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[Myasthenia gravis and hyperthyroidism: two cases].

It is well known that hyperthyroidism occurs in approximately 2 to 17.5% of patients with myasthenia gravis. Hyperthyroidism may influence the clinical course of myasthenia gravis. We report the cases of two patients, a 53-year-old man and an 18-year-old woman, who had both severe myasthenia gravis and hyperthyroidism due to Graves' disease. Myasthenia gravis affected in particular facio-ocular areas with diffuse myopathy and signs of neuromuscular block on the electromyogram. In one patient, the diagnosis of thyroid disease was made three months before the diagnosis of myasthenia gravis while in the other, thyroid disease was recognized four months after myasthenia gravis. Myasthenia gravis worsened after the development of hyperthyroidism in the second patient. Both patients were given anti-cholinesterase drugs. One underwent thymectomy. Radioiodine used for the treatment of hyperthyroidism improved the symptoms of myasthenia gravis in the first patient. The association of myasthenia gravis and hyperthyroidism is more than a coincidence; our cases illustrate the difficult diagnosis and management of these diseases. Clinicians should look for myasthenia gravis in hyperthyroid patients and vice versa, especially when symptoms of myasthenia gravis or hyperthyroidism worsen.

Adolescent↗

HLA class II distribution in Congolese with hyperthyroidism: preliminary results.

OBJECTIVE: Incidence of the hyperthyroidism is continuously increasing, whereas our knowledge concerning the facilitating or etiologic factors of this increase are still partial. To evaluate some of these unknown factors, we started this preliminary study, in order to identify HLA genes in hyperthyroid Congolese, and to determine their susceptibilty in the appearance and development of hyperthyroidism at the Hospital Clinic of Kinshasa. MATERIALS AND METHODS: Nine Congolese women with hyperthyroidism, and thirteen healthy controls (3 women and 10 men) were examined and compared for HLA-DR and HLA-DQ genes analyses, from August 2000 to August 2002. DRB1 and DQB1 alleles were identified, using the Polymerase Chain Reaction (PCR) and immobilized sequence-specific oligonucleotide (SSO HLA-DRB1 and DQB1 test) probes assays. RESULTS: In the group with hyperthyroidism, three alleles (HLA-DR1, HLA-DR2, HLA-DR3) and an allele group (HLA-DR11,13,14) were found for DRB1 locus, while only one allele (HLA-DQB1*0602) was identified for DQB1 locus; allele group HLA-DR11,13,14 was the most frequent (allele frequency=0.50), followed by HLA-DR3 allele (allele frequency=0.222); 6 haplotypes were observed, with predominance of haplotype DR3/DR11,13,14 (genotype frequency=0.333), followed by haplotype DR11,13,14/DR11,13,14-DQB1*0602 (genotype frequency=0.222). In the group of healthy controls, three alleles (HLA-DR2, HLA-DR3, HLA-DR4) and an allele group (HLA-DR11,13,14) were identified for DRB1; HLA-DR2 allele was predominant (allele frequency=0.615), followed by allele group HLA-DR11,13,14 (allele frequency=0.231); a statistic significant difference was observed between the frequencies of DR2 allele and allele group DR11,13,14 in the healthy controls compared to those of hyperthyroid patients (p=0.02); 6 haplotypes were also detected in this group, the most frequent haplotype being HLA-DR2/DR2-DQB1*0602 (genotype frequency=0.540 versus 0.333 in the hyperthyroid group) (p=0.048). HLA-DQB1*0602 was dominant in the healthy controls group (allele frequency=0.890), versus HLA-DQB1*0302 (allele frequency=0.110). CONCLUSIONS: HLA-DR2, HLA-DQB1*0602 and DR2/DR2-DQB1*0.602 would play a protective role against the hyperthyroidism, while DR3 allele, allele group DR11,13,14 and haplotype HLA-DR3/DR11,13,14 would predispose to this disease or to Graves' exophtalmopathy. A large and profound study is needed to confirm our preliminary results.

Child↗

Gonadal steroids and gonadotropins in hyperthyroidism.

Gynecomastia occurs in about 20 to 40 per cent of men with hyperthyroidism. Serum concentrations of total estradiol-17beta, total testosterone, and luteinizing hormone are supranormal in these patients. Serum concentration of SHBG is also high in hyperthyroidism. This can explain the high serum testosterone, essentially completely but not the high serum estradiol-17beta; thus, whereas serum unbound testosterone is normal, serum unbound estradiol-17beta is above normal in hyperthyroid men. This balance in relative concentrations of unbound gonadal steroids is apparently quite favorable to the development of gynecomastia in hyperthyroidism. Increased peripheral tissue metabolism of androgens to estrogens seems to be the major factor responsible for high estradiol-17beta in hyperthyroidism; increased glandular secretion of estradiol-17beta may also be important. The mechanism of hypomenorrhea or amenorrhea in hyperthyroidism remains unclear. Changes in circulating estrogens, androgens, and luteinizing hormone in hyperthyroid women are similar to those in hyperthyroid men. The mid-cycle ovulatory peak of luteinizing hormone may be blunted in patients with scanty periods whereas it may be altogether absent in those with amenorrhea.

Androgens↗

Systolic pulmonary artery pressure and serum uric acid levels in patients with hyperthyroidism.

BACKGROUND: The aim of this study was to investigate systolic pulmonary artery pressure (SPAP) and serum uric acid (SUA) levels in patients with hyperthyroidism and after euthyroid state was reached. METHODS: Twenty five (10 male, 15 female, mean age 49.8 +/- 11.6 years) consecutive patients with hyperthyroidism (18 due to toxic nodular goiter, seven to Graves' disease) and 25 (eight male, 17 female, mean age 48.7 +/- 8.7 years) healthy controls were included in the study. Thyroid hormones, SUA, glucose, urea, creatinine, and transthoracic echocardiography were performed in all patients. All tests were repeated after treatment of hyperthyroidism. RESULTS: Mean SPAP and SUA levels in patients with hyperthyroidism were significantly higher than in controls (30.4 +/- 8.5 vs. 22 +/- 3.7 mmHg, p <0.0001, and 5.1 +/- 1.1 vs. 4.3 +/- 0.5 mg/dL, p = 0.004, respectively). Elevated SPAP and SUA levels in patients with hyperthyroidism decreased significantly after treatment to levels comparable with controls (24.4 +/- 5.4 mmHg, p = 0.001 and 4.6 +/- 0.9 mg/dL, p = 0.002, respectively). Correlation between SPAP and SUA levels, however, was not significant in hyperthyroid population and after euthyroid stage was reached (r = 0.34, p = 0.097, and r = 0.256, p = 0.216, respectively), possibly due to relatively low number of patients (overall correlation of SPAPs and SUAs was r = 0.4, p <0.0001). CONCLUSIONS: Hyperthyroidism should be included in differential diagnosis of pulmonary arterial hypertension. However, further investigations are needed to determine the exact mechanism between hyperthyroidism and pulmonary hypertension.

Adult↗

[Incidence and characteristics of clinical and sub-clinic hyperthyroidism].

OBJECTIVES: Estimate the incidence of hyperthyroidism in the region of Lleida and compare patients with clinic and subclinic hyperthyroidism. DESIGN: Descriptive retrospective. LOCALIZATION: City of Lleida and the towns of the provinces of Lleida and Huesca. PATIENTS: 190 people diagnosed of hyperthyroidism detected from a sample of 1885 patients with different pathologies, belonging to first visits to de Service of Endocrinology of the Hospital Arnau de Vilanova, during the period from 1999 to 2000. MAIN MEASUREMENTS: The following clinic and demographical variables related to the thyroid pathology were recorded: TSH, T(4), T(3), anti-Tg antibodies, anti-TPO antibodies, age, gender, consumption of salt with iodine and the incidence tax of hyperthyroidism. RESULTS: The incidence tax of hyperthyroidism in the province of Lleida was 46.2 ×10(5) people/year (95% CI, 33.5-61.0). For the 190 patients, the 85% (95% CI, 79.4-90) of them were women; the 38% (95% CI, 31%-45.2%) and the 62% (95% CI, 54.8-69) were diagnosed of clinic and subclinic hyperthyroidism respectively. The subclinic profile was characteristically for had a superior mean of age (P<.003), double of TSH level (P<.03) and half of T(4) level of (P<.001). CONCLUSION: Our study shows a high incidence of hyperthyroidism, and a difference of the two hyperthyroidisms. The detection of this pathology by professionals of primary care can help to improve their therapeutic control.

Humans↗

Variable bone mass recovery in hyperthyroid bone disease after radioiodine therapy in postmenopausal patients.

OBJECTIVES: Long-term follow-up of postmenopausal hyperthyroid females after radioiodine therapy, since hyperthyroidism is known to cause impressive bone loss which may increase the risk of bone fractures. METHODS: Bone mineral density (BMD) and biochemical parameters of bone metabolism in hyperthyroid postmenopausal patients were investigated before and 2 years after radioiodine therapy and compared with euthyroid age-matched controls. RESULTS: At baseline, the incidence of low BMD with t-scores more than 2.5 S.D. below normal was significantly higher in hyperthyroid patients (54%) than in controls (20%, P<0.001). Regardless of initial BMD values, osteocalcin (OC) was also higher in all hyperthyroid patients (P<0.0001). After 2 years, all treated patients were euthyroid and OC levels were in the upper normal range. In hyperthyroid patients with initially low BMD, bone density values had increased significantly by +6.5% (P<0.008) as compared with baseline values. In contrast, hyperthyroid patients with initially normal BMD showed a further decrease in lumbar BMD values of -4.3% despite radioiodine treatment. BMD in euthyroid controls decreased by -6.5% within 2 years. CONCLUSIONS: We conclude that hyperthyroid postmenopausal patients with generally increased bone turnover may show individual differences in bone loss and BMD recovery after radioiodine treatment. The mechanisms for this variable manifestation of osteoporosis have still to be elucidated, since this has implications for prophylactic and therapeutic strategies in these elderly patients.

Aged↗

Surgical options for the treatment of hyperthyroidism in the cat.

Since the first description of feline hyperthyroidism in 1978, numerous treatment options for hyperthyroidism have been reported. Surgical removal of enlarged, autonomously functioning thyroid glands is one of the most commonly used treatment options. Affected cats must have a careful pre-operative evaluation to detect concurrent medical conditions such as renal disease or cardiomyopathy. Since more than 80% of hyperthyroid cats have neoplastic changes in both thyroid glands, bilateral thyroidectomy is necessary for treatment of the majority of hyperthyroid cats. Several different thyroidectomy techniques have been developed in an attempt to minimise potential post-operative complications associated with bilateral thyroidectomy such as hypocalcemia or recurrence of hyperthyroidism. Damage to or removal of all four parathyroid glands during bilateral thyroidectomy causes hypocalcemia, the most common post-operative complication. Recurrence of hyperthyroidism can occur months after initial thyroidectomy if residual adenomatous thyroid tissue is retained in the surgical site. The most effective surgical techniques for bilateral thyroidectomy involve preservation of at least one external parathyroid gland on the surface of the thyroid capsule. Additionally, the majority of the thyroid capsule must be removed to ensure that all neoplastic thyroid tissue is removed. The most recently described feline thyroidectomy techniques involve sequential removal of bilaterally affected thyroid glands. Staging a bilateral thyroidectomy allows time for ipsilateral parathyroid tissue to revascularise before the second thyroid gland is removed and the blood supply to the contralateral parathyroid glands is potentially interrupted. Thyroidectomy is a very effective treatment option for hyperthyroid cats. Surgical treatment of hyperthyroidism in cats offers permanent cure without chronic medical management. No specialised equipment other than standard surgical instrumentation and facilities are necessary. With practice, feline thyroidectomy can become a routine procedure in most veterinary hospitals.

Animals↗

Decreased activity and expression of intestinal oligopeptide transporter PEPT1 in rats with hyperthyroidism in vivo.

PURPOSE: To examine the effect of thyroid hormone status on PEPT1 in vivo, the activity and expression of PEPT1 in the small intestine were examined in euthyroid and hyperthyroid rats. METHODS: Hyperthyroidism was induced by treating rats with L-thyroxine (12 mg/L) in the drinking water for 21 days. Transport activity was measured by everted small intestinal preparations and in situ intestinal loop technique. Expressions of PEPT1 mRNA and protein were evaluated by competitive polymerase chain reaction and Western blotting, respectively. RESULTS: The uptake of [14C]glycylsarcosine by everted small intestinal preparations was significantly decreased in hyperthyroid rats, whereas that of methyl-alpha-D-[14C(U)]-glucopyranoside was not altered. Kinetic analysis showed that the Vmax value for [14C]glycylsarcosine uptake was significantly decreased in hyperthyroid rats, whereas the Km value was not affected. The mean portal vein concentrations after intrajejunal administration of [14C]glycylsarcosine were also decreased in hyperthyroid rats. Moreover, hyperthyroidism caused a significant decrease in the expression of PEPT1 mRNA in the small intestine, whereas the expression of Na+/glucose cotransporter (SGLT1) mRNA was not changed. The level of PEPT1 protein was also decreased in the small intestine of hyperthyroid rats. CONCLUSIONS: These results indicate that in hyperthyroid rats, the activity and expression of PEPT1 were decreased in the small intestine.

Alanine↗

Effect of hyperthyroidism and hypothyroidism on lipid and carbohydrate metabolism of the perfused rat liver.

1. Liver from hyper- and hypo-thyroid male fed rats were perfused with whole blood and their metabolism was compared with euthyroid controls. 2. Hyperthyroid livers produced more bile than controls and hypothyroid livers produced less. 3. Glucose output by all livers was similar; glycogen declined only during perfusion of hyperthyroid livers. Lactate uptake increased in hyperthyroid but decreased in hypothyroid livers. These results may be explained by changes in oxidation of carbohydrate rather than in gluconeogenesis. 4. Secretion of triacylglycerol was decreased in hyperthyroid and not changed significantly in hypothyroid livers. 5. Fractional extraction of infused [1-14C]oleate was unaltered. Hyperthyroid livers oxidized more oleate to CO2 and ketone bodies, esterified less and incorporated less into lipoproteins of d less than 1.006. Hypothyroid livers oxidized and esterified oleate to the same extent as controls; their decreased O2 consumption was due to diminished oxidation of other (non-lipid) substrates; 14C-labelled ketone-body formation was increased, but at the expense of 14CO2 production. 6. Lipogenesis (measured with 3H2O) was unaltered in hyperthyroid but was decreased in hypothyroid livers. Incorporation of 3H and 14C into triacylglycerol relative to phospholipid decreased in hyperthyroid and increased in hypothyroid livers. Cholesterol synthesis was similar in all perfusions. 7. During oleate infusion, the cytosolic redox state, as indicated by the perfusate [lactate]/[pyruvate] ratio, was decreased in hyperthyroid and increased in hypothyroid livers. No change in [3-hydroxybutyrate]/[acetoacetate] was detected. 8. The importance of relating the concentration of plasma non-esterified fatty acids to the interpretation of metabolic data obtained under differing thyroid status is emphasized.

Animals↗

A comparison of 20 or 40 mg per day of carbimazole in the initial treatment of hyperthyroidism.

OBJECTIVE: The optimal dosage regimen for carbimazole (CBZ) in the treatment of hyperthyroidism remains uncertain, despite clinical use of the drug for approximately fifty years. We have compared the early clinical and biochemical responses to 20 or 40 mg/day of CBZ given as initial treatment for hyperthyroidism. DESIGN: Prospective open multicentre trial. PATIENTS: Sixty-three patients presenting with hyperthyroidism. MEASUREMENTS: Serum total and free thyroid hormones, serum TSH and SHBG were measured at baseline and at 4 and 10 weeks after start of therapy. Weight, pulse and a symptom questionnaire were also monitored at 6 and 12 weeks. RESULTS: Patients randomized to a starting dose of 40 mg/day CBZ had lower total (98 +/- 10 vs 158 +/- 11 nmol/l, P < 0.001) and free T4 (19.4 +/- 2.6 vs 35.2 +/- 3.7 pmol/l, P < 0.001) and total (2.6 +/- 0.3 vs 4.3 +/- 0.4 nmol/l, P < 0.001) and free T3 (8.3 +/- 1.0 vs 13.7 +/- 1.2 pmol/l, P < 0.01) at 4 weeks than those receiving 20 mg/day. Clinical responses at 6 and 12 weeks (weight, pulse, symptom score) and SHBG concentrations were similar. Drug-related hypothyroidism was less likely to occur at 4 and 10 weeks in those patient who initially received 20 mg CBZ/day, but this dose was less effective at controlling hyperthyroidism in those with more severe hyperthyroidism with baseline TT4 > 260 nmol/l. CONCLUSIONS: In treating hyperthyroidism, 20 mg/day carbimazole is effective, convenient and has a lower risk than 40 mg/day of iatrogenic hypothyroidism in patients with mild or moderate hyperthyroidism. Higher doses are required for those with severe hyperthyroidism.

Adolescent↗

Moderate hyperthyroidism reduces liver amino nitrogen conversion, muscle nitrogen contents and overall nitrogen balance in rats.

There are conflicting data on the effect of thyroid hormones on nitrogen metabolism. We determined the basal blood amino nitrogen (amino-N) concentrations, the urea nitrogen (urea-N) synthesis rate and the maximum hepatic capacity of urea nitrogen synthesis during saturating infusion of alanine, in moderately acutely (24 h) and chronically (7 days) hyperthyroid rats and compared this with changes in organ nitrogen contents in muscles and kidney, nitrogen excretion and nitrogen balance. Forty-three rats were made acutely hyperthyroid through administration of 5 microg 100 g(-1) triiodothyronine twice daily (T3: 2.2 +/- 0.7 vs. 0.87 +/- 0.04 nmol L(-1), P < 0.01). Fifty-one rats were made chronically hyperthyroid through administration of 12.5 microg 100 g(-1) thyroxine twice daily (T3: 2.63 +/- 0.18 vs. 0.87 +/- 0.04 nmol L(-1), P < 0.01). Weight gain was halved in this group. Both acute and chronic hyperthyroidism increased basal blood amino-N concentration in both groups by 16% (4.5 +/- 0.15 vs. 3.9 +/- 0.13 mmol L(-1) and 4.7 +/- 0.12 vs. 3.9 +/- 0.13 mmol L(-1), respectively, P < 0.01), and decreased basal urea-N synthesis rate in both groups by 30% [2.7 +/- 0.3 vs. 4.1 +/- 0.3 micromol (min x 100 g)(-1) and 3.1 +/- 0.3 vs. 4.1 +/- 0.3 micromol (min x 100g)(-1), respectively, P < 0.01]. The capacity of urea-N synthesis during saturation fell in both groups by 35% compared with controls [6.5 +/- 0.4 vs. 9.3 +/- 0.5 micromol (min x 100 g)(-1) and 5.7 +/- 0.5 vs. 9.3 +/- 0.6 micromol (min x 100g)(-1), respectively, P < 0.01]. Nitrogen contents in the muscles, soleus and extensor digitorum longus, of chronically hyperthyroid rats decreased by 22% and 11%, respectively, whereas kidney N-content increased by 12% (P < 0.05). N-balance and urinary urea-N excretion fell by 30%, whereas faeces-N excretion increased by 80% in hyperthyroid rats. Overall liver function assessed by galactose elimination capacity did not differ among groups. Both acute and chronic moderate hyperthyroidism increase blood amino-N and decrease basal and maximum rate of urea formation. Furthermore, chronic hyperthyroidism reduces N-contents of muscles, urinary urea-N excretion and N-balance. Thyroid hormones thus mobilize muscle-N, whereas amino-N in the liver is spared from irretrievable conversion into urea.

Amino Acids↗

Effect of thyroid function on LDL oxidation in hypothyroidism and hyperthyroidism.

Oxidized low-density lipoproteins (LDL) are highly suspected of initiating the atherosclerosis process. Hypothyroidism is frequently associated with hypercholesterolemia and carries increased risk for atherosclerosis. In contrast to hypothyroidism, hyperthyroidism is not associated with increased LDL cholesterol, but is associated with increased oxidized LDL. This study was designed to evaluate the changes in LDL oxidation in subjects with hypothyroidism or hyperthyroidism, and to reveal the effects of treatment in hypothyroidism and hyperthyroidism on LDL oxidation and lipid profiles. Thirty-two patients with hypothyroidism and 16 patients with hyperthyroidism were studied before the therapy and thereafter, when they were euthyroid with appropriate treatment. Plasma lipids and lipoproteins, and the oxidizability of LDL by determining the levels of malonaldehyde bis (dimethyacetyl) (MDA) and diene conjugation, were determined at baseline and after the patients were rendered euthyroid. The actual content of dienes in LDL particles was increased in hypothyroidism, with a decrease after T4 supplementation (p < .001). Dienes in LDL particles were increased in hyperthyroidism, with a decrease after treatment (p < .05). In hypothyroid patients, the lag phase was shorter in the pretreatment period than in the euthyroid period (p > .05). The lag phase of hyperthyroid patients was shorter in the pretreatment period than in the euthyroid period and hypothyroid state (p < .001). The Cu2+-catalyzed dienes of LDL and MDA oxidation in the hypothyroid state and the subsequent euthyroid states were decreased (p < .001). The Cu2+-catalyzed dienes of LDL (p < .01) and MDA oxidation (p < .001) in hyperthyroid patients after treatment were decreased. The enhanced LDL oxidation may play a role in the cardiac disease process in both hypothyroidism and hyperthyroidism.

Adult↗

Hyperthyroidism, bone mineral, and fracture risk--a meta-analysis.

This study examined changes in bone mineral and fracture risk after treatment for hyperthyroidism in a meta-analysis. The PubMed and EMBASE were searched using the MESH terms "hyperthyroidism," "bone mineral density" (BMD), and "fracture," resulting in retrieval of 289 references. Twenty references describing BMD and five describing fracture risk were included in the meta-analysis. BMD was significantly decreased in patients with untreated hyperthyroidism. Upon treatment BMD increased significantly and reversed to normal levels with a temporary increase above normal levels 1-4 years after diagnosis. The risk of hip fractures increased significantly with age at diagnosis of hyperthyroidism. The hip fracture risk after diagnosis predicted from studies on BMD was close to that observed in clinical studies comparing fracture risk in hyperthyroid patients with normal controls. Thus BMD is significantly decreased and fracture risk increased in untreated hyperthyroidism. Upon normalization of the hyperthyroid state BMD return to normal even though no specific antiosteoporotic measures are taken other than normalizing the hyperthyroid state.

Age Factors↗

Serum insulin-like growth factor-I, insulin-like growth factor binding proteins, and bone mineral content in hyperthyroidism.

The mechanism by which thyroid hormones promote bone growth has not yet been elucidated. In vitro, thyroid hormones stimulate insulin-like growth factor-I (IGF-I) production by osteoblasts, which is important for the anabolic effects of the hormone on bone. To determine whether the IGF-I/IGF binding protein (IGFBP) profile is affected when thyroid hormone production is altered in vivo, we studied 36 women who had recently been diagnosed with hyperthyroidism (age: 29-67 years; 19 with Graves' disease, 17 with toxic nodular goiter) and 36 age-matched healthy women as controls. Serum IGF-I, and its binding proteins (IGFBP-3, IGFBP-4, and IGFBP-5), as well as bone mineral density (BMD) at the lumbar spine, femoral neck, and radius midshaft were measured before and 1 year after antithyroid (methimazole) treatment. Serum IGF-I levels were significantly increased in the hyperthyroid patients before treatment (214 +/- 18.2 ng/mL vs. 145 +/- 21.3 ng/mL; p < 0.05). There was no difference in IGF-I levels of patients with Graves' disease and toxic nodular goiter. Serum IGF-I concentrations returned to normal after treatment with methimazole. Serum IGFBP-3 and IGFBP-4 values were significantly elevated in the hyperthyroid group before treatment (3960 +/- 220 ng/mL and 749.7 +/- 53.1 ng/mL vs. 2701 +/- 180 ng/mL and 489.9 +/- 32.4 ng/mL; p < 0.05 and p < 0.01, respectively) and were reduced to those of controls after treatment. Serum IGFBP-5 of hyperthyroid subjects was not different from that of controls either before or after therapy. Serum free thyroxine showed a positive correlation with serum levels of IGF-I (r = 0.73, p < 0.05), IGFBP-3 (r = 0.59, p < 0.05), and IGFBP-4 (r = 0.67, p < 0.05) but not IGFBP-5. BMD at the radius midshaft was significantly lower in hyperthyroid patients at the start of the study and showed a positive correlation with serum IGF-I (r = 0.58; p < 0.001) and a negative correlation with IGFBP-4 (r = -0.61; p < 0.05). Radius BMD showed a 7.2% increase in the hyperthyroid group after 1 year of methimazole treatment, and the correlation between BMD and serum IGF-I disappeared. Our data indicate that thyroid hormones may influence the IGF-I/IGFBP system in vivo in hyperthyroidism. The anabolic effects of increased levels of IGF-I may be limited in hyperthyroidism due to the increases of inhibitory IGFBPs that can counteract the anabolic effects and contribute to the observed net bone loss.

Adult↗

Hyperthyroidism and hepatic dysfunction. A case series analysis.

Liver dysfunction in hyperthyroid patients has not been well characterized. We analyzed the clinical records of 43 patients with hyperthyroidism to define the spectrum of clinical and liver test abnormalities. The patients were divided into three categories: (a) 18 patients with uncomplicated hyperthyroidism (HT) (b) 19 with hyperthyroidism and congestive heart failure (HT/CHF), and (c) 6 with hyperthyroidism and concomitant unrelated liver disease (HT/ULD). Hepatomegaly and/or spenomegaly were noted in 15 of 19 (79%) patients with HT/CHF as compared to 6 of 18 (33%) patients with HT and 3 of 6 (50%) patients with HT/ULD. Four patients with HT/CHF had ascites. Serum aminotransferase levels greater than 250 IU/L were noted in only 1 of 37 (3%) patients without unrelated liver disease. Patients with HT/ULD or HT/CHF had markedly low prothrombin time. Serum bilirubin levels as high as 323 microM were noted in patients with HT. No characteristic liver histology due to hyperthyroidism was noted. Severe liver test abnormalities, including deep jaundice and prolonged prothrombin time, can occur in patients with hyperthyroidism alone or with HT/CHF. This makes the diagnosis of concomitant, unrelated liver disease difficult until the hyperthyroidism has been controlled.

Adult↗

Plasma isocitrate dehydrogenase as a marker of centrilobular hepatic necrosis in patients with hyperthyroidism.

Isocitrate dehydrogenase (ICDH) may be useful for differentiating centrilobular from periportal necrosis in rats with liver injury. In this study, we assessed the usefulness of ICDH as a marker of centrilobular necrosis in patients with hyperthyroidism. Isocitrate dehydrogenase and alanine aminotransferase (ALT) activities were measured in the plasma of 56 patients with hyperthyroidism, 16 patients with chronic viral hepatitis (CVH), and 17 controls. Isocitrate dehydrogenase levels were higher in patients with hyperthyroidism than in those with CVH or in the controls (p < 0.01 and p < 0.001, respectively), even though ALT levels were higher in patients with CVH than in patients with hyperthyroidism (p < 0.01). Isocitrate dehydrogenase/ALT ratios were also higher in patients with hyperthyroidism than in those with CVH (p < 0.0001). Isocitrate dehydrogenase correlated to ALT levels in patients with hyperthyroidism or CVH (p < 0.05). In a patient with hyperthyroidism, ICDH levels decreased progressively to normal, and the ALT level and thyroid function were normalized. Thus, the plasma ICDH or ICDH/ALT ratio might be useful for differentiating centrilobular from periportal necrosis and for monitoring the degree of hepatic necrosis in patients with hyperthyroidism.

Adult↗

Renin-angiotensin system contribution to cardiac hypertrophy in experimental hyperthyroidism: an echocardiographic study.

The objective of this study was to evaluate, using echocardiography, the involvement of the renin-angiotensin system (RAS) in left ventricular (LV) hypertrophy development in experimental hyperthyroidism. Thyrotoxicosis was produced by a daily intraperitoneal injection of L-thyroxine (T4), 0.1 mg/kg per day for 15 days in Wistar rats. Control (euthyroid) rats received intraperitoneal daily injection of the thyroxine solvent. Two series of experiments were performed. In the first series, euthyroid (n = 10) and hyperthyroid (n = 14) rats were surgically prepared with a femoral artery catheter. After a 3-day recovery period, blood pressure and heart rate were measured and blood samples were collected in conscious and unrestrained rats. In the second series of experiment, measurement of LV geometry was realized with two-dimensional time-movement echocardiography on the 15th day of treatment in control conditions and after long-term treatment with the angiotensin II type I receptor antagonist valsartan (10 mg/kg per day for 15 days) in both euthyroid and hyperthyroid rats. The dose and duration of T4 treatment was sufficient to induce a significant degree of hyperthyroidism with characteristic features including tachycardia, systolic hypertension, myocardial hypertrophy, hyperthermia, and weight loss. In addition, we measured an increase in free fractions of thyroid hormones, and a threefold increase in plasma renin activity. Echocardiographic examinations in rats revealed a strong correlation between LV weight and echocardiographic LV mass. Hyperthyroid rats exhibited an increased LV mass with a marked increase in the LV end-diastolic posterior wall and septal thickness. Chronic treatment with valsartan prevented this concentric LV hypertrophy (p < 0.01), with full prevention of the LV posterior wall hypertrophy (p < 0.001) and decreased LV septal hypertrophy (p < 0.05). In conclusion, the cardiovascular alterations of hyperthyroidism were reproduced with thyroid hormone injections in rats. Activation of the RAS in hyperthyroid rats was accompanied by increased LV mass. Using valsartan, we demonstrated that the RAS impinged on the LV remodelling in our experimental hyperthyroidism model. A chronic treatment with an angiotensin II type I receptor antagonist prevented the development of the concentric LV hypertrophy associated with thyrotoxicosis.

Animals↗

Subclinical hyperthyroidism and pregnancy outcomes.

OBJECTIVE: Subclinical hyperthyroidism has long-term sequelae that include osteoporosis, cardiovascular morbidity, and progression to overt thyrotoxicosis or thyroid failure. The objective of this study was to evaluate pregnancy outcomes in women with suppressed thyroid-stimulating hormone (TSH) and normal free thyroxine (fT(4)) levels. METHODS: All women who presented to Parkland Hospital for prenatal care between November 1, 2000, and April 14, 2003, underwent thyroid screening by chemiluminescent TSH assay. Women with TSH values at or below the 2.5th percentile for gestational age and whose serum fT(4) levels were 1.75 ng/dL or less were identified to have subclinical hyperthyroidism. Those women screened and delivered of a singleton infant weighing 500 g or more were analyzed. Pregnancy outcomes in women identified with subclinical hyperthyroidism were compared with those in women whose TSH values were between the 5th and 95th percentiles. RESULTS: A total of 25,765 women underwent thyroid screening and were delivered of singleton infants. Of these, 433 (1.7%) were considered to have subclinical hyperthyroidism, which occurred more frequently in African-American and/or parous women. Pregnancies in women with subclinical hyperthyroidism were less likely to be complicated by hypertension (adjusted odds ratio 0.66, 95% confidence interval 0.44-0.98). All other pregnancy complications and perinatal morbidity or mortality were not increased in women with subclinical hyperthyroidism. CONCLUSION: Subclinical hyperthyroidism is not associated with adverse pregnancy outcomes. Our results indicate that identification of subclinical hyperthyroidism and treatment during pregnancy is unwarranted. LEVEL OF EVIDENCE: II-2.

Adult↗