CHARACTERISTICS OF 3,5,3'-TRIIODOTHYRONINE SULFATE METABOLISM IN EUTHYROID MAN

被引:31
作者
LOPRESTI, JS
MIZUNO, L
NIMALYSURIA, A
ANDERSON, KP
SPENCER, CA
NICOLOFF, JT
机构
[1] University of Southern California, School of Medicine, Department of Medicine, Los Angeles, CA, 90033
关键词
D O I
10.1210/jcem-73-4-703
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The sulfated conjugate of T3 (T3S) has long been recognized as a normal product of peripheral thyroid hormone metabolism. In order to better understand the role that T3S may play in this process, the metabolic handling of T3S was studied in euthyroid man. After the iv administration of [I-125]T3S in man, T3S was found to be rapidly metabolized with estimated mean MCR of 135 +/- 15 liters/day (L/D) after a bolus injection and 127 +/- 8 L/D employing a constant infusion. The primary route of T3S disposal was by deiodination with an efficiency of 92%. The administration of propylthiouracil (PTU, 300 mg every 6 h x 5 days) and iopanoic acid (IA, 500 mg every day x 5 days), both inhibitors of deiodination, decreased clearance compared to control (87 +/- 9 L/D, P < 0.01 and 46 +/- 10 L/D, P < 0.002, respectively). A 3-day fast also reduced the clearance of T3S (56 +/- 10 L/D, P < 0.002). All three maneuvers decreased the total urinary deiodination fraction of tracer T3S (control 91 +/- 2%, PTU 70 +/- 9%, P < 0.04, IA 26 +/- 3%, P < 0.0001, and fasting 58 +/- 6%, P < 0.01). A strong correlation between T3S clearance and deiodination was noted for fasting and IA only (r = 0.78, P < 0.003). However, no relationship between clearance and deiodination was noted with PTU administration presumably as a result of a compensatory increase in biliary losses of T3S. The urinary thyronine excretion pattern demonstrated the presence of small amounts of labeled T3,3,3'-T2, and 3,3'-T2S with the major metabolite being T3S itself. TSH levels were not influenced by the infusion of stable T3S designed to achieve a serum value greater than 50 ng/dL. No absorption of intact T3S was detected after its oral ingestion. In conclusion, T3S is rapidly cleared from the serum, primarily by deiodination, may undergo nondeiodinative disposal when hepatic deiodination is inhibited by PTU but not with IA or fasting, and has no intrinsic biological activity. Thus, T3S may serve as a metabolite of T3 for its rapid deiodinative disposal. Although the precise role T3S plays in human thyroid hormone metabolism has not been defined, the metabolic characteristics of T3S appear similar to that of an unidentified alternate T4 metabolite formed in low T3 states of fasting and nonthyroidal illness.
引用
收藏
页码:703 / 709
页数:7
相关论文
共 24 条
[1]   FORMATION OF DIIODOTYROSINE FROM THYROXINE - ETHER-LINK CLEAVAGE, AN ALTERNATE PATHWAY OF THYROXINE METABOLISM [J].
BALSAM, A ;
SEXTON, F ;
BORGES, M ;
INGBAR, SH .
JOURNAL OF CLINICAL INVESTIGATION, 1983, 72 (04) :1234-1245
[2]   EFFECT OF T3 AND REVERSE T3 ADMINISTRATION ON MUSCLE PROTEIN CATABOLISM DURING FASTING AS MEASURED BY 3-METHYLHISTIDINE EXCRETION [J].
BURMAN, KD ;
WARTOFSKY, L ;
DINTERMAN, RE ;
KESLER, P ;
WANNEMACHER, RW .
METABOLISM-CLINICAL AND EXPERIMENTAL, 1979, 28 (08) :805-813
[3]   RECIPROCAL CHANGES IN SERUM CONCENTRATIONS OF 3,3',5'-TRIIODOTHYRONINE (REVERSE T3) AND 3,3'5-TRIIODOTHYRONINE (T3) IN SYSTEMIC ILLNESSES [J].
CHOPRA, IJ ;
CHOPRA, U ;
SMITH, SR ;
REZA, M ;
SOLOMON, DH .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 1975, 41 (06) :1043-1049
[4]   THE DEIODINATION OF THE IODOTHYRONINES AND OF THEIR DERIVATIVES IN MAN [J].
ENGLER, D ;
BURGER, AG .
ENDOCRINE REVIEWS, 1984, 5 (02) :151-184
[5]   THE MONODEIODINATION OF TRIIODOTHYRONINE AND REVERSE TRIIODOTHYRONINE IN MAN - A QUANTITATIVE-EVALUATION OF THE PATHWAY BY THE USE OF TURNOVER RATE TECHNIQUES [J].
ENGLER, D ;
MERKELBACH, U ;
STEIGER, G ;
BURGER, AG .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 1984, 58 (01) :49-61
[6]   KINETIC-STUDIES OF THYROXINE, 3,5,3'-TRIIODOTHYRONINE, 3,3',5'-TRIIODOTHYRONINE, 3',5'-DIIODOTHYRONINE, 3,3'-DIIODOTHYRONINE, AND 3'-MONOIODOTHYRONINE IN PATIENTS WITH LIVER-CIRRHOSIS [J].
FABER, J ;
THOMSEN, HF ;
LUMHOLTZ, IB ;
KIRKEGAARD, C ;
SIERSBAEKNIELSEN, K ;
FRIIS, T .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 1981, 53 (05) :978-984
[7]   INHIBITION OF HEPATIC BINDING OF THYROXINE BY CHOLECYSTOGRAPHIC AGENTS [J].
FELICETTA, JV ;
GREEN, WL ;
NELP, WB .
JOURNAL OF CLINICAL INVESTIGATION, 1980, 65 (05) :1032-1040
[8]  
FLOCK EV, 1961, ENDOCRINOLOGY, V61, P626
[9]   THE ROLE OF THYROID-HORMONE DEIODINATION IN THE REGULATION OF HYPOTHALAMO-PITUITARY FUNCTION [J].
KAPLAN, MM .
NEUROENDOCRINOLOGY, 1984, 38 (03) :254-260
[10]   PERIPHERAL SERUM THYROXINE, TRIIODOTHYRONINE AND REVERSE TRIIODOTHYRONINE KINETICS IN THE LOW THYROXINE STATE OF ACUTE NONTHYROIDAL ILLNESSES - A NON-COMPARTMENTAL ANALYSIS [J].
KAPTEIN, EM ;
ROBINSON, WJ ;
GRIEB, DA ;
NICOLOFF, JT .
JOURNAL OF CLINICAL INVESTIGATION, 1982, 69 (03) :526-535