• Title/Summary/Keyword: Thyrotropin

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There is no Gradient of TSH Receptor Antibody Activity Between Thyroidal and Peripheral Venous Blood in Patients with Graves' Disease, Undergoing Subtotal Thyroidectomy, Prepared with Antithyroid Drugs (항갑상선제로 치료받은 Graves병 환자에서 수술시 갑상선 정맥혈과 말초정맥혈간에 TSH 수용체항체의 활성도에는 차이가 없다)

  • Koh, Chang-Soon;Shong, Young-Kee;Cho, Bo-Youn;Koong, Sung-Soo;Lee, Myung-Hae;Lee, Myung-Chul;Oh, Seung-Keun
    • The Korean Journal of Nuclear Medicine
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    • v.22 no.2
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    • pp.171-174
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    • 1988
  • Thyrotropin binding inhibitory immunoglobulin (TBII) and thyroid stimulating antibody (TSAb) activities were measured in the thyroidal and peripheral venous blood samples at the time of subtotal thyroidectomy from twenty one patients with Graves' disease prepared for surgery with antithyroid drugs. There was no difference in TBII and TSAb activities between thyroidal and peripheral blood samples. These findings were regarded that while intrathyroidal lymphocytes are major site of thyrotropin receptor antibody (TRAb) production, similar levels are found in thyroidal and peripheral veins and that this in vivo study cannot exactly ascertain the TRAb producing site.

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Effects of muscarinic receptor stimulation on the thyrotropin-induced thyroxine release in the guinea pig thyroid (기니픽 갑상선에서 Thyrotropin에 의한 thyroxine 유리에 대한 muscarinic 수용체 자극효과)

  • Kim, Hong-hyun;Kim, Jin-shang
    • Korean Journal of Veterinary Research
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    • v.39 no.1
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    • pp.55-61
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    • 1999
  • The present experiments were performed to examine the effects of acetylcholine (ACh) and carbachol (CC) on thyroxine ($T_4$) release and any possible relation between inhibition of $T_4$ release and signaling pathway in guinea pig thyroids. The thyroids were incubated in the medium containing the test agents, samples of the medium were assayed for $T_4$ by EIA kits. ACh and CC inhibited the TSH-stimulated $T_4$ release. These inhibition were reversed by atropine, but not by d-tubocurarine. The inhibitory effects of ACh on $T_4$ release were prevented by $M_{1^-}$ and $M_{3^-}$muscarinic antagonists and its inhibition was also slightly reversed by $M_{2^-}$ and $M_{4^-}$muscarinic antagonists. R59022, like ACh and CC, also inhibited the TSH-stimulated $T_4$ release. This inhibition was reversed by protein kinase C inhibitor and $Ca^{2+}$ channel blocker. The present study suggests that cholinergic inhibition of $T_4$ release from thyroids can be induced mainly by activation of the $M_{1^-}$ or $M_{3^-}$ receptors and that it is mediated through the muscarinic receptorstimulated protein kinase C activation.

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Identification of a de novo mutation (H435Y) in the THRB gene in a Korean patient with resistance to thyroid hormone (갑상선호르몬 수용체 베타 유전자 돌연변이(H435Y)가 확인된 갑상선호르몬 저항성 증후군 1례)

  • Shin, Jin Young;Ki, Chang-Seok;Kim, Jin Kyung
    • Clinical and Experimental Pediatrics
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    • v.50 no.6
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    • pp.576-579
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    • 2007
  • The syndrome of resistance to thyroid hormone (RTH) is characterized by reduced tissue sensitivity to thyroid hormone (TH). In the majority of subjects, RTH is caused by mutations in the thyroid hormone receptor beta ($TR{\beta}$) gene, located on the chromosome locus 3p24.3. RTH is inherited in an autosomal dominant manner. The clinical presentation of RTH is variable, but common features include elevated serum levels of thyroid hormone (TH), a normal or slightly increased thyrotropin (thyroid stimulating hormone, TSH) level that responds to thyrotropin releasing hormone (TRH), and goiter. We report a 4 year-old girl, who was clinically euthyroid in spite of high total and free $T_4$, and $T_3$ concentrations, while TSH was slightly increased. Sequence analysis of the thyroid hormone receptor beta gene (THRB) confirmed a heterozygous C to T change at nucleotide number 1303, resulting in a substitution of histidine by tyrosine at codon 435 (H435Y). Further analysis of her parents revealed that the H435Y variation was a de novo mutation since neither parents had the variation. Her parents' TH and TSH levels were within normal range.

Risk Factors of Hypothyroidism after Hemithyroidectomy for Benign Thyroid Disease in Korea (양성 갑상선 질환으로 편측 갑상선 절제술을 시행한 후 발생되는 갑상선 기능 저하증에 대한 위험인자)

  • Lee, Seok-Jae;Kim, Kyung-Tae;Cho, Byung-Han;Lim, Jae-Yol;Kim, Young-Mo
    • Korean Journal of Head & Neck Oncology
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    • v.26 no.2
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    • pp.212-215
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    • 2010
  • Objectives:There are various reports for incidence and risk factors of hypothyroidism after hemithyroidectomy for benign thyroid disease. The reported incidence rate varies from 5.0 to 41.9%. Moreover, there are few reports about this in Korea. So, our objective is to identify the incidence and possible factors contributing to hypothyroidism after hemithyroidectomy in Korea. Subjectives and Methods:We reviewed medical records of patients who underwent hemithyroidectomy between 1999 and 2007 years. We enrolled 80 patients. The incidence of postoperative hypothyroidism was based on thyrotropin values and clinical symptoms. And all patients were evaluated for age, gender, serum thyrotropin(TSH) levels, serum free T4, weight of resected thyroid tissue and associated thyroiditis. Results:Nine of 80 patients(11.3%) became biochemically hypothyroid postoperatively. Six of 9 hypothyroid patients were diagnosed within 2 months of operation. The mean preoperative TSH level was $2.12{\pm}0.96mIU/L$ in hypothyroid and significantly different from $1.33{\pm}0.77mIU/L$ in euthyroid patients(p<0.05). There were no significant differences in age, gender, weight of resected thyroid tissue, preoperative free T4 and associated thyroiditis. Conclusion:A minority of patients became hypothyroid after hemithyroidectomy. Hypothyroidism following hemithyroidectomy occurred in patients with higher preoperative TSH levels.. The screening test for postoperative hypothyroidism should be performed from month to year after operation.

The involvement of protein kinase C in the inhibitory effect of methoxamine on the thyrotropin-induced release of thyroxine in mouse thyroid (Mouse 갑상선에서 thyrotropin에 의한 thyroxine 유리에 미치는 methoxamine의 억제효과에 대한 protein kinase C의 관련)

  • Kim, Se-gon;Kim, Jin-sang
    • Korean Journal of Veterinary Research
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    • v.38 no.3
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    • pp.508-517
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    • 1998
  • There is evidence that the sympathetic nervous system exerts a control on thyroid function via an adrenergic innervation of thyroid cells. Although it is clear that the inhibitory effects of catecholamines result from an activation of ${\alpha}_1$-adrenoceptors, the mechanisms involved in ${\alpha}_1$-stimulation are not fully understood. The effects of methoxamine and protein kinase C (PKC) activator on the release of thyroxine ($T_4$) from mouse thyroid were studied to clarify the role of PKC in the regulation of $T_4$ release in vitro. The glands were incubated in the medium, samples of the medium were assayed for $T_4$ by EIA kits. Methoxamine inhibited the TSH-stimulated $T_4$ release. This inhibition was reversed by prazosin, an ${\alpha}_1$-adrenergic antagonist. Futhermore, the inhibitory effect of methoxamine on the $T_4$ release stimulated by TSH was prevented by chloroethylclonidine, an ${\alpha}_{1b}$-adrenoceptor antagonist, but not by WB4101, an ${\alpha}_{1a}$-adrenoceptor antagonist. Also methoxamine inhibited the forskolin-, cAMP- or IBMX-stimulated $T_4$ release. These inhibition were reversed by PKC inhibitors, such as staurosporine and $H_7$. PMA, a PKC activator, completely inhibited the TSH-stimulated $T_4$ release, and its inhibition was reversed by staurosporine and $H_7$, but not by chelerythrine. R59022 (a diacylglycerol kinase inhibitor), like methoxamine, also inhibited the TSH-stimulated $T_4$ release, and its inhibition was also reversed by staurosporine. The present study suggests that methoxamine inhibition of $T_4$ release from mouse thyroid can be induced by activation of the ${\alpha}_{1b}$-adrenoceptors and that it is mediated through the ${\alpha}_1$-adrenoceptor-stimulated PKC formation.

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Nonautoimmune congenital hyperthyroidism due to p.Asp633Glu mutation in the TSHR gene

  • Cho, Won Kyoung;Ahn, Moon-Bae;Jang, Woori;Chae, Hyojin;Kim, Myungshin;Suh, Byung-Kyu
    • Annals of Pediatric Endocrinology and Metabolism
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    • v.23 no.4
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    • pp.235-239
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    • 2018
  • Most cases of congenital hyperthyroidism are autoimmune forms caused by maternal thyroid stimulating antibodies. Nonautoimmune forms of congenital hyperthyroidism caused by activating mutations of the thyrotropin receptor (TSHR) gene are rare. A woman gave birth to a boy during an emergency cesarean section at 33 weeks of gestation due to fetal tachycardia. On the 24th day of life, thyroid function tests were performed due to persistent tachycardia, and hyperthyroidism was confirmed. Auto-antibodies to TSHR, thyroid peroxidase, and thyroglobulin were not found. The patient was treated with propylthiouracil and propranolol, but hyperthyroidism was not well controlled. At 3 months of age, the patient had craniosynostosis and hydrocephalus, and underwent a ventriculoperitoneal shunt operation. Direct sequencing of the TSHR gene showed a heterozygous mutation of c.1899C>A (p.Asp633Glu) in exon 10. No mutations were discovered in any of the parents in a familial genetic study. We have reported a case of sporadic nonautoimmune congenital hyperthyroidism, by a missense mutation of the TSHR gene, for the first time in South Korea.

Thyrotropin-Binding Inhibiting Immunoglobulin(TBII) in Patients with Autoimmune Thyroid Diseases (자가면역성 갑상선질환에서의 혈청 Thyrotropin-Binding Inhibiting Immunoglobulin치)

  • Jang, Dae-Sung;Ahn, Byeong-Cheol;Sohn, Sang-Kyun;Lee, Jae-Tae;Lee, Kyu-Bo
    • The Korean Journal of Nuclear Medicine
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    • v.30 no.1
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    • pp.65-76
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    • 1996
  • In order to evaluate the significance of thyrotropin-binding inhibiting immunoglobulin (TBII) in the patients with autoimmune thyroid diseases, the authors investigated 402 cases of Graves' disease and 230 cases of Hashimoto's thyroiditis comparing 30 cases of normal healthy adult at Kyung Pook University Hospital from February 1993 to August 1994. The TBII was tested by radioimmunoassay and assesed on the dynamic change with the disease course, thyroid functional parameters, and other thyroid autoantibodies : antithyroglobulin antibody (ATAb) and antimicrosomal antibody (AMAb) including thyroglobulin. The serum level of TBII was $40.82{\pm}21.651(mean{\pm}SD)%$ in hyperthyroid Graves' disease and $8.89{\pm}14.522%$ in Hashimoto's thyroiditis and both were significant different from normal control of which was $3.21{\pm}2.571%$. The frequency of abnormally increased TBII level was 92.2% in hyperthyroid Graves' disease, 46.7% in euthyroid Graves' disease or remission state of hyperthyroidism, and 23.9% in Hashimoto's thyroiditis. The serum levels of increased TBII in Graves' disease were positively correlated with RAIU, serum T3, T4, and FT4, but negatively correlated with serum TSH(each P<0.001). The TBII in Graves' disease had significant positive correlation with serum thyroglobulin and AMAb, but no significant correlation with ATAb. In the Hashimoto's thyroiditis, the serum levels of TBII were positively correlated with RAIU, serum T3, TSH and AMAb, but not significantly correlated with serum T4, FT4, thyroglobulin and ATAb. Therefore serum level of TBII seemed to be a useful mean of assessing the degree of hyperthyroidism in Graves' disease and correlated well with thyroidal stimulation. The serum level of TBII in Hashimoto's thyroiditis is meaningful for the degree of both functional abnormality reflecting either hyperfunction or hypofunction and the immune logic abnormality.

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The Endocrine Regulation of Chicken Growth

  • Kim, Jin-Wook
    • Asian-Australasian Journal of Animal Sciences
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    • v.23 no.12
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    • pp.1668-1676
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    • 2010
  • The somatotropic axis plays a key role in proliferation and differentiation of avian organs during both pre- and posthatching periods. This review discusses the complexity of regulation of the endocrine system for chicken development and growth by growth hormone (GH), insulin-like growth factor (IGF), and IGF binding protein (IGFBP). In addition, the thyrotropic axis, including thyrotropin-releasing hormone (TRH) and thyroid hormones ($T_4$ and $T_3$), is also involved in the GH-secreting pattern. In mammals, IGFI and -II are always sequestered in a 150 kDa non-covalent ternary complex. This complex consists of one molecule each of IGF-I or IGF-II, IGFBP-3 or IGFBP-5 and an acid labile subunit (ALS). Chick ALS is identified in different strains for the first time, and further investigation of the expression of ALS on developmental stage and ALS effect on IGF bioavailability may be addressed in the future.

Treatment of Differentiated Thyroid Cancer (분화된 갑상선암의 치료)

  • Shong, Young-Kee
    • 대한핵의학회:학술대회논문집
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    • 2002.05b
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    • pp.77-95
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    • 2002
  • During the last several decades, prognosis of differentiated thvroid cancers improved markedly, mainly due to refinement of surgical techniques and routine use of radioactive iodine. Total or neat-total thyroidectomy is to be performed as the first line of treatment. Routine remnant ablation just after surgery decreases recurrence and increases survival. After then patients are maintained on suppressive dose of thyroid hormone to keep endogenous TSH below normal. Regular follow-up of the patients with serum thyroglobulin measurement and iodine whole body scan after thyroid hormone withdrawal or under recombinant human thyrotropin stimulation select high risk patients with recurrence or metastatic disease and treatment with therapeutic dose of radioactive iodine prolongs survival and sometimes leads cure. Currently recommended diagnostic and therapeutic strategies, present controversies and future directions are discussed.

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Diagnosis and Management of Subclinical Hypothyroidism: The 2023 Clinical Practice Guideline, Korean Thyroid Association (무증상 갑상선기능저하증의 진단과 치료: 2023 대한갑상선학회 진료 권고안)

  • Hyun-Kyung Chung
    • The Korean Journal of Medicine
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    • v.99 no.3
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    • pp.127-133
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    • 2024
  • Subclinical hypothyroidism (SCH) is characterized by elevated serum thyroid-stimulating hormone (TSH) levels and normal free thyroxine levels. The Korean Thyroid Association recently issued guidelines for managing SCH. Based on the Korea National Health and Nutrition Examination Survey (2013-2015), a serum TSH level of 6.8 mIU/L is the reference value for SCH. SCH is classified as mild (TSH 6.8-10.0 mIU/L) or severe (TSH > 10.0 mIU/L), and patients are categorized as adult (age < 70 years) or elderly (age ≥ 70 years). Levothyroxine treatment (LT4-Tx) is not recommended for mild or even severe SCH in elderly patients. Immediate LT4-Tx can be given to adults in most cases, but not to women who are pregnant, patients with progressive disease, or patients with underlying coronary artery disease, heart failure, or dyslipidemia.