidism and thyroid carcinoma].

OBJECTIVE: A retrospective study has been carried out to evaluate the prevalence of coincidence with hyperthyroidism and thyroid carcinoma. METHODS: 394 patients underwent surgery for hyperthyroidism and 245 patients suffered from thyroid cancer were chosen for the study in our hospital from January 1983 to June 1998. RESULTS: Thyroid cancer and hyperthyroidism coincided in 12 patients. The incidence of thyroid cancer was 3.0% (12/394) in hyperthyroidism, and the incidence of hyperthyroidism was 4.9% in thyroid cancer. There were 7 female and 5 male, with a diffuse goiter (n = 3), a diffuse goiter with a cold nodule (n = 3), multinodular goiter (n = 6). Among the 12 patients, 7 patients had an occult thyroid cancer with a diameter of 1 cm or less, most of them with papillary carcinoma, less frequently had metastases, 4 patients had thyroid cancer with a diameter of 3 cm or more, and 3 patients had metastases. CONCLUSIONS: The prevalence of coincidence with thyroid cancer and hyperthyroidism is more than that of thyroid cancer in population. Diagnostics for exclusion of thyroid cancer is required carefully even in the presence of hyperthyroidism.

Female↗

[Cardiac and plasma catecholamine response to dynamic exercise in hyperthyroidism].

To investigate cardiac and sympathoadrenal responses to dynamic exercise, heart rate, systolic blood pressure, serial plasma norepinephrine (NE) and epinephrine (E) concentrations during multistage treadmill exercise were measured in 24 hyperthyroid patients (mean age; 42 +/- 16) and 24 age-sex matched control subjects. Eleven patients were re-examined in the euthyroid state after antithyroid therapy. Exercise duration was shorter in patient with hyperthyroidism. Also, the heart rates and systolic blood pressures at rest and in the early stage of exercise were significantly higher in hyperthyroidism. NE at rest (normal vs hyperthyroid: 124 +/- 10 vs 80 +/- 7 pg/ml, p < 0.01) and NE at peak exercise (475 +/- 38 vs 310 +/- 38 pg/ml, p < 0.01) were lower in hyperthyroidism. E at rest (22 +/- 2 vs 29 +/- 4 pg/ml, n.s.) did not differ, however, E during the first stage of exercise (30 +/- 3 vs 69 +/- 12 pg/ml, p < 0.01) was higher in hyperthyroidism. Re-examination for the euthyroid state revealed the decreases in the heart rates and systolic blood pressures at rest and in the early stage of exercise, and the normalization of the NE and E response. Thus, patients with hyperthyroidism was in the hyperdynamic cardiac state at rest and during dynamic exercise, which was accounted for by decreased sympathetic nervous activity and increased adrenomedullary responses. These modifications of sympathoadrenal response seemed reversible when patients were controlled by antithyroid therapy.

Adolescent↗

[Serum activity of angiotensin-converting enzyme and osteocalcin levels in hyperthyroidism].

This study was carried out in order to investigate serum changes of osteocalcin (BGP) and angiotensin converting enzyme (SACE) activity in a group of patients with hyperthyroidism. We studied 20 hyperthyroid patients (F 14, M 6; age mean 37.5 +/- 16.8 years) and 13 control subjects (F 11, M 2; age mean 40.3 +/- 7.5 years). In both patients and controls we measured: FT3, FT4, T3, T4, TSH, BGP, SACE. Finally, in patients with hyperthyroidism a TRH test and functional investigations were also performed. We observed that mean SACE levels were significantly increased in hyperthyroid patients (32.06 +/- 10.3 nmol/ml/min) in respect to control subjects (14.66 +/- 3.88 nmol/ml/min) (p = 2.02 E-6). Similarly serum BGP levels were significantly increased in hyperthyroid patients (5.94 +/- 2.55 ng/ml) than in control subjects (2.89 +/- 1.58 ng/ml) (p = 5.66 E-4). There was a significant linear correlation between SACE and T4 levels (r = 0.48; p < 0.05), between serum BGP and T4 (r = 0.50; p < 0.02) and furthermore between SACE and BGP (r = 0.57; p < 0.01). In conclusion both serum BGP and SACE levels are increased in patients with hyperthyroidism and are directly correlated between than and with indexes of thyroid function; therefore, they may be regarded as peripheral indexes of hyperthyroidism.

Adult↗

The effect of intraperitoneal melatonin supplementation on the release of thyroid hormones and testosterone in rats with hyperthyroid.

OBJECTIVE: Melatonin has a general inhibitory effect on the reproductive system and thyroid functions. Testosterone secretion increases in parallel to thyroid hormones in hyperthyroidism. The aim of this study was to investigate the effects of melatonin application on total T3, T4 and testosterone in hyperthyroid rats. METHODS: This study was performed on 4 groups each consisted of 6 male Spraque Dawley rats. Control group (G1); sham group (G2); applied 0.5 ml/day of serum physiologic intraperitoneally for 2 weeks, hyperthyroid group (G3); applied 0.3 mg/kg/day thyroxine intraperitoneally for 2 weeks, and hyperthyroid and melatonin supplemented group (G4); applied 0.3 mg/kg/day thyroxine and 3 mg/kg/day melatonin. Blood samples taken by way of decapitation were analysed for total T3, T4 and testosterone by RIA. RESULTS: Serum total T3 and total testosterone levels were the highest in hyperthyroid group (G3), whereas in hyperthyroid and melatonin supplemented group (G4) were the lowest (P<0.001). Total T4 levels were higher in group 3 than group 1, 2 and 4 (P<0.001). CONCLUSION: Results revealed that melatonin supplementation in hyperthyroidism suppress secretion of thyroid hormones and testosterone secretion.

Animals↗

Changes in lipid peroxidation and free radical scavengers in kidney of hypothyroid and hyperthyroid rats.

Kidney weight was significantly decreased in hypothyroidism (induced by Na131I administration) and increased in hyperthyroidism (induced by thyroxine treatment) as compared to control in female Wistar rats. The tissue lipid peroxidation level remained unchanged in hyperthyroid rats but significantly increased in hypothyroid rats. Superoxide dismutase was decreased in both experimental groups but more so in hyperthyroid rats. Catalase was reduced significantly in hyperthyroid rats but remained unaffected in hypothyroid rats. Tissue glutathione peroxidase (GPx) activity was increased while reduced glutathione levels remained unaltered in both hypothyroid and hyperthyroid rats. Plasma GPx activity was significantly low in both the hypothyroid and hyperthyroid rats. The results suggest alterations in the oxidative stress in hypothyroid and hyperthyroid rat kidneys with concomitant changes of free radical scavengers.

Animals↗

[Anesthesia in the surgery of hyperthyroidism at Le Dantec Teaching Hospital].

Authors report a study of 66 patients admitted to the clinic ORL of CHU Le Dantec between 1991 and 2000 for goiter and hyperthyroidism. They evaluate the perioperative management and underline the importance of the medical preparation. The age of patients varied between 15 and 74 years. There were 62 women and 4 men. Fifty three patients presented clinical and biological hyperthyroidism. Thirteen patients had functional hyperthyroidism without clinical signs of thyrotoxicosis. Exophthalmia was present in 20 patients. Twenty one patients have been addressed to the Internal Medicine service for preoperative management of hyperthyroidism. Forty five patients have been operated under general anaesthesia. The medical preparation comprised antithyroid drugs and beta-blockers. We found as complications 3 cases of difficult intubation, 7 cases of peroperative haemorrhage and 1 case of acute thyroid crisis. The anaesthesia for surgery of hyperthyroidism is currently well codified and operative outcome became simple. The medical preparation in case of hyperthyroidism allows to return the patient in euthyroidism and reduces considerably the acute thyroid crisis risk, the most fearsome complication and the most feared of the hyperthyroidism.

Adolescent↗

A more appropriate algorithm of thyroid function test in diagnosis of hyperthyroidism for Thai patients.

BACKGROUND: Thyroid function test is an essential tool in the diagnosis of thyroid dysfunction. To date, it is still controversial which diagnostic algorithm is best applicable to clinically hyperthyroidism patients. OBJECTIVE: To compare various algorithms of thyroid function tests in the diagnosis of hyperthyroidism. METHOD: Patients from the endocrine clinic, King Chulalongkorn Memorial Hospital were investigated for thyroid function tests (T3, T4, FT3, FT4 and TSH). Hyperthyroidism was defined as an elevated either FT3 or FT4 with suppressed TSH. The authors compared the effectiveness in hyperthyroidism diagnosis among algorithms by using sensitivity, specificity, positive predictive value and negative predictive value. RESULTS: Of all 452 patients in the present study, 94.24 percent were women. There were 206 hyperthyroidism, 30 subclinical hyperthyroidism, 1 subclinical hypothyroidism, 8 primary hypothyroidism and 207 normal subjects. The incidence of T3 toxicosis was 16.02% while that of T4 toxicosis was 2.16%. After the effectiveness analysis of these algorithms, FT3 and TSH is the most optimal test with 97.57% sensitivity and 100% specificity. Compared to FT4 and TSH, it gave 83.98% sensitivity and 100% specificity. CONCLUSION: According to the high incidence of T3 toxicosis in the present study, FT3 and TSH should be the initial test for diagnosis of hyperthyroid patients in an outpatient setting and FT4 should be measured subsequently in case of suspected T4 toxicosis.

Adult↗

Evaluation of ionized and total serum magnesium concentrations in hyperthyroid cats.

Hyperthyroidism can increase the renal excretion of magnesium and thus cause hypomagnesemia in various species. Anaerobically collected blood samples from 15 hyperthyroid and 40 normal, healthy cats were analyzed with an ion-selective electrode analyzer and a serum biochemical analyzer. There was no significant difference in ionized or total serum magnesium concentration between the 2 groups, but there was a significant difference (P = 0.004) in the ratio of ionized to total serum magnesium concentrations between the healthy cats and the hyperthyroid cats with thyroxine (T4) concentrations at or above the median. There was a significant correlation (r = 0.894, P = 0.000) between the ionized and total magnesium concentrations in the hyperthyroid cats. The hyperthyroid cats had a significantly lower (P = 0.003) total serum protein concentration than the healthy cats. A significant negative correlation (r = -0.670, P = 0.006) was detected between the ionized magnesium and logarithmically transformed total T4 concentrations in the hyperthyroid cats, which suggests that the severity of hyperthyroidism may contribute to a decrease in the ionized magnesium concentration.

Animals↗

Effect of hypoxia and catecholamine stimulation on cardiac performance in the isolated working hyperthyroid rat heart.

The hyperthyroid heart has a greater oxygen demand due to its enhanced contractile state and higher basal metabolic rate. Consequently, it may be more sensitive to conditions of decreased oxygen supply or increased oxygen use. We, therefore, investigated the effect of a restricted oxygen supply (hypoxia) and enhanced oxygen demand (catecholamine stimulation) on cardiac function in the isolated working hyperthyroid heart. Hypoxia was induced by substituting 20% of the oxygen in the perfusate with nitrogen, while catecholamine stimulation was with isoproterenol. Hypoxia caused a 37% drop in cardiac output in the hyperthyroid heart and a 10% decrease in euthyroid hearts. In response to isoproterenol, a dose-dependent increase in heart rate was found in both groups which was greatly augmented in the hyperthyroid hearts by hypoxia. With isoproterenol stimulation under normoxic conditions, euthyroid hearts showed a moderate increase in contractile performance (cardiac output and dP/dtmax), while in hyperthyroid hearts contractile performance declined. Hypoxia exacerbated the decrease in function of the hyperthyroid heart. In conclusion, our results indicate that the hyperthyroid heart is very sensitive to imbalances in the myocardial oxygen supply/demand ratio, especially when demand is increased in the presence of decreased supply.

Animals↗

Low serum thyrotropin (thyroid-stimulating hormone) in older persons without hyperthyroidism.

We studied a large population (n = 2575) of unselected ambulatory persons older than 60 years to determine the prevalence of a low serum thyroid-stimulating hormone (TSH) level, ie, of less than 0.1 mU/L using a sensitive assay, a level suggestive of hyperthyroidism in younger adults. One hundred one persons (3.9%) had a low serum TSH level. About half of them (51/101) were taking thyroid hormone. Of the remainder, 44 were not hyperthyroid did not become so during up to 4 years of follow-up. Forty-one of the 44 euthyroid persons had a serum thyroxine level of less than 129 nmol/L; repeated testing showed a serum TSH level of more than 0.1 mU/L in the three euthyroid persons with a serum thyroxine level of more than 129 nmol/L. Only six were hyperthyroid or became so during the follow-up period; all had a serum thyroxine level of more than 129 nmol/L. Routine clinical examination was not a sensitive indicator of hyperthyroidism and did not permit discrimination from euthyroidism. A low value of serum TSH alone, while it had high sensitivity and specificity for hyperthyroidism, had a low positive predictive value (12%) for this diagnosis; addition of the thyroxine assay raised the predictive value fivefold to 67%. A low value of serum TSH is far more common in older persons than is hyperthyroidism. Low values in euthyroid persons are accompanied by a clearly normal serum T4 concentration (less than 129 nmol/L) or by a serum TSH level of more than 0.1 mU/L on repeated testing. We recommend measurement of the serum TSH thyroid concentration, using a sensitive assay, as the initial step in testing any older person for possible hyperthyroidism. Measurement of the serum T4 concentration or the free T4 index on the same sample would be needed only in the approximately 2% with a serum TSH level of less than 0.1 mU/L; alternatively, the TSH assay in these could be repeated at a later time.

Aged↗

[The risk of recurrence following the thyrostatic treatment of immunogenic and nonimmunogenic hyperthyroidism].

Data of 196 patients treated for hyperthyroidism exclusively with antithyroid drugs were analyzed retrospectively concerning the relapse rate within a follow-up period of four years. Patients were subdivided for primary or recurrent disease, and for immunogenic or non-immunogenic hyperthyroidism, respectively. In immunogenic as well as in non-immunogenic hyperthyroidism, the relapse rate was significantly lower for patients with primary disease (35% and 52%, respectively) compared to those with recurrent hyperthyroidism (82%, p less than 0.001 and 83%, p less than 0.001, respectively). In patients with primary disease, clinical, biochemical and scintigraphic parameters were tested with respect to their capability of predicting a relapse. For immunogenic hyperthyroidism the highest relapse rates were observed in young patients and in those with large goitres, whereas for non-immunogenic hyperthyroidism they were highest in old patients, in those with nodular goitres and in those without an increased urinary iodine excretion at the time of diagnosing hyperthyroidism.

Adolescent↗

[Incidence of autonomy and immune hyperthyroidism before and following preventive use of iodized salt in the Berlin-Brandenburg area].

The incidence of hyperthyroidism was observed in the area of Berlin (1.2 million inhabitants) and in a rural district in the geographical region of the "Mark Brandenburg" (48.115 inhabitants) during the period from 1975 und 1989. This area is characterized with a iodine deficiency grade II (WHO). In 1985 an iodine salt supplementation was introduced by law. The period before iodine salt supplementation 1975-1985 was compared to the period after iodine prophylaxis: there was an increase in hyperthyroidism in the Berlin-area by the ratio 1:3.1 and 1:2.8 (1975-83 compared to 1988 and 1989), in the rural district by 1:1.7 (1980-1985 compared to 1986/87). The ratio autonomy (non immunogenic form) to immunogenic etiology was 1:12 (1977-83), and changed to 1:1.45 in 1988 and 1:16.3 in 1989 after iodine supplementation. The sex ratio male:female was 1:10 before, and 1:6.8 after prophylaxis for hyperthyroidism in total, in autonomy the ratio was observed as 1:12 before and 1:7.7 (1988), 1:4.7 (1989) after supplementation, in immunogenic hyperthyroidism 1:10 unchanged in the early and late period of observation. The increase of hyperthyroidism after iodine prophylaxis correlated well with the consumption of thyrostatic drug Thiamazol (Methimazol) for the whole country. The defined daily dose (DDD)/1000 inhabitants/day increased during the observation time from 0.5 (1984), 0.55 (1985), 0.66 (1986), to 1.47 (1987), 1.26 (1988) and 0.81 (1989). The results are compared and discussed with reports from USA, Iceland, Great Britain, Denmark, Italy and Tasmania. During the period of seven years (1980-87) in the rural district a seasonal dependence of onset in hyperthyroidism was observed in spring time between May and June only in immunogenic hyperthyroidism, despite in thyroidal autonomy the disease began throughout the year without a seasonal peak.

Berlin↗

[Clinical analysis of 36 cases of coexistent hyperthyroidism with idiopathic thrombocytopenic purpura].

36 cases of coexistent hyperthyroidism and idiopathic thrombocytopenic purpura (ITP) were reported. There were 33 cases of overt hyperthyroidism with ITP. After treatment with antithyroid drugs the platelet count returned to normal in 29 and somewhat increased in the remaining four cases. The other three cases had ITP accompanied by hyperthyroidism. In 2 cases the platelet count decreased when they had accompanying hyperthyroidism. When the thyroid function returned to normal after antithyroid treatment, the platelet count returned to normal in one and increased in another. The authors discussed the association between hyperthyroidism and ITP and treatment of coexistent hyperthyroidism and ITP. Probable mechanisms causing thrombocytopenia in hyperthyroidism were discussed also.

Adult↗

Treatment of hyperthyroidism in community hospital.

The preferred treatment of hyperthyroidism remains controversial. Most of this data is derived from large, university-based medical centers. We report here our experience with treatment of hyperthyroidism in a community setting. This involves 144 patients with hyperthyroidism who were seen over a 10 year period at Michigan State University Clinical Center and were treated in the community hospitals and private physicians' offices, and by community surgeons. Follow-up data were available on 119 of these patients; 105 of them were hyperthyroid because of Graves' disease and multinodular goiter. Patients were encouraged to make their own decisions regarding choice of therapy, as independently as possible. Sixty-five percent of these patients were treated by 131I, 18% by antithyroid drugs, and 17% by surgery. The mean follow-up period was 2.5 years (range 2 months to 19 years). Hyperthyroidism was controlled in 84% of the patients treated by 131I and 83% of the patients treated by surgery. Forty percent of the patients treated by 131I and 33% treated by surgery became hypothyroid. Fifty percent of the patients achieved remission when treated by antithyroid drugs alone. Our results indicate that when patients are encouraged to make their own decisions regarding the treatment of hyperthyroidism, their choices are similar to those of the thyroidologists. Secondly, the results obtained with different modalities of treatment for hyperthyroidism in a community setting are similar to those obtained in university medical centers.

Adolescent↗

Alkaline phosphatase isoenzymes in plasma in hyperthyroidism.

Alkaline phosphatase (ALP; EC 3.1.3.1) isoenzymes were measured in the plasma of 63 untreated hyperthyroid patients (the hyperthyroid group), 58 treated hyperthyroid patients, and 100 blood donors. Total, liver, and bone ALP activities were significantly higher in the hyperthyroid group than in the treated hyperthyroid group or the blood donors. Bone ALP was more frequently and more markedly abnormal than liver ALP. Intestinal ALP did not differ significantly between the groups. The hyperthyroid patient group had significantly higher plasma calcium concentrations and lower serum parathyrin concentrations than those of the treated hyperthyroid group.

Adult↗

[Clinical aspects of hyperthyroidism in areas of different supplies of iodine. Results of a European prospective study].

Clinical aspects of 924 unselected patients with hyperthyroidism from 17 thyroid centres of 6 European countries were investigated in a prospective study for exactly 1 year. Serum samples were centrally assayed for thyroid hormones, thyroid autoantibodies and TSH-binding inhibiting immunoglobulins (TBII), and urine samples for iodine. 26 items of information per patient were computerized and evaluated. Forming 2 groups from iodine-deficient areas (IDA) and iodine-sufficient (ISA) according to the urinary iodine, it was possible to elucidate some characteristics independently of local factors. The most important findings were: 1. Three types of hyperthyroidism were described: Graves' disease was defined as hyperthyroidism with eye symptoms and/or the presence of measurable TBII; autonomous adenomas were defined by a single hot nodule in the thyroid scan; the remainder included TBII negative hyperthyroid patients as well as non-immunogenic forms of hyperthyroidism (toxic multinodular goiter and other multifocal autonomies). These were termed "non-classifiable" patients. Graves' patients, representing an average of 60% of the patients, have an age peak between 40 and 49 years; they are 10 years younger than unclassified hyperthyroid patients and 20 years younger than patients with autonomous adenoma, who represented 9.2% of the patients. Surprisingly, there was no difference in the prevalence of Graves' disease between IDA and ISA. 2. An unexpectedly high rate of 10.5% of hyperthyroid patients (Graves' disease 8.5%, non-Graves' disease 14.2%) had no goiter, a figure increasing in the elderly to almost 17%. In IDA the thyroid was larger and the goiter more often nodular than in ISA. IDA are characterized by significantly higher rates (11.3%) of autonomous adenoma than ISA (3.2%). 3. 59.4% of 507 patients with Graves' disease had eye symptoms, 44.6% of at least grade II or higher using the Werner classification. There was no difference between patients from ISA and IDA. We found unilateral ophthalmopathy in 6.7% of Graves' patients. 4. The median iodine excretion was calculated from urinary iodine after exclusion of values over 250 micrograms iodine/g creatinine, arbitrarily defined as iodine contamination. In IDA the median iodine excretion was 63.6, and in ISA 105 micrograms/g of creatinine. 5. Surprisingly, proven iodine contamination was as frequent in IDA (14.5%) as in ISA (15.2%). In the survey protocol, however, this was noticed less often by physicians in ISA.(ABSTRACT TRUNCATED AT 400 WORDS)

Adolescent↗