1.Diagnostic tests for thyroid function and disorders.
Yan LIANG ; Hong WEI ; Mu-ti WANG
Chinese Journal of Pediatrics 2006;44(9):662-665
2.Epidemiological study of the effects of smoking cigarette on thyroid gland.
Xiao-Lan GU ; Jin-yuan MAO ; Zhong-yan SHAN ; Xiao-chun TENG ; Di TENG ; Hai-xia GUAN ; Yu-shu LI ; Xiao-hui YU ; Chen-ling FAN ; Wei CHONG ; Fan YANG ; Hong DAI ; Yang YU ; Jia LI ; Yan-yan CHEN ; Dong ZHAO ; Rong YANG ; Ya-qiu JIANG ; Chen-yang LI ; Wei-ping TENG
Chinese Journal of Epidemiology 2007;28(1):53-56
OBJECTIVETo investigate the effect of cigarette smoking on thyroid gland volume, thyroid function and thyroid autoantibodies in the areas with different iodine intakes.
METHODSA cross-sectional epidemiological study in Panshan (mild iodine-deficient area), Zhangwu (more than adequate iodine intake area) and Huanghua (iodine-excessive area) was conducted in 3761 subjects in 1999.80.2 % of them were followed up in 2004. Questionnaires, thyroid function, thyroid autoantibodies, urinary iodine concentration,and thyroid B ultrasound were performed.
RESULTSThe prevalence of goiter was higher in smokers than in non-smokers (15.1% vs. 11.5%, P< 0.05). The average thyroid volume was higher in smokers with phenomenon more obvious in Panshan and Huanghua areas. Data from logistic analysis showed that smoking cigarette was an independent risk factor of goiter. There was no difference in serum TSH and Tg level between smokers and non-smokers. The positive rate of TPOAb (>100 IU/ml) was higher in smokers than in non-smokers(10.8% vs. 9.0 % , P <0.05) and was especially obvious in Huanghua area. Smoking was a independent risk factor of increasing positive rate of TPOAb. During the prospective observation,it was found that the incidence of positive TPOAb(>,100 IU/ml) was 7.4% in the subjects that were from non-smokers turning to smokers and 2.9% in those whose smoking behavior did not change. Logistic analysis indicated that the shifting from non-smoking to smoking was independent risk factor for the increase on high incidence of positive TPOAb.
CONCLUSIONSmoking cigarette was a independent risk factor of goiter. Smoking was also a risk factor of increasing TPOAb positive rate. Shifting from not smoking to smoking was an independent risk factor of increasing high incidence of positive TPOAb.
Autoantibodies ; blood ; Cross-Sectional Studies ; Female ; Goiter ; blood ; epidemiology ; immunology ; physiopathology ; Humans ; Incidence ; Male ; Smoking ; adverse effects ; Thyroid Function Tests ; Thyroid Gland ; physiopathology ; Thyroid Hormones ; blood
3.Autoantibodies against thyroid hormones and their influence on thyroxine determination with chemiluminescence immunoassay in dogs.
Marion PIECHOTTA ; Michael ARNDT ; Hans Otto HOPPEN
Journal of Veterinary Science 2010;11(3):191-196
Autoantibodies against thyroxin (T4AA) and triiodothyronine (T3AA) are present in dogs with autoimmune thyroiditis and have been reported to interfere with immunoassays. The objectives of this study were to determine the frequency of autoantibodies and to determine whether interference occurs by T4AA, using a non-immunological method (high performance liquid chromatography, HPLC) for thyroxin (T4) measurement. Based on clinical symptoms, T4 and thyroid stimulating hormone (TSH) concentration, 1,339 dogs were divided into six groups: Group 1: hypothyroid (n = 149); Group 2: subclinical thyroiditis (n = 110); Group 3: suspicious for non thyroidal illness (n = 691); Group 4: biochemical euthyroid (n = 138); Group 5: hypothyroid dogs under substitution therapy (n = 141); Group 6: healthy dogs (n = 110). The incidence of T4AA and T3AA, determined using radiometric assay, was low (0.5% and 3.8%) and higher in hypothyroid dogs compared to dogs suspicious for hypothyroidism (Group 2-4) (p<0.05). T4AA was not detected in dogs with normal T4 and elevated TSH. T4 concentrations of T4AA positive samples determined using HPLC were comparable to results obtained by chemiluminescence immunoassay. These findings indicate that the probability of interference of T4AA leading to falsely elevated T4 concentration in the T4 assay seems to be low.
Animals
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Autoantibodies/*immunology
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Chemiluminescent Measurements/methods/*veterinary
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Chromatography, High Pressure Liquid/veterinary
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Dog Diseases/*diagnosis/*immunology
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Dogs
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Immunoassay/methods/*veterinary
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Thyroid Hormones/*immunology
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Thyroiditis, Autoimmune/diagnosis/immunology/*veterinary
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Thyroxine/*blood
4.Graves' Patient with Thymic Expression of Thyrotropin Receptors and Dynamic Changes in Thymic Hyperplasia Proportional to Graves' Disease Activity.
Young Shin SONG ; Jae Kyung WON ; Mi Jeong KIM ; Ji Hyun LEE ; Dong Wan KIM ; June Key CHUNG ; Do Joon PARK ; Young Joo PARK
Yonsei Medical Journal 2016;57(3):795-798
Thymic hyperplasia is frequently observed in Graves' disease. However, detectable massive enlargement of the thymus is rare, and the mechanism of its formation has remained elusive. This case showed dynamic changes in thymic hyperplasia on serial computed tomography images consistent with changes in serum thyrotropin receptor (TSH-R) antibodies and thyroid hormone levels. Furthermore, the patient's thymic tissues underwent immunohistochemical staining for TSH-R, which demonstrated the presence of thymic TSH-R. The correlation between serum TSH-R antibody levels and thymic hyperplasia sizes and the presence of TSH-R in her thymus suggest that TSH-R antibodies could have a pathogenic role in thymic hyperplasia.
Adult
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Female
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Graves Disease/*complications/surgery/therapy
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Humans
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Male
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Receptors, Thyrotropin/blood
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Thymus Gland/diagnostic imaging
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Thymus Hyperplasia/*diagnostic imaging/etiology/immunology
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Thyroid Hormones
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Thyroidectomy
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Thyrotropin/blood
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Tomography, X-Ray Computed
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Young Adult