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Hyperthyroidism without triiodothyronine excess: an effect of severe non-thyroidal illness.

Serial changes in thyroid hormone levels are described in two patients in whom hyperthyroidism was associated with transient non-thyroidal illness. In a 74-year-old woman with mild hyperthyroidism, two episodes of cholecystitis were associated with subnormal concentrations of serum T3 and increased concentrations of serum rT3; T3 became elevated during recovery, associated with a simultaneous fall in rT3. The TSH response to TRH was undetectable on three occasions. A cholecystectomy was performed after preparation with Lugol's iodine and subsequent tests showed evolution through T3 toxicosis to classical hyperthyroidism. In the second case, symptoms and signs of classical hyperthyroidism were noted during an undiagnosed illness characterized by severe abdominal pain and fever. Six days after the onset of this illness, an elevated level of serum T4 was associated with a normal total T3 concentration and increased concentration of rT3. After resolution of abdominal symptoms, serum T3 was markedly increased, associated with persistent T4 and rT3 excess. These findings indicate that the changes in T3 and reverse T3 described in non-thyroidal illness also occur in hyperthyroid patients, and suggest that the fall in T3 may be of sufficient magnitude to make T3 measurement diagnostically unreliable in the presence of non-thyroidal illness.

Adult↗

Prediction and therapy of intrauterine and late-onset neonatal hyperthyroidism.

These studies in a mother and child describe the effects of multiple antibodies directed against the TSH receptor that influenced thyroid function in the fetus and infant. Blood was taken periodically for 6 months from a child (C3) whose mother (M) was known to have in her serum immunoglobulin G (IgG) that contained thyroid-stimulating antibody (TSAb), an inhibitor of TSAb and TSH binding and action, and an enhancer of TSH binding to its receptor, the last activity presumed to enhance both TSH and TSAb action. We correctly predicted that C3 and an older sibling, C2, would have delayed onset of hyperthyroidism (approximately 45 days of age) due to interaction of these antibodies. In addition, in both C2 and C3, fetal hyperthyroidism in the second trimester was postulated, and therefore, M was given propylthiouracil from then until term (C2) or 8 months (C3), with associated return of the fetal heart rate to normal in the one fetus (C3) in whom this was monitored. IgG was purified from C3's serum samples and tested for TSAb activity using human thyroid cells in monolayer culture and its ability to alter binding of [125I]TSH to human thyroid cell membranes. In the TSAb assays, samples obtained from birth to 4 months of age produced a negative dose response, and those obtained from 4-6 months showed a positive dose response. The effect on the binding of [125I]TSH was enhancement with all IgG obtained for 6 months, except that for the first 52 days a high concentration was inhibitory. The combined clinical and assay data are compatible with the following interpretations. M's IgG contained TSAb and both an inhibitor and an enhancer of that activity, the total effects varying at different times. In the second trimester, the net effect of transplacentally transferred IgG was to induce hyperthyroidism. At birth and perhaps during the third trimester, the inhibitor of TSAb prevented hyperthyroidism; from about 45 days of life, the enhancing effect facilitated TSAb action to produce hyperthyroidism until maternal IgG was completely cleared from the infant's circulation at about 7 months of age.

Antibody Affinity↗

Increased plasma gonadotropin levels in spontaneous hyperthyroidism reproduced by thyroxine but not by triiodothyronine administration to normal subjects.

In nine hyperthyroid women studied in the follicular phase of the menstrual cycle basal plasma LH concentrations and LH and FSH responses to GnRH were increased compared to those in nine normal women. The increased gonadotropin levels could not be related to changes in body weight or plasma estradiol or serum sex hormone-binding globulin levels, and they approached normal levels during or after treatment of hyperthyroidism. When normal women were treated with T4 (0.5 mg daily for 6-10 days), their mean serum free T4 level increased to about 60% of that in the hyperthyroid patients, while their serum T3 levels increased to a lesser degree. During T4 administration these women had gonadotropin changes similar to those of the hyperthyroid patients. When the normal women took T3 (60-120 micrograms for 6-8 days), their serum T3 level rose almost to the level in the hyperthyroid patients, but basal and GnRH-stimulated LH and FSH remained close to control levels. Dopaminergic blockade with metoclopramide did not alter the gonadotropin response to GnRH in any subject group. We conclude that serum T4 is of greater importance than serum T3 for at least short term gonadotropin regulation.

Adult↗

Role of thyrotropin receptor antibodies in the development of hyperthyroidism: follow-up studies on nine patients with Graves' disease.

TSH binding inhibitor immunoglobulin (TBII) and thyroid-stimulating antibody (TSAb) activities were measured serially for 4-32 months in nine patients before and during development of hyperthyroidism due to Graves' disease. Initially, all were euthyroid, seven had thyroid enlargement, one had proptosis, and seven had high serum titers of antithyroid microsomal antibodies. The occurrence of hyperthyroidism was preceded by detection of both TBII and TSAb in four patients and detection of TSAb alone in four patients. One patient had neither TBII nor TSAb when euthyroid. The mean initial TBII and TSAb activities were 10.2 +/- 15.2% (+/- SD) and 2677 +/- 4620%, respectively, when these patients were euthyroid. When they became hyperthyroid, both TBII and TSAb activities increased in all patients. At that time, TBII was detected in all but one (eight of nine subjects; 88.9%), with a mean activity of 58.8 +/- 23.4% (+/- SD), and TSAb was detected in all nine patients, with a mean value of 4508 +/- 4429%. These findings not only indicate the crucial role of TSH receptor antibodies in the development of hyperthyroidism due to Graves' disease, but also suggest that a certain period of subclinical Graves' disease exists before the onset of overt hyperthyroidism in most patients, in the sense that they have TSH receptor antibodies, especially TSAb, in their serum even though they are euthyroid.

Adult↗

Measurement of thyrotropin in clinical and subclinical hyperthyroidism using a new chemiluminescent assay.

A new commercially available chemiluminescent TSH assay demonstrates an 8- to 10-fold increase in sensitivity over a sensitive immunoradiometric assay, allowing increased ability to distinguish partial from more complete thyrotroph suppression. Sera were analyzed from 145 patients who had TSH concentrations below 0.08 mU/L in the immunoradiometric assay. Most patients with overt hyperthyroidism had undetectable TSH concentrations in the chemiluminescent assay. Three groups of patients were identified, in which a large subgroup had undetectable values in the immunoradiometric assay and detectable values in the chemiluminescent assay (12 of 17 patients under treatment for hyperthyroidism who had recently normalized their serum thyroid hormone levels, 33 of 68 patients taking L-T4, and 4 of 8 patients with endogenous subclinical hyperthyroidism). In addition, several patients with undetectable basal and detectable TRH-stimulated TSH values in the immunoradiometric assay had detectable basal TSH values in the chemiluminescent assay. The utility of first generation TSH immunometric assays was their ability to distinguish hyperthyroidism from euthyroidism. The clinical utility of increasingly sensitive TSH assays will be to distinguish degrees of thyrotroph suppression in subclinical hyperthyroidism.

Goiter↗

Platelets in hyperthyroidism: studies on platelet counts, mean platelet volume, 111-indium-labeled platelet kinetics, and platelet-associated immunoglobulins G and M.

We compared in 15 patients with hyperthyroidism (11 with Graves' disease, 3 with toxic adenoma, and 1 with multinodular goiter) platelet counts (PC) and mean platelet volume (MPV) before and 3 weeks after initiation of antithyroid drug therapy when the patients were euthyroid. In addition, platelet kinetic studies of autologous 111-indium-labeled platelets and platelet-associated immunoglobulins G and M (PAIgG and PAIgM, respectively) were investigated. The control group for the platelet kinetic studies consisted of 2 patients with diffuse nontoxic goiter and 86 patients who were studied for evaluation of their arteriosclerotic vascular disease. After 3 weeks of antithyroid drug therapy there was a significant increase in PC and a decrease in MPV compared with the pretreatment values (pretreatment PC median, 215 X 10(9)/L; range, 96-350 X 10(9)/L; PC median 3 weeks later, 248 X 10(9)/L; range, 157-384 X 10(9)/L; P less than 0.005; pretreatment MPV median, 10.6 fL; range, 9.1-13.2 fL; MPV 3 weeks later, 9.9 fL; range, 8.4-11.0 fL; P less than 0.005). 111-Indium platelet recovery was normal in all subjects. Platelet lifespan was significantly shortened in the patients with hyperthyroidism compared with the control group (median, 163.8 h; range, 128.5-206 h; vs. 180.0 h; range, 138.3-231.5 h; P less than 0.05). Platelet turnover averaged 45.6 (range, 25.6-71.9) X 10(9)/L.day; values above the limit of normal were found in 7 of 15 patients with hyperthyroidism. Three patients with Graves' disease had elevated levels of PAIgG; 1 of these patients had elevated levels of PAIgM and was the only patient with thrombocytopenia (PC, 96 X 10(9)/L). Various combinations of statistical correlations between the degree of hyperthyroidism, pretreatment PC and MPV, platelet kinetic studies, levels of PAIg, and serum levels of antithyroid antibodies revealed no significant differences. These findings suggest that the platelet changes observed in hyperthyroidism, such as lower PC and increased MPV, together with the shortened platelet lifespan reflect metabolically rather than immunologically mediated phenomena, although these may be involved in cases with marked thrombocytopenia.

Adolescent↗

Effect of hyperthyroidism on the transit of a caloric solid-liquid meal through the stomach, the small intestine, and the colon in man.

Gastric emptying, mouth-to-cecum transit, and whole gut transit of a solid-liquid meal was measured in 20 hyperthyroid patients and in 30 control subjects by using scintigraphic techniques, the hydrogen breath test, and stool markers. In the hyperthyroid patients predefined gastrointestinal symptoms were determined and related to gastrointestinal transit. There was no significant overall difference of gastric emptying between the hyperthyroid patients and the control subjects, whereas both mouth-to-cecum transit time (mainly reflecting small intestinal transit) and whole gut transit time (mainly reflecting large intestinal transit) were significantly accelerated in hyperthyroid patients as compared to the control subjects (P less than 0.005). Mouth-to-cecum transit in hyperthyroid patients with diarrhea tended to be more rapid than in those without diarrhea (P = 0.094) and the T3 concentrations were inversely correlated with mouth-to-cecum transit time. It is concluded that in thyrotoxicosis 1) small and large intestinal transit is accelerated, while gastric emptying remains unchanged and 2) rapid intestinal transit is likely to be one factor among others implicated in the generation of diarrhea.

Adult↗

Effects of hypothyroidism and hyperthyroidism on insulin-like growth factors (IGFs) and growth hormone- and IGF-binding proteins.

Normal thyroid status is a prerequisite for the normal growth and development of many tissues. The interrelationships between the thyroid and pituitary-GH-insulin-like growth factor (IGF) axes are complex and not yet fully understood. We have studied the effects of hypothyroidism (n = 22) and hyperthyroidism (n = 17) on levels of serum immunoreactive IGF-I and II, IGF-binding proteins (IGFBP-1 and -3), and IGF bioactivity before and during treatment. We have also assessed changes in GH-binding activity (GHBP). Mean immunoreactive (IR) IGF-I levels in the hypothyroid group rose from 106.6 +/- 10.6 micrograms/L at diagnosis to 139.9 +/- 12.7 micrograms/L (P = 0.009) on normalization of thyroid function. In hyperthyroidism, mean IGF-I levels (258.9 +/- 33.9 micrograms/L) were high initially and fell to 188.7 +/- 14.8 micrograms/L (P = 0.04) after treatment. IR IGF-I levels correlated positively with free T3 and free T4 and negatively with TSH levels. Mean serum IGF-II levels were low in hypothyroid patients (375.2 +/- 37.3) and rose during treatment (516.9 +/- 59.4 micrograms/L; P = 0.04). In the hyperthyroid subjects, however, there was no significant change during therapy (625.0 +/- 66.9 vs. 621.9 +/- 120.8 micrograms/L; P = 0.98). IGF bioactivity potency ratios were low in the hypothyroid group (0.26 +/- 0.03 U/mL) and rose to 0.71 +/- 0.10 U/mL (P = 0.01) during treatment. IGF bioactivity in the hyperthyroid group was also low (0.38 +/- 0.05 U/mL) and rose significantly during treatment (0.81 +/- 0.06 U/mL; P = 0.003). Mean IGFBP-1 levels (29.8 +/- 5.7 micrograms/L) were unaltered by treatment of hypothyroid subjects (28.4 +/- 4.8 micrograms/L). In contrast, IGFBP-1 levels in the hyperthyroid subjects were high at diagnosis (134.6 +/- 26.6 micrograms/L) and fell significantly (71.3 +/- 14.3 micrograms/L; P = 0.04) during treatment. In the hypothyroid group, IGFBP-3 levels rose from an initial mean of 1.98 +/- 0.17 to 2.67 +/- 0.27 mg/L (P = 0.04) during treatment. The higher mean pretreatment levels in the thyrotoxic group (3.46 +/- 0.32 mg/L) were unaltered by treatment (3.20 +/- 0.51 mg/L; P = 0.71). GHBP was low in the hypothyroid group at diagnosis (28.5 +/- 2.5%) and rose during treatment to 40.6 +/- 3.9% (P = 0.02). We have confirmed that IR IGF-I levels are low in hypothyroidism and have demonstrated a reduction in IGF bioactivity and IGF-II and IGFBP-3 levels, and low GH-binding activity, which may reflect a reduction in the processing of GH receptors.(ABSTRACT TRUNCATED AT 400 WORDS)

Adult↗

Adrenergic regulation of lipolysis in fat cells from hyperthyroid and hypothyroid patients.

The influence of thyroid hormones on the adrenergic regulation of lipolysis was studied in isolated adipocytes removed from the gluteal region of hyper- and hypothyroid women and compared in adipocytes from euthyroid normal women. Noradrenaline significantly enhanced lipolysis in hyperthyroid patients, whereas noradrenaline inhibited lipolysis in hypothyroid patients compared to that in controls. Moreover, beta-adrenergic sensitivity and responsiveness were 10- and 2-fold increased, respectively, in hyperthyroid patients. In hypothyroid patients, beta-adrenoceptor responsiveness was reduced by 50%, whereas beta-adrenergic sensitivity remained unchanged compared with that in controls. Furthermore, the alpha 2-adrenergic and adenosine-induced antilipolytic effects were similar in all thyroid states. The lowered beta-adrenergic responsiveness seen in hypothyroidism could be mimicked by agents acting at the levels of phosphodiesterase (enprofylline), adenylate cyclase (forskolin) and protein kinase (dibutyryl cAMP). In hyperthyroidism, the increased beta-adrenergic sensitivity and responsiveness were not seen when lipolysis was stimulated at the adenylate cyclase, phosphodiesterase, or protein kinase levels. There was no change in the numbers of adipocyte beta- and alpha 2-adrenoceptors in hypothyroidism. However, the number of beta-adrenergic binding sites was doubled, whereas the fraction and affinities of isoprenaline high affinity sites remained unchanged in hyperthyroidism. Thus, the influence of thyroid hormone on catecholamine-stimulated lipolysis in man acts through different mechanisms when adipocytes are exposed to high or low levels of thyroid hormones. In hyperthyroidism, lipolysis adapts to increasing energy demands through an increase in the beta-adrenoceptor number and, thus, a more effective coupling of the adenylate-cyclase complex. In hypothyroidism, the low lipolytic effect of catecholamines seems to be mainly due to an impairment at the protein kinase level or to the hormone-sensitive lipase itself.

Adipocytes↗

Sporadic congenital hyperthyroidism due to a spontaneous germline mutation in the thyrotropin receptor gene.

Neonatal hyperthyroidism in the absence of maternal autoimmune thyroid disease and without thyroid-stimulating antibodies in the child is rare. We here describe a boy with severe intrauterine hyperthyroidism and advanced bone age in the absence of thyroid-stimulating autoantibodies. After long term antithyroid treatment and relapse of hyperthyroidism, a near-total thyroid resection was performed. The necessity to progressively decrease postoperative thyroid hormone replacement indicates thyroid tissue regrowth in the small thyroid remnant. Analysis of the genomic DNA of the child's peripheral leukocytes showed a G to A base exchange that led to a heterozygous Ser to Asn conversion at position 505 in the third transmembrane region of the TSH receptor (TSHR). The absence of the Ser505 Asn mutation in all other family members identifies the child's TSHR mutation as a sporadic germline mutation. Transient expression of the mutated TSH receptor in COS-7 cells showed a constitutively activated cAMP cascade. We thus identified a new constitutively activating germline mutation. Neonates with persistent nonautoimmune hyperthyroidism should be investigated for TSHR germline mutations. Because of frequent relapses, patients with sporadic congenital nonautoimmune hyperthyroidism should be treated with early subtotal to near-total thyroid resection. Moreover, post-operative radioiodine treatment should be considered.

Animals↗

Identification of a new thyrotropin receptor germline mutation (Leu629Phe) in a family with neonatal onset of autosomal dominant nonautoimmune hyperthyroidism.

Constitutively activating germline mutations in the TSH receptor (TSHR) gene have been identified as a cause of autosomal dominant nonautoimmune hyperthyroidism and sporadic congenital hyperthyroidism. We report a 10-yr-old boy and his 31-yr-old mother, both presenting with a history of recurring toxic thyroid hyperplasia and no evidence for autoimmune thyroid disease. In the boy, onset of hyperthyroidism and goiter was neonatal. In the mother, onset of thyroid disease dates back to early childhood. There was no history of thyroid disease in the rest of the family. Screening for germline mutations in exon 10 of the TSHR was performed by direct sequencing of genomic DNA extracted from peripheral blood leukocytes of both patients. In the boy and his mother, an identical heterozygous TSHR mutation was identified, exchanging leucine for phenylalanine at residue 629 of the TSHR (TTG-->TTT). Transient expression of the mutated TSHR construct in COS-7 cells confirmed the constitutive activity of the new TSHR germline mutation. This is the second family displaying congenital manifestation of hyperthyroidism in familial nonautoimmune hyperthyroidism.

Adult↗

Ineffective cardiorespiratory function in hyperthyroidism.

Dyspnea on exertion is a common complaint in hyperthyroidism, and this thyroid dysfunction has been implicated as a primary cause of impaired effort tolerance. Using spirometry and spiroergometry, 42 patients with untreated hyperthyroidism were examined, and the condition was controlled 7 days later under propranolol monotherapy, as well as after 6 months in euthyroidism. While hyperthyroid, reduced forced vital capacity and tidal volume at the anaerobic threshold (AT) were observed in comparison to euthyroidism. Decreased oxygen (O2) pulse at AT (7 +/- 0.4 vs. 9.1 +/- 0.4 mL/beat, P = 0.0012) and at maximal exercise was noted in hyperthyroidism and was enhanced under propranolol (8.9 +/- 0.4 mL/beat, P = 0.0001). During exercise, the increment of minute ventilation (16.1 +/- 0.7 vs. 20.2 +/- 1.0 L/min, P = 0.0015), O2 uptake (9 +/- 0.5 vs. 11.4 +/- 0.5 mL/min/kg, P = 0.0022), O2 pulse (4.0 +/- 0.3 vs. 5.6 +/- 0.3 mL/beat, P = 0.0001), and heart rate (53 +/- 2 vs. 65 +/- 3 beat/min, P = 0.0004) was markedly lower in hyper- vs. euthyroidism. Work rate at AT and at maximum was reduced in hyper- vs. euthyroidism (107.4 +/- 3 vs. 141.1 +/- 4 watt, P = 0.0001). Negative correlations between free T3 and O2 pulse at AT (r = -0.59, P = 0.0005), delta O2 uptake (r = -0.54, P = 0.0007), delta minute ventilation (r = -0.48, P = 0.0007), and maximal work rate (r = -0.62, P = 0.0001) were noted. In hyperthyroidism, analysis of respiratory gas exchange showed low efficiency of cardiopulmonary function, respiratory muscle weakness, and impaired exercise capacity, which were reversible in euthyroidism.

Adult↗

Endogenous subclinical hyperthyroidism affects quality of life and cardiac morphology and function in young and middle-aged patients.

To determine the clinical impact of endogenous subclinical hyperthyroidism, specific symptoms and signs of thyroid hormone excess and quality of life were assessed in 23 patients (3 males and 20 females; mean age, 43 +/- 9 yr) and 23 age-, sex-, and lifestyle-matched normal subjects by using the Symptoms Rating Scale and the Short Form 36 Health Survey questionnaires. Because the heart is one of the main target organs of the thyroid hormone, cardiac morphology and function were also investigated by means of standard 12-lead electrocardiogram (ECG), 24-h Holter ECG, and complete Doppler echocardiography. Stable endogenous subclinical hyperthyroidism had been diagnosed in all patients at least 6 months before the study (TSH, 0.15 +/- 0.1 mU/L; free T(3), 6.9 +/- 1.1, pmol/L; free T(4), 17.2 +/- 2.3, pmol/L). Fifteen patients were affected by multinodular goiter, and eight patients by autonomously functioning thyroid nodule. The mean Symptoms Rating Scale score (9. 8 +/- 5.5 vs. 4.3 +/- 2.2, P: < 0.001) and both the mental (36.1 +/- 9.5 vs. 50.0 +/- 8.5, P: < 0.001) and physical (42.6 +/- 8.0 vs. 55. 6 +/- 4.1, P: < 0.001) component scores of Short Form 36 Health Survey documented a significant prevalence of specific symptoms and signs of thyroid hormone excess and notable impairment of quality of life in patients. Holter ECG showed a higher prevalence of atrial premature beats in endogenous subclinical hyperthyroid patients than in the controls, but the difference was not statistically significant, although the average heart rate was significantly increased in the patients (P: < 0.001). An increase of left ventricular mass (162 +/- 24 vs. 132 +/- 22 g, P: < 0.001) due to the increase of septal (P: = 0.025) and posterior wall (P: = 0.004) thickness was observed in patients. Systolic function was enhanced in patients as shown by the significant increase of both fractional shortening (P: = 0.005) and mean velocity of heart rate-adjusted circumferential fiber shortening (P: = 0.036). The Doppler parameters of diastolic function were significantly impaired in the patients as documented by the reduced early to late ratio of the transmitral flow velocities (P: < 0.001) and the prolonged isovolumic relaxation time (P: = 0.006). These data indicate that endogenous subclinical hyperthyroidism has a relevant clinical impact and that it affects cardiac morphology and function. Moreover, they suggest that treatment of persistent endogenous subclinical hyperthyroidism should be considered also in young and middle-aged patients to attenuate specific symptoms and signs of thyroid hormone excess, ameliorate the quality of life, and avoid the consequences to the heart of long exposure to a mild excess of thyroid hormone.

Adult↗

Hepatic lipogenesis and cholesterol synthesis in hyperthyroid patients.

To determine the effect of hyperthyroidism on hepatic lipogenesis and cholesterol synthesis we measured these metabolic pathways (deuterated water method) in euthyroid and hyperthyroid subjects investigated in the postabsorptive state. Hyperthyroid patients had increased concentrations of glucose (P < 0.05), insulin (P < 0.05), nonesterified fatty acids (P < 0.01), and triglycerides (P < 0.05) and decreased levels of plasma cholesterol (P < 0.01). The contribution of hepatic lipogenesis to plasma triglycerides was largely increased in hyperthyroid subjects (23.0 +/- 1.8% vs. 7.5 +/- 0.2%; P < 0.001), whereas the fractional synthetic rate of cholesterol was moderately higher (5.0 +/- 0.8% vs. 3.3 +/- 0.2%; P < 0.05). mRNA levels of beta-hydroxy-beta-methyl glutaryl-coenzyme A reductase, measured in circulating mononuclear cells, were increased (P < 0.05), whereas those of low density lipoprotein (LDL) receptor and LDL receptor-related protein were unchanged. Sterol responsive element binding protein-1c mRNAs were undetectable in mononuclear cells from both groups of subjects. The large stimulation of hepatic lipogenesis in hyperthyroid patients is probably explained by both a direct action of thyroid hormones and the increase in insulin. It could contribute to their moderate rise in triglycerides levels. The decreased plasma cholesterol level is observed despite an enhanced synthetic rate and is thus related to an increased clearance rate. The lack of increased expression of LDL receptor and LDL receptor-related protein suggests that other receptors are implicated.

Adult↗

Absorption, distribution and elimination of creatinine and urea in hyperthyroid mice.

The absorption, distribution and elimination of creatinine and urea, which are considered to pass through the water-filled pores of biological membranes easily, were investigated in hyperthyroid mice to clarify the effects of enhanced blood circulation rate on drug behaviour in the body. The elimination rate constant in hyperthyroid mice was significantly and considerably larger than that in the control in both creatinine and urea (p less than 0.01). This result might be based on the increased urinary excretion rate of these two chemicals in hyperthyroid mice. The result of autoradiographic study indicated that creatinine was distributed more homogeneously in hyperthyroid mice than the control at 30 s and 2 min following intravenous administration. It was probably caused by the enhanced membrane permeability to creatinine due to some physiological changes (e.g. blood flow rate and pressure) or to a change of membrane itself. The gastrointestinal absorption of these two chemicals were also evaluated by the expiratory excretion of 14CO2 following oral administration. The results suggested that creatinine might be absorbed more slowly in hyperthyroid mice than in the control, and that in the case of urea such a difference in absorption might not exist.

Animals↗

Exertional dyspnea and ventilation in hyperthyroidism.

Dyspnea is recognized to be an important feature in patients with hyperthyroidism at rest and during exercise. However, its etiology is not well-understood. Since dyspnea is thought to be related to the perception of excessive ventilatory effort, we explored the possibility that dyspnea in these patients might be related to an inappropriate ventilatory response to the increased metabolic rate. We studied 11 hyperthyroid patients and 11 age- and sex-matched controls, performing spirometry, lung volumes, mouth pressure measurements, and incremental exercise test. Central drive was estimated by measuring P0.1 and sensation of dyspnea by the Borg scale. We found that hyperthyroid patients (1) have higher ventilation than normal subjects during exercise even when corrected for VCO2 levels; (2) this increased ventilation is secondary to increased central drive which is correlated to the T3ria level (r = 0.85, p less than 0.01); (3) hyperthyroid patients are more dyspneic than controls; and (4) the increased drive can be normalized by beta-blockade. We conclude that the main ventilatory abnormality in hyperthyroid patients is an inappropriate increase in respiratory drive, possibly secondary to increased adrenergic stimulation.

Adult↗

Bone mass after long-term euthyroidism in former hyperthyroid women treated with (131)I influence of menopausal status.

The objective of this study was to assess bone mineral density (BMD) and bone markers in former hyperthyroid females after long-term euthyroidism (>4 yr) following (131)I therapy, as well as the potential influence of the timing of menopause. Twenty-six females ages 57 +/- 8 yr previously diagnosed with hyperthyroidism and treated with (131)I who were euthyroid for a minimum of the last 4 yr (10 +/- 5 yr) were studied. Eighteen patients (69%) were on levothyroxine (LT(4)) replacement therapy for 9 +/- 4 yr. BMD (g/cm(2) and Z-score) was measured by dual X-ray absorptiometry in the lumbar spine, femoral neck, and Ward's triangle. BMD (Z-score) was lower than the normal reference values for the Spanish population in all sites (lumbar spine: -0.65 +/- 1.13; femoral neck: -0.47 +/- 0.95; Ward's triangle: -0.37 +/- 0.88). No differences were found between BMD values according to the etiology of the hyperthyroidism or current LT(4) therapy. Current postmenopausal patients (n = 21) showed lower BMD than current premenopausal patients in the lumbar spine and femoral neck (p < 0.05). Those women who were postmenopausal at the time of the (131)I therapy (n = 15) also had lower lumbar spine BMD than premenopausal patients (p = 0.01), while no significant difference in BMD was seen according to the menopausal status when hyperthyroidism was diagnosed. Former hyperthyroid patients after long-term euthyroidism following (131)I therapy showed reduced BMD at the lumbar spine and proximal femur. Menopausal women showed a greater reduction in bone density. The menopausal status at the time of diagnosis did not seem to have long-term effects in bone density; nevertheless, an early therapeutic intervention in premenopause is suggested to reduce bone loss.

Absorptiometry, Photon↗

[Clinical studies on lipid metabolism in hyperthyroidism and hypothyroidism--evaluation of serum apolipoprotein levels before and after treatment].

The present study was undertaken to assess lipid metabolism in patients with thyroid dysfunction with special reference to serum apolipoprotein levels. Serum lipid, lipoprotein and apolipoprotein levels were determined in 28 hyperthyroid and 16 hypothyroid female patients while untreated and euthyroid. Apolipoproteins were measured by the method of single radial immuno-diffusion (SRID). These results were compared with the values of 28 female controls. In the untreated hyperthyroid group, the serum levels of total cholesterol (TC), high density lipoprotein cholesterol (HDL-C), and low density lipoprotein cholesterol (LDL-C) were significantly decreased compared to the controls and increased after treatment. In hypothyroidism, these values before treatment were higher than those in the controls and decreased after treatment. Serum apo A-I, A-II, B and C-III levels were significantly decreased in the untreated hyperthyroid group compared to the control values. Apo C-II and E levels in hyperthyroidism were identical both before and after treatment compared with the control values, respectively. In the untreated hypothyroidism, apo B, C-II, C-III and E levels were significantly elevated compared to the controls, and these changes in apolipoproteins except apo C-II were restored after treatment. Apo A-I and A-II levels in the untreated hypothyroidism were not statistically different from the values after treatment or those in the control group. Serum thyroid hormone (T3, T4) levels inversely correlated apo B and C-III in all subjects. In hypothyroidism, serum TSH positively correlated with apo B, C-II and C-III. The increase in relative body weight (%RBW) in hyperthyroidism during treatment correlated with the changes of TC and LDL-C. In conclusion, these results indicate that thyroid hormones have a substantial influence on the serum apolipoprotein levels, and that measurement of apolipoproteins as well as lipids and lipoproteins in patients with thyroid dysfunction may be useful to evaluate the lipid metabolism and the effect of therapy.

Adolescent↗