• Title/Summary/Keyword: Triiodothyronine

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The Study of Iodine Metabolism IN VIVO Utilizing I-131 (방사선 동위원소 I-131을 이용한 요드의 IN VIVO 대사 연구)

  • Byun, Si-Myung
    • Applied Biological Chemistry
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    • v.19 no.2
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    • pp.70-74
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    • 1976
  • In order to study the mechanism of biosynthesis of thyroid hormones, radioactive iodine was injected into the rats and thyroid glands were removed. Iodine compounds hydrolyzed by pancreatin viokase were separated by paper chromatography and analyzed by radioautography. Radioautograms showed that the uptake of iodine starts immediately and forms diiodotyrosine through monoiodotyrosine. Evidence supported the possibility that diiodotyrosine is a precursor of thyrosine and triiodothyronine is a degradation product of thyroxine. The rat administered propylthiouracil showed inorganic iodine concentration activity, while the binding activity was prevented.

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Development of Homogeneous Enzyme Immunoassay for Serum 3,5,3'-Triiodothyronine Determination (혈청 3,5,3'-Triiodothyronine 측정을 위한 효소-면역 분석의 개발 연구)

  • 이희주
    • YAKHAK HOEJI
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    • v.27 no.2
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    • pp.117-124
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    • 1983
  • For development of $EMIT-T_{3}$ assay, the conjugation of 3, 5, 3'-triiodothyroformic acid NHS ester to G6PDH was attempted in various reaction conditions. Up to now, the best conjugation condition was the ratio of $T_{3}$-NHS:G6PDH=100 in 25% carbitol-Tris buffer at pH 9, $0^{\circ}C$ during overnight. The obtained $T_{3}$-G6PDH conjugates usually had 20% residual enzyme activity which was inhibited by 40-70% with various $anti-T_{3}$ antibodies. Utilizing the conjugate I and an antibody (S2633G), a useful standard curve for $T_{3}$ assay was obtained in the range of 0 to 5ng/ml with 499 EMIT units of separation.

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EFFECT OF ENVIRONMENTAL TEMPERATURE AND FEED INTAKE ON PLASMA CONCENTRATION OF THYROID HORMONES IN DAIRY HEIFERS

  • Purwanto, B.P.;Fujita, M.;Nishibori, M.;Yamamoto, S.
    • Asian-Australasian Journal of Animal Sciences
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    • v.4 no.3
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    • pp.293-298
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    • 1991
  • A study was conducted to determine the effect of environmental temperature and level of food intake on plasma concentration of thyroid hormones. Three dairy heifers were used in an experiment which consisted of three levels of chamber temperature (10, 20 and $30^{\circ}C$) and three levels of food intake (100, 75 and 50% of recommended requirements). The analysis showed significant effects of environmental temperature on plasma triiodothyronine concentration, rectal temperature, respiration rate and heart rate but not on heat production. The range of plasma triiodothyronine was 2.51~1.79 ng/ml when the environmental temperature varied from 10 to $30^{\circ}C$. Effects of feed intake level were significant for heart rate and heal production. Heat production decreased from 25.9 to $20.0kJ/kg^{0.75}{\cdot}h$ when the TDN intake decreased from 66.3 to $35.1g/kg^{0.75}{\cdot}d$. There was no interactive effect of environmental temperature and feed intake level. Plasma triiodothyronine concentration decreased under high environmental temperature without any changes in heat production. The effects of environmental temperature and feed intake level on the physiological function of thyroid gland, as indicated by the relative circulating rate of thyroid hormones, were found to be clear.

Maternal Serum Concentrations of Total Triiodothyronine, Tetraiodothyronine and Cortisol in Different Status of Pregnancy During Late Pregnancy in Ettawah-Cross Does

  • Manalu, W.;Sumaryadi, M.Y.;Kusumorini, N.
    • Asian-Australasian Journal of Animal Sciences
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    • v.10 no.4
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    • pp.385-390
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    • 1997
  • Fifteen Ettawah-cross does were used to study maternal serum concentrations of total triiodothyronine ($T_3$), teraiodothyronine ($T_4$) and cortisol in different status of pregnancy (nonpregnant, aborted, single and twin-bearing does) during late pregnancy. Analysis of the data indicated that here was no significant changes in total $T_3$, $T_4$, and cortisol concentrations with the advance of pregnancy. Concentrations of $T_3$, $T_4$, and cortisol decreased by 38.9, 34.9, and 32.6%, and 12.0, 15.7 and 27.6%, and 41.6, 44.0, and 43.7% in the aborted, single and, twin-bearing, respectively, as compared to those nonpregnant does. These was no significant difference in concentrations of $T_3$ and cortisol between aborted, single and twin-bearing does, and in those of $T_4$ between aborted and single-bearing does. However, $T_4$ concentrations in twin-bearing were lower by 17.7 and 14.1% than those in aborted and single-bearing does, respectively. The decreased concentrations of thyroid hormones in pregnant does suggested that fetus could have increased iodine uptake from maternal circulation causing a decrease in the availability of this nutrient for synthesis of maternal thyroid hormones. The decreased concentrations of cortisol could have been associated with the increased metabolism of the hormone to regulate nutrients influx into the placenta of pregnant does.

Effects of Water Soluble Extract of Ganoderma lucidum Kale Juice and Sodium Dextrothyroxine on Hormone and Lipid Metabolism in Hypercholesterolemic Rats. 2. Concentrations of Triiodothyronine Thyroxine Blood Sugar and Lipid Composition in Serum (영지 케일 및 Sodium Dextrothyroxine 이 고콜레스테롤 혈증 흰쥐의 Hormone 및 지질대사에 미치는 영향 1. 혈청중 Triiodothyronine Thyroxine 혈당 농도 및 지질 성분)

  • 정승용;김성희;김한수;강진순;정효숙;김군자;김행자
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.19 no.5
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    • pp.381-386
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    • 1990
  • This study was investigated the effects of water soluble extract of Ganoderma lucidum kale juice and soidium dextrothyroxine on lipid components in serum of hypercholesterolmemic rats in vivo in order to prevent in cardiovascular disease. Total cholesterol concentrations in serum were significantly increased after feeding cholesterol diet group compared with control group and were significantly increased after feeding cholesterol diet group compared with control group and were lower in Ganoderma lucidum kale juice and sodium dextrothyrioxine diet groups than in control group. Ratio of high density lipoprotein cholesterol concentration to total cholesterol were significantly highest in sodium dextrothyroxine fed groups among diet groups and were higher in Ganodrma lucidum and kale juice fed group than in control group. Phospholipid concentrations in seurm were significantly lower in Ganoderma lucidum kale juice and sodium dextrothyroxine(1.25mg/kg diet) fed groups than in control group and triglyceride concentra-tions were lower in Ganderma lucidum sodium dextrothyroxine fed groups than in other groups. Triiodothyronine concentration in serum were lower in Ganoerma lucdum and kale juice fed groups than in the other groups while it was higher in sodium dextrothyroxine diet group than in other groups. Tetraiodothyronine concentrations is serum were remakably higher in sodium dextrothyroxine fed group than in other groups. Blood glucose concentration was lower in cholesterol diet group than in other groups but was higher in sodium dextrothyroxine diet group than in other groups.

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Regulation of Acetyl-CoA Carboxylase Gene Expression by Hormones and Nutrients

  • Kim, Youn-Jung;Yang, Jeong-Lye;Kwun, In-Sook;Kim, Yang-Ha
    • Preventive Nutrition and Food Science
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    • v.8 no.1
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    • pp.61-65
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    • 2003
  • This study was investigated to identify the regulatory mechanism of ACC gene expression by hormones and nutrition. The fragment of ACC promoter I (PI) -220 bp region was recombined to pGL3-Basic vector with luciferase as a reporter gene. The primary hepatocyte from the rat was used to investigate the regulation of ACC PI activity. ACC PI (-220 bp)/luciferase chimeric plasmid was transfected into primary rat hepatocyte by using lipofectin. ACC PI activity was shown by measuring luciferase activity. The addition of insulin, dexamethasone, and triiodothyronine to the culture medium increased the activity of ACC PI by 2.5-, 2.3- and 1.8-fold, respectively. In the presence of 1 $\mu$M dexamethasone, the effects of insulin was amplified about 1.2-fold showing the additional effects of dexamethasone. Moreover the activity of luciferase was increased by insulin, dexamethasone, and triiodothyronine treatment approximately 4-fold. These results indicated that insulin, dexamethasone and thyroid hormone coordinately regulate ACC gene expression via regulation of promoter I activity. On the -220 to +21 region of ACC PI, the addition of the glucose to the culture medium increased the activity of ACC PI. With 25 mM glucose, luciferase activity increased by 7-fold. On the other hand, on the -220 bp region, ACC PI activity was not changed by polyunsaturated fatty acids. Therefore, it can be postulated that there are response elements for insulin, triiodothyronine, dexamethasone, and glucose, but not PUFAs on the -220 bp region of ACC PI.