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Phospholipid composition of oligodendroglial cells during normal development and in 18 day old hyperthyroid and malnourished rats.

The phospholipid composition of isolated oligodendroglial cell perikarya was studied in normal rats during development and in 18 day old malnourished and hyperthyroid rats. Phosphatidyl choline and phosphatidyl ethanolamine were found to be the major phospholipid constituents of oligodendroglial cells. Phospholipid content increased during development, mainly due to an increase of the above mentioned phospholipids. The major changes were observed in sphingomyelin, phosphatidyl serine, phosphatidyl inositol and phosphatidyl ethanolamine between 18 and 30 days of age. The phospholipid and protein content per cell was significantly decreased in the oligodendroglial cells isolated from malnourished rats as compared to controls. When data were expressed as a function of total proteins, the composition was similar to that of normal animals. In the hyperthyroid rats on the other hand, there were no changes in the amount of phospholipids per cell, while phospholipids per milligram of total oligodendroglial cell protein were markedly decreased. The changes in myelin composition produced by hyperthyroidism that we have previously described, do not follow closely those produced by this experimental condition in oligodendroglial cells, suggesting that the metabolism of myelin might be to a certain extent, independent of that in the parent cell.

Aging↗

Are antidepressant-like effects of triiodothyronine (T3) in rodents related to an hyperthyroid state?

1. The physiological and behavioral effects of T3 and corresponding plasma T3 levels were studied in mice. 2. On the tests performed (antagonism of apomorphine- and oxotremorine-induced hypothermia, potentiation of yohimbine toxicity, L-5-HTP-induced head twitches and the learned-helplessness paradigm), T3 was active after subchronic treatment (1 injection per day for 3 days, ending 24 hours before testing). 3. In these tests T3 exhibited the same profile as antidepressant drugs in rodents. 4. The similar activity of beta-agonists in these tests and the ability of T3 to potentiate the effect of clenbuterol agree with the hypothesis that T3 can induce beta-adrenergic hypersensitivity. 5. Under the present experimental conditions these effects were obtained with doses of T3 which did not induce hyper-triiodothyroninemia. Thus, the lowest doses significantly affecting apomorphine- and oxotremorine-induced hypothermia were respectively .008 and .032 mg/kg/day. 6. Doses as low as .032 mg/kg/day were active in the yohimbine test. 7. L-5-HTP-induced head twitches were potentiated by a dose of .25 mg/kg/day and in the learned-helpless paradigm, the lowest effective dose was .06 mg/kg/day. 8. Plasma T3 values obtained in the same conditions were not significantly different from control at doses less than .5 mg/kg/day, and increased dramatically with higher doses, suggesting an accumulation of the hormone in plasma. 9. The doses inducing an hyper-triiodothyroninemia coincided with physiological signs of hyperthyroidism in the animals (i.e. loss of weight and slight hyperthermia). Thus, the active dose range of T3 was below the lowest dose required to produce a significant hyperthyroid state. 10. This results suggest that a clinical benefit could be obtained with low doses of T3 that do not significantly induce an hyperthyroidism.

5-Hydroxytryptophan↗

Renal phosphoenolpyruvate carboxykinase turnover in hypo- and hyperthyroid rat in vivo.

The effect of hypo- and hyperthyroidism on activity, synthesis and degradation of renal cytosolic phosphoenolpyruvate carboxykinase (GTP) (EC 4.1.1.32) was studied in the rat by radioimmunological techniques. In hypo- and euthyroid rats, starvation induced similar alterations in enzyme activities and relative rates of synthesis, whereas in hyperthyroid rats the increase in both was significantly reduced. Substitution of L-thyroxine in hypothyroid rats resulted in a decrease in activity and synthesis within 18 h as observed in hyperthyroid animals. The apparent half-life of the enzyme measured by double-pulse labeling experiments was approx. 13 h in euthyroid animals. The rate of degradation was unaffected by the different thyroid states.

Animals↗

Oxidative muscular injury and its relevance to hyperthyroidism.

In experimental hyperthyroidism, acceleration of lipid peroxidation occurs in heart and slow-oxidative muscles, suggesting the contribution of reactive oxygen species to the muscular injury caused by thyroid hormones. This article reviews various models of oxidative muscular injury and considers the relevance of the accompanying metabolic derangements to thyrotoxic myopathy and cardiomyopathy, which are the major complications of hyperthyroidism. The muscular injury models in which reactive oxygen species are supposed to play a role are ischemia/reperfusion syndrome, exercise-induced myopathy, heart and skeletal muscle diseases related to the nutritional deficiency of selenium and vitamin E and related disorders, and genetic muscular dystrophies. These models provide evidence that mitochondrial function and the glutathione-dependent antioxidant system are important for the maintenance of the structural and functional integrity of muscular tissues. Thyroid hormones have a profound effect on mitochondrial oxidative activity, synthesis and degradation of proteins and vitamin E, the sensitivity of the tissues to catecholamine, the differentiation of muscle fibers, and the levels of antioxidant enzymes. The large volume of circumstantial evidence presented here indicates that hyperthyroid muscular tissues undergo several biochemical changes that predispose them to free radical-mediated injury.

Animals↗

Urinary tract infections in cats with hyperthyroidism, diabetes mellitus and chronic kidney disease.

The prevalence of urinary tract infections (UTIs) in cats with hyperthyroidism (n=90), diabetes mellitus (DM) (n=57) and chronic kidney disease (CKD) (n=77) was evaluated retrospectively. It was found to be 12% in cats with hyperthyroidism and DM, respectively, and 22% in cats with CKD. Associations between UTIs and clinical signs, biochemical markers in serum and urinalyses were investigated. Many of the cats with UTIs had no clinical signs of lower urinary tract disease or changes in their laboratory values indicative of infection. Therefore, a urinalysis alone should not be used to exclude UTIs in these cats. UTIs are relatively common in cats with hyperthyroidism, DM and CKD, and urine cultures are recommended as part of the basic diagnostic plan for cats suspected of suffering from these conditions.

Animals↗

Advances in assessment, diagnosis, and treatment of hyperthyroidism in children.

The thyroid gland is responsible for regulating multiple complex metabolic processes that affect most organs. Physical growth and cognitive development are dependent on proper levels of thyroid hormone. This article will review common challenges in the diagnosis of hyperthyroidism in children, the approaches to treatment, and the nursing interventions guided toward child and family responses to thyroid disease. A comparison of signs and symptoms of hypothyroidism and hyperthyroidism is also included. The nursing interventions addressed in the article integrate the biological, psychological, social, and environmental stresses and adaptations necessary to cope with hyperthyroid disease.

Adolescent↗

Ehrlich tumor as model to study artificial hyperthyroidism influence on breast cancer.

This study used Ehrlich solid tumor as an experimental model for breast cancer to investigate the effects of thyroid hormones and castration on tumor development in adult female mice. Artificial hyperthyroidism was induced in animals, and after a 30-day-treatment, they received subcutaneous injection of neoplastic cells between left plantar cushions. We measured the growth of tumor inoculated in the paws for 10 days at necropsy. Hyperthyroidism induction led to significantly increased tumor size in non-castrated animals, and alterations were less intense in association with artificial hyperthyroidism and castration (p<0.05). Histomorphologic and histomorphometric analyses and neoplastic cell characterization were carried out by measuring nuclear diameter, by evaluating AgNORs, by mitotic count, and by measuring cell proliferation using immunohistochemical marker CDC47. At the end of the experiment, we noted metabolism and a decrease in cell proliferation in groups having received l-thyroxine, which were more evident in the non-castrated group (p<0.001).

Animals↗

Hyperthyroidism: advantages and disadvantages of medical therapy.

The most common causes of hyperthyroidism are Graves' disease, toxic nodular goiter, and iodine-induced hyperthyroidism. Hyperthyroidism can be treated medically with antithyroid drugs or radioactive iodine, or surgically. Multiple clinical factors must be weighed when choosing a treatment modality. All of the available forms of therapy have advantages and disadvantages, and treatment choices must be individualized.

Antithyroid Agents↗

Hyperthyroidism in elderly patients.

Hyperthyroid disorders occur in older people and often are present with atypical findings or as apathetic hyperthyroidism. Hyperthyroidism exacerbates underlying chronic disease, especially cardiovascular conditions. Elderly people can be treated successfully and stabilized with careful screening, astute diagnostics, and appropriate therapy.

Aged↗

Graves' disease: an analysis of thyroid hormone levels and hyperthyroid signs and symptoms.

PURPOSE: Assessment of disease severity for patients with hyperthyroidism involves clinical evaluation and laboratory testing. To determine if there is a correlation between symptoms and thyroid function test results, we prospectively studied hyperthyroid patients using a standardized symptom rating scale and serum thyroid function parameters. PATIENTS AND METHODS: We examined 25 patients with untreated, newly diagnosed Graves' disease using the Hyperthyroid Symptom Scale (HSS) and serum levels of thyroxine (T4), triiodothyronine (T3) relative insulin area (RIA), and estimates of free thyroxine index (FTI). In addition, we compared thyroid hormone levels with standard measures of depression and anxiety in these patients. RESULTS: When regression analyses controlling for age were performed, none of these symptom ratings were associated with FTI or T3 RIA. The HSS was correlated with goiter size and anxiety ratings and was inversely correlated with age. CONCLUSION: The present study suggests that there is no relationship between the clinical assessment of disease severity and serum levels of thyroid hormone in untreated Graves' disease.

Adult↗

A comparison of propylthiouracil versus methimazole in the treatment of hyperthyroidism in pregnancy.

OBJECTIVE: Our purpose was to demonstrate that propylthiouracil and methimazole are equally effective and safe in the treatment of hyperthyroidism during pregnancy. STUDY DESIGN: Between 1974 and 1990 records were available on 185 pregnant patients with a history or diagnosis of hyperthyroidism. Ninety-nine patients were treated with propylthiouracil and 36 with methimazole. The response to therapy was compared with respect to the time to normalization of the free thyroxine index and the incidences of congenital anomalies and hypothyroidism. RESULTS: The time to normalization of the free thyroxine index was compared in the two groups by means of survival analysis. The median time to normalization of the free thyroxine index on propylthiouracil and methimazole was 7 and 8 weeks, respectively (p = 0.34, log-rank test). The incidence of major congenital malformations in mothers treated with propylthiouracil and methimazole was 3.0% and 2.7%, respectively. No neonatal scalp defects were seen. One infant was overtly hypothyroid at delivery. CONCLUSION: Propylthiouracil and methimazole are equally effective and safe in the treatment of hyperthyroidism in pregnancy.

Chi-Square Distribution↗

Early and late effect of neonatal hypo- and hyperthyroidism on coronary capillary geometry and long-term heart function in rat.

OBJECTIVE: The aim of the present study was two-fold: (1) to examine the effect of hyper- and hypothyroidism on the developing coronary capillary network in neonatal rats, and (2) to determine in adult rats that had re-established euthyroid status whether long-term changes in capillary geometry or cardiac function had been induced by either neonatal thyroid condition. METHOD: Two-day-old rats were treated every other day for 12 or 28 days with either 3,3'5-triiodo-l-thyronine or 0.05% 6-n-propylthiouracil. After this time, treatment was stopped and in two-thirds of the rats morphometric examination of capillary geometry and immunohistochemical detection of proliferating cell nuclear antigen (PCNA) expression in endothelial cell nuclei were conducted. Remaining rats were weaned and grew to 80 days of age, at which time persistent changes in capillary geometry, PCNA expression, and cardiac function were assessed. RESULTS: Neonatal hyperthyroidism induced cardiomegaly (P < 0.01), whereas neonatal hypothyroidism attenuated cardiac growth (P < 0.01). Capillary numerical density, capillary segment lengths and PCNA-labelling analysis indicated marked capillary growth in hyperthyroid rats (P < 0.05), but attenuated capillary growth in hypothyroid rats. The elicited capillary growth response appeared to be more dependent on altered tissue maturation than on cardiac growth rate. After discontinuing treatment both neonatal thyroid conditions induced a deficit in left ventricular growth (P < 0.01). Furthermore, neonatal hyperthyroidism appeared to inhibit subsequent capillary growth in distal regions of the capillary bed in addition to inducing lasting positive chronotropic and inotropic effects on cardiac function (P < 0.05). Neonatal hypothyroidism did not produce any lasting changes in capillarization or in cardiac function. CONCLUSIONS: Results suggest that neonatal thyroid status influences early growth and development of the coronary capillary network, possibly by regulating tissue maturation, as well as inducing lasting effects on subsequent cardiac and capillary growth and heart function.

Aging↗

Stimulation of carnitine acylcarnitine translocase activity in heart mitochondria from hyperthyroid rats.

The effect of hyperthyroidism on fatty acid oxidation and on carnitine-acylcarnitine translocase activity in rat heart mitochondria has been studied. The rates of palmitoylcarnitine supported respiration as well as the carnitine-palmitoylcarnitine exchange reaction were both stimulated (approx. 36%) in heart mitochondria from hyperthyroid rats. Kinetic analysis of the carnitine-carnitine exchange reaction showed that thyroid hormone affects the Vmax of this process, while having no effect on the Km values. The level of cardiolipin was significantly higher (approx. 40%) in heart mitoplasts from hyperthyroid rats than from the control rats. It can be concluded that thyroid hormones produce a stimulation of heart mitochondrial carnitine translocase activity and that the basis of this effect is likely an increase in the cardiolipin content.

Animals↗

Decrease in mitochondrial energy coupling by thyroid hormones: a physiological effect rather than a pathological hyperthyroidism consequence.

The effect of the in vivo thyroid status on mitochondrial membrane potential (delta psi(m)) in isolated rat hepatocytes was studies by means of a cytofluorimetric technique and the delta psi(m)-specific probe JC-1. It is shown that the delta psi(m) level decreases in the order hypothyroid > euthyroid > hyperthyroid. Polarographic measurement of the hepatocyte respiratory rates revealed an opposite trend of values: the highest respiratory rate in hepatocytes from hyperthyroid animals, the lowest in those from hypothyroid ones. This means that mitochondrial energy coupling is highest in hypothyroid hepatocytes and lowest in hyperthyroid hepatocytes. 6-Ketocholestanol added to hepatocytes failed to counterbalance the uncoupling effect of thyroid hormones on delta psi(m) and respiration rate. Under the same conditions, 6-ketocholestanol appeared to be effective in recoupling of respiration uncoupled by low concentrations of the artificial protonophore FCCP. The mechanism and possible physiological functions of the thyroid hormone-induced decrease in mitochondrial energy coupling are discussed.

Animals↗

Expression of uncoupling protein-3 and mitochondrial activity in the transition from hypothyroid to hyperthyroid state in rat skeletal muscle.

We sought a correlation between rat skeletal muscle triiodothyronine (T3)-mediated regulation of uncoupling protein-3 (UCP3) expression and mitochondrial activity. UCP3 mRNA expression increased strongly during the hypothyroid-hyperthyroid transition. The rank order of mitochondrial State 3 and State 4 respiration rates was hypothyroid < euthyroid < hyperthyroid. The State 4 increase may have been due to the increased UCP3 expression, as the proton leak kinetic was stimulated in the hypothyroid-hyperthyroid transition and a good correlation exists between the State 4 and UCP3 mRNA level. As a significant proportion of an organism's resting oxygen consumption is dedicated to opposing the proton leak, skeletal muscle mitochondrial UCP3 may mediate part of T3's effect on energy metabolism.

Animals↗

Thyroidectomy for hyperthyroidism in children.

Between November 1964 and August 1978, 66 patients underwent subtotal thyroidectomy for hyperthyroidism. Fifty-seven of these patients have been followed for more than 2 yr postoperatively and form the basis for this report. The mean age of these patients was 11 7/12 yr. There wre no deaths in this series and no recurrent laryngeal nerve injuries. Hyperthyroidism recurred in 4 patients from 10 to 60 mo following surgery (mean of 30 mo). Patients with relapse had a significantly larger gland at operation, but no difference in estimated thyroid remnant. Those patients with larger glands at exploration need a relatively larger percentage of the gland removed to prevent recurrent hyperthyroidism.

Adolescent↗

Evidence for a deficient pancreatic beta-cell response in a rat model of hyperthyroidism.

To clarify mechanism behind the abnormal glucose tolerance, observed in hyperthyroidism, we studied genomic and nongenomic effects of thyroid hormone on insulin secretion using a rat model of hyperthyroidism. Male Sprague-Dawley rats were intraperitoneally injected with vehicle, low (100 microg/kg) or high dose (600 microg/kg) of thyroxin (T(4)) for 2 weeks. Rats treated with high dose, but not low dose, of T(4), showed an increase in serum T(3) levels, and a decrease in body weight as compared to control rats. In rats treated with either dose of T(4), fasting blood glucose levels were increased, but serum insulin levels were similar to those of controls. After an oral glucose load, blood glucose levels were increased in rats treated with high dose, but not low dose, of T(4). Serum insulin levels after the oral glucose load were decreased in rats treated with either dose of T(4). After an intravenous glucose load, blood glucose levels were comparable among groups, but serum insulin levels tended to be low in T(4)-treated rats. Steady-state blood glucose levels were comparable among groups. The insulin secretory responses to high glucose (20mM) or arginine (10mM) of the isolated pancreas was decreased in rats treated with high dose, but not low dose, of T(4). Mean insulin secretory response to glucose and arginine were decreased by 40.1% and by 60.4% in high-dose-T(4)-treated rats. Addition of T(3) in the perfusion medium decreased glucose-induced insulin release. Ratios of proinsulin mRNA levels to beta-actin mRNA were decreased in the islets of T(4)-treated rats (0.45 +/- 0.07 vs control 0.61 +/- 0.03, p < 0.05). Levels of TR (thyroid hormone nuclear receptor) alpha1 + cErb Aalpha2 mRNA, but not TRbeta1, were decreased in the pancreatic islets of T(4)-treated rats. Calculated islet area was increased, but the number of beta-cells determined immunohistochemically was not increased in T(4)-treated rats, nor the volume density of insulin positive islets. We concluded that a deficient pancreatic beta-cell response to glucose, rather than insulin resistance, was responsible for abnormal glucose tolerance in this model of hyperthyroidism. Thyroid hormone causes a decrease in glucose-induced insulin secretion. We observed nongenomic and genomic effects of thyroid hormone on glucose-induced insulin secretion.

Animals↗

Hyperthyroidism. Causes, clinical features, and diagnosis.

The usual patient with hyperthyroidism has Graves' disease: If serum levels of thyroid hormone are clearly elevated, the presence of infiltrative ophthalmopathy or pretibial myxedema is probably sufficient for establishing the diagnosis. However, if the ancillary findings of Graves' are not present, the radioactive iodine uptake should be determined to rule out other possible etiologies of hyperthyroidism. Signs of hyperthyroidism may be subtle or misleading, particularly in the elderly; the well-informed clinician keeps the diagnosis in mind, and if the initial thyroid hormone tests are not definitive, employs additional tests that are cost-effective in the individual clinical situation.

Digestive System↗