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HLA class II antigen expression and the autoimmune thyroid response in patients with benign and malignant thyroid tumors.

To further understand the relationship between the immune system and the neoplastic human thyroid cell we investigated the degree of intrathyroidal lymphocytic infiltration and thyroid HLA class II expression in 17 patients with thyroid tumors. In another 60 thyroid tumor patients the association of thyroidal lymphocytic infiltration with thyroid autoantibody production was analyzed. In total 117 thyroid tissues were examined including tissue obtained at autopsy (n = 28), fetal thyroid tissue (n = 4), thyroid samples obtained from areas distant from benign follicular adenomas (n = 5), and 80 abnormal thyroids including patients with benign (n = 53) or malignant (n = 24) thyroid tumors and Hashimoto's thyroiditis (n = 3). Normal adult and fetal thyroid tissue had no significant lymphocytic infiltration and no detectable HLA-DR, -DP, or -DQ antigens on their thyroid follicular epithelial cells. The degree of lymphocytic infiltration in the nonneoplastic thyroid tissue of thyroid glands with benign and malignant thyroid tumors varied considerably and correlated with the presence and titer of serum thyroid autoantibodies measured by sensitive ELISA techniques. However, all but one of the benign follicular adenomas had thyroid cells negative for HLA class II determinants despite the presence of infiltrating lymphocytes, while 7 of 10 thyroid carcinomas expressed class II antigen (principally HLA-DR) even when only minor degrees of lymphocytic infiltration were present. These data indicate a correlation between lymphocytic infiltrates and serum thyroid autoantibody titers but the relationship with HLA class II expression is more complex. Since we have previously shown that HLA class II antigen expression can be induced by local interferon-gamma secretion, presumably from activated T cells, we conclude that estimates of simple thyroid lymphocytic infiltration and serum autoantibody secretion do not correlate with the degree of intrathyroidal T-cell activation. Furthermore, our observation of increased expression of HLA class II antigens in thyroid cancer suggests considerable cellular heterogeneity in susceptibility to HLA class II antigen induction in human thyroid disease.

Adenoma↗

Recent developments in the investigation of thyroid regulation and thyroid carcinogenesis.

This review covers new mechanistic information spanning the past 10 years relevant to normal and abnormal thyroid growth and function that may assist in the risk assessment of chemicals inducing thyroid follicular cell neoplasia. Recent studies have shown that thyroid regulation occurs via a complex interactive network mediated through several different messenger systems. Increased thyroid-stimulating hormone (TSH) levels activate the signal transduction pathways to stimulate growth and differentiation of the follicular cell. The important role of TSH in growth as well as in function helps to explain how disruptions in the thyroid-pituitary axis may influence thyroid neoplasia in rodents. New investigations that couple mechanistic studies with information from animal cancer bioassays (e. g., sulfamethazine studies) confirm the linkage between prolonged disruption of the thyroid-pituitary axis and thyroid neoplasia. New initiation/promotion studies in rodents also support the concept that chronic stimulation of the thyroid induced by goitrogens can result in thyroid tumors. Some of these studies confirm previous suggestions regarding the importance of chemically induced thyroid peroxidase inhibition and the inhibition of 3,3',5, 5'-tetraiodothyronine (T4, thyroxine) deiodinases on disruption of the thyroid-pituitary axis leading to thyroid neoplasia. Some comparative physiologic and mechanistic data highlight certain differences between rodents and humans that could be expected to confer an increased vulnerability of rodents to chronic hypersecretion of TSH. New data from epidemiologic and molecular genetic studies in humans contribute further to an understanding of thyroid neoplasia. Acute exposure to ionizing radiation, especially in childhood, remains the only verified cause of thyroid carcinogenesis in humans. Iodine deficiency studies as a whole remain inconclusive, even though several new studies in humans examine the role of dietary iodine deficiency in thyroid cancer. Specific alterations in gene expression have been identified in human thyroid neoplasia, linked to tumor phenotype, and thus oncogene activation and tumor-suppressor gene inactivation may also be factors in the development and progression of thyroid cancer in humans. An analysis by the U.S. EPA Risk Assessment Forum, prepared as a draft report in 1988 and completed in 1997, focused on the use of a threshold for risk assessment of thyroid follicular tumors. New studies, involving several chemicals, provide further support that there will be no antithyroid activity until critical intracellular concentrations are reached. Thus, for chemically induced thyroid neoplasia linked to disruptions in the thyroid-pituitary axis, a practical threshold for thyroid cancer would be expected. More information on thyroid autoregulation, the role of oncogene mutations and growth factors, and studies directly linking persistently high TSH levels with the sequential cellular development of thyroid follicular cell neoplasia would provide further confirmation.

Adenocarcinoma, Follicular↗

Long-term outcome of interferon-alpha-induced thyroid autoimmunity and prognostic influence of thyroid autoantibody pattern at the end of treatment.

Thyroid autoimmunity and dysfunction have been widely reported as side effects of interferon-alpha (IFN-alpha) treatment, but the literature lacks data regarding the long-term course of these complications, clinical observation being limited to 6-12 months off therapy. Our study is the first that has aimed to evaluate the natural history of IFN-related thyroid autoimmunity during a 6.2-yr follow-up after the IFN-alpha withdrawal as well as to investigate the potential role of the autoantibody pattern at the end of treatment to predict the long-term outcome. Our study group included 114 patients (79 males, 35 females), mean age 48 yr (range 23-67 yr) with no preexisting thyroid disease, undergoing a 12-month treatment with recombinant IFN-alpha for C virus-related chronic active hepatitis. Thyroid autoimmunity (serum TgAb and TPOAb) and function (serum FT(4), FT(3), TSH) were retrospectively evaluated at the end of IFN therapy, 6 months after IFN withdrawal and after a median period of 6.2 yr (range 5.5-8.4 yr). At the end of treatment, 78 patients were negative for thyroid autoantibodies (Abs-) and all but one of them remained so for the following evaluations. The remaining 36 patients had thyroid autoantibodies (Abs+) at the end of treatment, and they subsequently showed a heterogeneous behavior: 16 patients remained Abs+ for the whole length of the study (persistent thyroiditis); 10 patients became Abs- 6 months off therapy but were again Abs+ 6.2 yr later (remitting/relapsing thyroiditis); 10 patients reverted to autoantibody negativity at different observation times (transient thyroiditis). The absence of thyroid autoantibodies at the end of treatment was a protective factor for the successive development of thyroiditis (odds ratio: 0.02, confidence interval (CI) 95%: 0-0.1). On the contrary, the positivity for TgAb and/or TPOAb at high titers at the end of IFN treatment was significantly related to the highest risk of having chronic thyroiditis (odds ratio: 17.3, CI 95%: 3.2-91.7 for TgAb levels > 50 degree percentile; odds ratio: 7.3, CI 95%: 1.5-35.2 for TPOAb levels > 50 degree percentile). None of the patients showed overt thyroid dysfunction throughout the study, whereas a subclinical hypothyroidism was found in 12 patients. In all 12 cases, the functional abnormality was accompanied by the presence of thyroid autoantibodies. Eight of these 12 patients belonged to the group with persistent thyroiditis (P < 0.05). The absence of thyroid autoantibodies at the end of treatment was a protective factor for the successive development of thyroid dysfunction (odds ratio: 0.06, CI 95%: 0.01-0.56). On the contrary, the positivity for both TgAb and TPOAb at the end of IFN therapy was significantly correlated with the highest risk of having subclinical hypothyroidism 6.2 yr. later (odds ratio: 38.7; CI 95%: 6.2-242). Our study demonstrates that in patients undergoing an IFN-alpha therapy for chronic hepatitis C and with no evidence of preexisting thyroid disease: 1) the negativity for thyroid autoantibodies after IFN treatment is a protective factor for the developing thyroid autoimmunity and/or dysfunction in following years; 2) the IFN-alpha-related thyroid autoimmunity is not a complete reversible phenomenon because some patients can develop chronic thyroiditis; 3) high autoantibody levels at the end of IFN therapy are related to the risk of having chronic thyroid autoimmunity; and 4) the coexistence of TgAb and TPOAb at the end of treatment is a predictive factor for the presence of thyroid dysfunction, even if subclinical, many years after IFN withdrawal.

Adult↗

Studies on thyroid cell surface antigens using cultured human thyroid cells.

Human thyroid cells in primary culture were used for studies of thyroid cell surface antibodies in patients with thyroid autoimmune disorders. Radioiodinated IgG preparations containing thyroid microsomal antibody (TMAb), thyroid stimulating antibody (TSAb) and/or thyroglobulin antibody (TgAb) were tested for binding to thyroid cells. Binding was observed with radioiodinated IgG from patients with Graves' disease, Hashimoto's thyroiditis and idiopathic myxoedema containing TMAb, irrespective of the presence of TSAb and TgAb, while negative results were obtained with normal IgG. A dose-dependent inhibition of binding to thyroid cells was produced by the addition of the corresponding unlabelled IgG preparations. Evidence for tissue specificity was provided by the absence of binding to human skin fibroblasts used as controls. Preabsorption with human thyroid microsomes completely abolished the binding to thyroid cells of a radioiodinated TMAb positive IgG preparation, while only incomplete removal of the reactivity to thyroid microsomes was produced by preabsorption with thyroid cells. These data suggest that some but not all microsomal antigenic determinants are expressed on the thyroid cell surface. Binding to thyroid cells was also observed with purified TgAb, indicating that thyroglobulin antigenic determinants are present on the surface of thyroid cells. No evidence of binding was obtained with a TSAb positive Graves' IgG preparation with undetectable TMAb and TgAb. Unlabelled IgG preparations containing TMAb from patients with either Hashimoto's thyroiditis or idiopathic myxoedema were shown to inhibit the binding to thyroid cells of radioiodinated TMAb positive Graves' IgG and vice versa. These data indicate that antibodies present in these thyroid autoimmune disorders share common thyroid cell surface antigens. However, the binding of radioiodinated IgG from a patient with idiopathic myxoedema was only partially inhibited by Graves' or Hashimoto's IgG, suggesting that some of the thyroid cell surface antibodies of idiopathic myxoedema may not be detectable in other thyroid autoimmune disorders.

Antibodies↗

[A case of acute suppurative thyroiditis associated with thyroid papillary carcinoma].

A sixty-one-year-old female was admitted to our hospital in October 1988 because of fever and a right neck mass associated with redness and tenderness. The size of the thyroid mass had gradually increased over 3 months. Two masses were detected in the thyroid by ultrasonography and MRI. She has positive thyroid autoantibodies, high CRP levels and high erythrocyte sedimentation rates. While she had normal white blood cell counts, massive neutrophils were obtained from her thyroid mass by aspiration biopsy, indicating acute suppurative thyroiditis. However, we could not find any bacteria to cause suppurative thyroiditis either in the blood or in thyroid aspirates. Serum levels of thyroid hormone were slightly elevated but she did not complain of any thyrotoxic symptoms. Radioactive iodine uptake (RAIU) of the thyroid gland was markedly decreased (2%/24h). Following treatment with antibiotics, her inflammation and symptoms immediately improved, and pus spontaneously ran from the collapsed thyroid mass. Then serum thyroid hormone levels and RAIU were normalized and the right thyroid mass disappeared. She was discharged in December 1988. There were no signs of recurrence of suppurative thyroiditis until now. She received a pharyngo-esophageal barium examination in search of the route of infection 4 times, but no fistula was revealed. However, as her left thyroid mass consistently remained thereafter, an operation of the left thyroid mass was performed in December 1989. The histologic examination of the resected thyroid revealed the coexistence of encapsulated follicular adenoma, minute papillary carcinoma and chronic thyroiditis. There are few reports of such a case having a combination of suppurative thyroiditis, thyroid cancer and chronic thyroiditis observed in an elderly female.

Acute Disease↗

Thyroid hormone for preventing of neurodevelopmental impairment in preterm infants.

BACKGROUND: Observational studies have shown an association between transiently low thyroid hormone levels in preterm infants in the first weeks of life (transient hypothyroxemia) and an abnormal neurodevelopmental outcome. Thyroid hormone therapy might prevent this morbidity. OBJECTIVES: To assess whether thyroid hormone therapy in preterm infants without congenital hypothyroidism results in clinically important changes in neonatal and long term outcomes in terms of both benefits and harms. SEARCH STRATEGY: The standard search strategy of the Neonatal Review Group was used. This included searches of the Oxford Database of Perinatal Trials, Cochrane Controlled Trials Register, MEDLINE, previous reviews including cross references, abstracts, conferences, symposia proceedings, expert informants and journal handsearching in the English language. SELECTION CRITERIA: All trials using random or quasi-random patient allocation, in which thyroid hormone therapy (either treatment or prophylaxis) was compared to a control in premature infants. DATA COLLECTION AND ANALYSIS: Primary clinical outcomes included measures of neurodevelopmental outcome and mortality. Assessment of trial quality, data extraction and synthesis of data, using relative risk (RR) and weighted mean difference (WMD), were performed using standard methods of the Cochrane Collaboration and its Neonatal Review Group. MAIN RESULTS: Eight studies were identified that compared thyroid hormone treatment to control. Four randomized or quasi-randomized studies met inclusion criteria (Chowdhry 1984, Amato 1989, van Wassenaer 1997 and Vanhole 1997). All studies enrolled preterm infants < 32 weeks gestation, but used different timing, dose and duration of treatment with thyroid hormones. Three studies used thyroxine, whereas Amato 1989 used triiodothyronine. Only two studies with neurodevelopmental follow-up were of good methodology (van Wassenaer 1997 and Vanhole 1997). All studies were of small size with the largest, van Wassenaer 1997, enrolling 200 infants. A lack of comparability of data (neurodevelopmental test or timing of follow-up) prevented meta-analytic pooling of the studies for neurodevelopmental outcomes. There was no significant difference in mortality to discharge (typical relative risk 0.74, 95% CI 0.44, 1.26) in infants who received thyroid hormone treatment compared to controls. In individual studies, no significant differences were found in neurodevelopmental outcomes including risk of abnormal neurological outcome, and Bayley Mental or Psychomotor Development Indices. No data were available for the incidences of cerebral palsy or sensorineural impairment. Fraction of inspired oxygen was lower in infants receiving triiodothyronine in one small quasi-randomized study (Amato 1989), but not in infants receiving thyroxine in a randomized study (Vanhole 1997). No other differences were found to suggest a reduced severity of respiratory distress syndrome in infants receiving early thyroid hormone therapy. REVIEWER'S CONCLUSIONS: This review does not support the use of thyroid hormones in preterm infants to reduce neonatal mortality, improve neurodevelopmental outcome or to reduce the severity of respiratory distress syndrome. The a posteriori subgroup analyses of data from one study (van Wassenaer 1997) which showed benefits in infants 24-25 weeks gestation should be treated with caution. The small number of infants included in trials incorporated in this review limits the power of the meta-analysis to detect clinically important differences in neonatal outcomes. Future trials should be of sufficient size to detect clinically important differences in neurodevelopmental outcomes. They should consider enrolling those infants most likely to benefit from thyroid hormone treatment such as infants born at less than 27 weeks gestation and use thyroid hormones as treatment instead of prophylaxis.

Developmental Disabilities↗

The effect of hepatic enzyme-inducing drugs on thyroid hormones and the thyroid gland.

With the understanding that various drugs, industrial chemicals, and chemicals of environmental importance can increase thyroid hormone hepatic metabolism and excretion, it is important to consider whether compensation by the thyroid gland for this increased excretion can lead to stimulation of the hypothalamic-pituitary-thyroid axis and possibly secondary hyperplastic or neoplastic changes in the thyroid. The compounds discussed in this review all affect thyroid function by increasing biliary excretion of thyroid hormone metabolites. Numerous studies have been performed to elucidate the effect of these drugs on thyroid hormone equilibrium. Animals given PB compensate for the increased biliary excretion with an elevated TSH allowing maintenance of a euthyroid state. Human studies demonstrate increased thyroid hormone plasma clearance, but without an increased TSH. The effects of an experimental leukotriene antagonist are similar. In humans, diphenylhydantoin has been conclusively shown to cause a decrease in peripheral thyroid hormone levels, although without evident hypothyroidism or increase in TSH. Limited studies of rifampin and carbamazepine reveal similar results. Nicardipine in rats causes reproducible decreases in free T4 levels, although it does not clearly stimulate a rise in TSH levels. An experimental imidazole caused reversible lowering of peripheral thyroid hormone levels in rats; in this study TSH was not measured. Studies with aromatic hydrocarbons administered to rats reveal a general decrease in T4 levels, with a compensatory increase of TSH. The effects of chronic administration of a compound that can cause increased thyroid hormone metabolism with compensation via increased TSH production are of more than theoretical interest, as it has been well documented that constant stimulation of the thyroid gland in rats with supraphysiological levels of TSH causes goiter, thyroid hyperplasia, adenomas, and carcinomas. In humans with congenital metabolic thyroid deficiencies there is an increased incidence of thyroid neoplasia, suggesting an association with chronic increased TSH levels. In contrast, however, large epidemiological studies of areas of endemic goiter do not show an association of human thyroid cancer with iodine deficiency and presumed chronic thyroid gland stimulation. Histological evidence of thyroid follicular hyperplasia has been noted in rats after administration of phenobarbital, nicardipine, polycyclic hydrocarbons, and possibly an experimental imidazole. Increased thyroid gland size has been demonstrated in rats given phenobarbital, nicardipine, a leukotriene antagonist, and various polycyclic hydrocarbons. Thyroid carcinoma in rats has been associated with treatment with nicardipine and after exposure to several aromatic hydrocarbons.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Thyroid ultrasonography helps to identify patients with diffuse lymphocytic thyroiditis who are prone to develop hypothyroidism.

The clinical usefulness of thyroid ultrasonography in the evaluation of patients with autoimmune thyroiditis has been investigated. Thyroid ultrasonography was performed in 1184 consecutive patients attending our clinic, and the echo density of the thyroid parenchyma was evaluated with respect to that of normal thyroid tissue. Diffuse thyroid hypoechogenicity was found in 44 of 238 (18.5%) patients with autoimmune thyroiditis; the degree of hypoechogenicity was significantly correlated with the levels of circulating thyroid autoantibodies. Thyroid function was normal in all 194 patients with normal thyroid echogenicity, whereas hypothyroidism was found in 28 of 44 (63.6%) with reduced thyroid echogenicity. Included in this group were 8 patients, euthyroid at the first observation, who developed hypothyroidism over an 18-month follow-up period. None of the 133 patients with autoimmune thyroiditis and normal thyroid echogenicity followed for the same period of time became hypothyroid. Evidence of diffuse lymphocytic thyroiditis was obtained by histology after thyroidectomy (n = 10) or multiple fine needle aspiration cytology (n = 15) in 25 of the 44 patients with thyroid hypoechogenicity; on the other hand, focal thyroiditis was shown at histology in 8 patients who had normal thyroid echogenicity. In conclusion, diffuse low thyroid echogenicity was found in about 20% of patients with autoimmune thyroiditis. This echographic pattern is indicative of diffuse autoimmune involvement of the gland and is associated with or may predict the development of hypothyroidism.

Autoantibodies↗

Vascular endothelial growth factor expression is higher in differentiated thyroid cancer than in normal or benign thyroid.

Vascular endothelial growth factor (VEGF) is an angiogenic factor, and its expression has been rarely demonstrated in thyroid tumors. We, therefore, investigated the expression of VEGF messenger RNA (mRNA) and production of VEGF protein in cell lines from human primary and metastatic follicular (FTC-133, FTC-236, and FTC-238), papillary (TPC-1), Hürthle cell (XTC-1), and medullary thyroid cancers (MTC-1.1 and MTC-2.2), and in human thyroid tissues (papillary, follicular, medullary, and Hürthle cell cancers, follicular adenomas, and Graves' thyroid tissue) by Northern blot, immunohistochemistry, and enzyme-linked immunosorbent assay (ELISA) studies. All thyroid cell lines expressed a 4.2-kilobase VEGF mRNA. The VEGF mRNA levels were higher in the thyroid cancer cell lines than in primary cultures of normal thyroid cells, and higher in thyroid cancers of follicular than those of parafollicular cell origin. The VEGF mRNA levels were similar in primary and metastatic thyroid tumors. Immunohistochemical staining and Northern blot analysis of the cell lines correlated positively, thus thyroid cancer cell lines stained more intensely than normal thyroid cells and follicular tumor cells more intensely than parafollicular tumor cells. Again, no difference was noted in VEGF staining between primary and metastatic thyroid tumors. Deparafinized sections of papillary, follicular, and Hürthle cell cancers also stained much stronger than those of medullary thyroid cancers, benign, or hyperplastic (Graves' disease) thyroid tissue. Thyroid cancer cell lines (XTC-1 > TPC-1 > FTC-133 > MTC-1.1) also secreted more VEGF protein as measured by ELISA than did normal thyroid cells. VEGF secretion of cell lines derived from primary and metastatic thyroid tumors were similar. VEGF mRNA is therefore expressed, and VEGF protein is secreted by normal, hyperplastic, and neoplastic thyroid tissues. The higher levels of VEGF expression in differentiated thyroid cancers of follicular cell origin suggests a role in oncogenesis.

Adenocarcinoma↗

Expression of the Na+/I- symporter gene in human thyroid tumors: a comparison study with other thyroid-specific genes.

The expression of 4 thyroid tissue-specific genes [Na+/I- symporter (NIS), thyroid peroxidase (TPO), thyroglobulin (Tg), TSH receptor (TSH-R)] as well as of the glucose transporter type 1 (Glut1) gene was analyzed in 90 human thyroid tissues Messenger ribonucleic acids were extracted from 43 thyroid carcinomas (38 papillary and 5 follicular), 24 cold adenomas, 5 Graves' thyroid tissues, 8 toxic adenomas, and 5 hyperplastic thyroid tissues; 5 normal thyroid tissues were used as reference. A kinetic quantitative PCR method, based on the fluorescent TaqMan methodology and real-time measurement of fluorescence, was used. NIS expression was decreased in 40 of 43 thyroid carcinomas (10- to 1200-fold) and in 20 of 24 cold adenomas (2- to 700-fold); it was increased in toxic adenomas and Graves' thyroid tissues (up to 140-fold). TPO expression was decreased in thyroid carcinomas, but was normal in cold adenomas; it was increased in toxic adenomas and Graves' thyroid tissues Tg expression was decreased in thyroid carcinomas, but was normal in the other tissues. TSH-R expression was normal in most tissues studied and was decreased in only some thyroid carcinomas. In thyroid cancer tissues, a positive relationship was found between the individual levels of expression of NIS, TPO, Tg and TSH-R. No relationship was found with the age of the patient. Higher tumor stages (stages >I vs stage I) were associated with lower expression of NIS (P = 0.03) and TPO (P < 0.01). Expression of the Glut1 gene was increased in 1 of 24 adenomas and in 8 of 43 thyroid carcinomas. In 6 thyroid carcinoma patients, 131I uptake was studied in vivo; NIS expression was low in all samples; 3 patients with normal Glut-1 gene expression had 131I uptake in metastases, whereas the other 3 patients with increased Glut-1 gene expression had no detectable 131I uptake. In conclusion, this study shows 1) a reduced expression of NIS gene in most hypofunctioning benign and malignant thyroid tumors; 2) a differential regulation of the expression of thyroid-specific genes; 3) an increased expression of Glut-1 gene in some malignant tumors that may suggest a role for glucose derivative tracers to detect in vivo thyroid cancer metastases by positron emission tomography scanning.

Adenocarcinoma, Follicular↗

Relationship between breast cancer and thyroid disease: relevance of autoimmune thyroid disorders in breast malignancy.

The relationship between thyroid dysfunction and breast cancer (BC) is debated. To clarify this controversial issue, a prospective study on thyroid function in BC was performed. The prevalence of thyroid disease was examined in 102 consecutive BC patients with ductal infiltrating carcinoma after surgery and before starting any chemohormonal or x-ray therapy and in 100 age-matched control healthy women living in the same borderline iodine-sufficient geographic area. All subjects were submitted to clinical ultrasound thyroid evaluation and serum free T4, free T3, TSH, thyroperoxidase antibody, and thyroglobulin antibody determination. Fine needle aspiration was performed in all thyroid nodules. Estrogen and progesterone receptors (ER and PR, respectively) were assayed in 92 and 55 BC specimens, respectively. The overall prevalence of thyroid disease was 47 in 102 (46%) in BC patients and 14 in 100 (14%) in controls (P < 0.0001). The prevalence of nontoxic goiter was 27.4% in BC patients and 11% in controls (P = 0.003). Hashimoto's thyroiditis was found in 13.7% of BC patients and in only 2% of the controls (P < 0.005). Other thyroid disorders found in the BC group included 2 cases of Graves' disease, 2 of thyroid carcinoma, and 1 of subacute thyroiditis, whereas in the control group only 1 case of Graves' disease and none of the other disorders were found. Mean free T3, free T4, and TSH concentrations showed no difference between BC patients and controls. The prevalence of thyroperoxidase antibody was higher in BC patients than in controls (23.5% vs. 8%; P < 0.005), whereas the prevalence of thyroglobulin antibody was not different. In BC patients the presence of thyroid antibodies was more frequently associated with clinically detectable autoimmune thyroiditis (14 of 26, 51.8%; P = 0.03) and was more common in the younger group. The positivity of ER was found in 51 of 92 (55.43%) and that of PR was found in 26 of 55 (47.27%) BC specimens. No relationship was found among ER, PR status, and the presence of serum thyroid antibodies. In conclusion, 1) the present study provides evidence that the overall prevalence of thyroid disorders is increased in patients with breast cancer, and 2) thyroid autoimmune disorders, especially Hashimoto's thyroiditis, account to a large extent for the increased prevalence of thyroid disease in patients with breast cancer. This feature is independent from the ER and PR status of the primary tumor. The present findings call attention to the usefulness of screening for thyroid disease in any patient with breast cancer.

Adult↗

Sensitivity of thyroid gland growth to thyroid stimulating hormone (TSH) in rats treated with antithyroid drugs.

Antithyroid drugs and phenobarbital (PB) have been shown to promote thyroid tumors in rats. It has been proposed that increased thyroid-stimulating hormone (TSH) mediates the thyroid tumor-promoting effect of antithyroid drugs and PB, and is increased because of decreased thyroxine (T4) concentration. However, PB is much less effective than antithyroid drugs at increasing TSH. It has been proposed that small increases in serum TSH produced by PB treatment is sufficient to promote thyroid tumors. However, the level to which TSH must be increased to stimulate the thyroid gland has not been reported. Therefore, we have examined the effect of increasing serum TSH concentration on thyroid growth by measuring thyroid gland weight and thyroid follicular cell proliferation. Serum TSH concentrations were increased by feeding rats various concentrations of propylthiouracil (PTU) or methimazole (MMI) for 21 days. Serum total T4, free T4, total T3 (triiodothyronine), free T3, and TSH concentrations were measured by radioimmunoassay. Thyroid follicular cell proliferation was measured by autoradiography and expressed as a labeling index (LI). PTU and MMI treatments reduced total and free T4 more than 95% by day 21, whereas total and free T3 were reduced 60%. TSH, thyroid follicular cell proliferation and thyroid weight were increased 560%, 1400%, and 200%, respectively, by day 21. TSH was significantly correlated with thyroid weight and LI. Moderate increases in serum TSH of between 10 and 20 ng/ml increased the number of proliferating thyroid follicular cells, but had no effect on thyroid weight. These results support that small increases in serum TSH can be sufficient to stimulate thyroid follicular cell proliferation. Furthermore, thyroid follicular cell proliferation may be more useful than thyroid weight alone for assessing alterations in thyroid growth in rats treated with chemicals that produce only small to moderate increases in serum TSH.

Animals↗