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Biomedical subjects

R R Cavalieri

Publications and source records attributed to R R Cavalieri.

At least 55 records · Page 3Linked to original sources

Thyroxine distribution and metabolism in familial dysalbuminemic hyperthyroxinemia.

We studied two families with familial dysalbuminemic hyperthyroxinemia (FDH), a recently described entity characterized by marked elevation of serum T4 due to increased binding of T4 to albumin. The seven affected subjects had elevated serum total T4 levels (range, 15.3-25.2 micrograms/dl; normal, 4.5-11.0 micrograms/dl), but normal serum free T4 levels, as measured by equilibrium dialysis. Their serum T3 levels ranged from 1.40-2.46 ng/ml (normal, 0.9-2.0 ng/ml). The proportion of T4 associated with serum albumin was increased approximately 4-fold in the affected subjects, as shown both by reverse flow paper electrophoresis and immunoprecipitation of albumin-bound T4 with antihuman serum albumin. In vivo T4 kinetic studies were performed in the two index subjects to assess the effects of the increased binding of T4 to albumin on the in vivo transport, distribution, and disposal of T4. Compared to values in normal subjects, the MCR of T4 was decreased by about 50%, and its total body (extrathyroidal) pool size was increased by approximately 50%; the T4 production rate was normal. The extracellular T4 pool size was increased by about 100% in the FDH subjects, but the rapidly exchangeable intracellular T4 pool size was normal. The unidirectional T4 clearance rate from plasma into the rapidly exchangeable cellular compartment was reduced by approximately 50%, but the absolute rate of T4 flux from plasma into the cellular compartment was normal. Thus, the in vivo kinetic data indicate that the increased plasma binding of T4 in FDH alters the distribution of T4 in favor of the extracellular compartment, retards the fractional rate of transfer of T4 into cells, and slows the metabolic clearance of T4. However, the absolute rate of T4 flux into the rapidly exchangeable cellular compartment, the intracellular T4 pool size, and the T4 disposal rate are all normal in FDH, consistent with the normal serum concentrations of free T4 and the eumetabolic state of these individuals.

Adult↗

Sequential deiodination of thyroxine to 3,3'-diiodothyronine via 3,5,3'-triiodothyronine and 3,3',5'-triiodothyronine in rat liver homogenate. The effects of fasting versus glucose feeding.

The characteristics of thyroxine (T4) deiodination to 3,5,3'-triiodothyronine (T3) and 3,3',5'-triiodothyronine (rT3) and of each of the latter to 3,3'-diiodothyronine (3,3'T2) were examined in rat liver homogenate. Each of the four reactions was enzymatic in nature, demonstrating pH and temperature optima, and tissue and time dependence. All reactions were considerably augmented (greater than 10-fold) by the presence of a thiol agent. At pH 7.2 with 2 muM T4 as substrate, rT3 generation was 3.3 +/- 0.44 (S.E.) and T3 formation was 4.8 +/- 0.57 pmol/min/100 mg of homogenate protein. Fasting for 72 h resulted in a significant inhibition of T4 deiodination, compared to that in the glucose-fed animals, in a 2% homogenate preparation. Enzyme activity for T4 to T3 was reduced by 54% (p less than 0.05) in the homogenate from the fasted rats. Fasting lowered the enzyme activity of T4 to rT3 by 56% (p less than 0.05). Although the monodeiodination of T3 to 3,3'-T2 was also significantly depressed (p less than 0.01) by fasting, rT3 deiodination to 3,3'-T2 was not. The in vitro additon of 5 mM dithioerythritol did not reverse the effect of fasting on any reaction. These results demonstrate that a 72-h fast significantly impairs the sequential deiodination of T4 in liver homogenate. The effect of fasting appears to be mediated mainly through a reduction in enzyme concentration rather than co-factor availability.

Animals↗

The diagnostic dilemma of isolated hyperthyroxinemia in acute illness.

Eighteen patients with a variety of illnesses but no history of thyroid disease were shown to have elevated serum total and free thyroxine (T4) concentrations but low serum total triiodothyronine (T3) levels. Thyroid function tests were requested initially to excluded the possibility of hyperthyroidism in a setting of hypermetabolism. Clinical and laboratory follow-up investigations demonstrated that 15 patients were euthyroid and that hormonal alterations were transient features of the intercurrent illnesses. Three patients did, in fact, have hyperthyroidism. Retrospective analysis of diagnostic data demonstrated that of the initial thyroid function screening tests, serum total T3 concentration, the T3/TF4 ratio, and the indirectly measured free T3 (FT3) index were the most useful parameters in excluding hyperthyroidism. The FT3 index was the most helpful, being normal or low in all the euthyroid and high in each of the hyperthyroid patients.

Acute Disease↗

Detection of a thyroxine-binding protein physicochemically similar to serum thyroxine-binding globulin in normal human urine.

Urine samples from 10 normal adult males were analyzed for T4-binding globulin (TBG) employing a sensitive and specific RIA for serum TBG. Urine TBG was detected at a concentration of 1.74 +/- 0.87 microgram/100 ml (mean +/- SD). The excretion rate was 13.2 +/- 6.5 microgram/g creatinine. There was no correlation between the daily excretion rate of TBG and the total urinary protein (r = 0.52). Analyses of this T4-binding protein by gel filtration and on both reverse flow paper and gel electrophoresis demonstrated similar characteristics to those of serum TBG and purified TBG. The maximum T4-binding capacity of urine TBG, determined by reverse flow paper electrophoresis and equilibrium dialysis, was similar to that of serum TBG. The association constant for T4 of urinary TBG (0.46 +/- 0.20 X 10(10) M-1), determined by equilibrium dialysis, was significantly less (P less than 0.01) than that of serum TBG at 1.43 +/- 0.23 X 10(10) M-1). The Scatchard analysis of the urinary data demonstrated two T4-binding sites, one of high affinity consistent with TBG and one of low affinity consistent with albumin. It is concluded that the TBG present in urine has the major physical and biochemical features of the intact molecule, but that minor conformational and/or charge alterations occurred during renal excretion. Interpretation of data on thyroid hormones in normal urine should take the presence of TBG into consideration.

Adult↗

3,3'-Diiodothyronine production, a major pathway of peripheral iodothyronine metabolism in man.

3,3'-Diiodothyronine (3,3'-T(2)) has been detected in human serum and in thyroglobulin. However, no quantitative assessment of its clearance rate (CR), production rate (PR), or of the importance of extrathyroidal sources of 3,3'-T(2) relative to direct thyroidal secretion is yet available. This study examines these parameters in seven euthyroid subjects, and in eight athyreotic subjects (H) eumetabolic due to thyroxine therapy (HT(4)) (n = 5) or triiodothyronine replacement (HT(3)) (n = 3). A highly specific radioimmunoassay for the measurement of 3,3'-T(2) in whole serum was developed. Serum 3,3'-T(2) concentrations were (mean +/- SD) 6.0+/-1.0 ng/100 ml in 13 normal subjects, 9.0+/-4.6 ng/100 ml in 25 hyperthyroid patients, and 2.7+/-1.1 ng/100 ml in 17 hypothyroid patients. The values in each of the latter two groups were significantly different from normal. 3,3'-T(2) was detected regularly in normal concentrations in 11 hypothyroid patients eumetabolic by treatment with synthetic T(4), in 10 eumetabolic patients suffering from nonthyroidal systemic illness, and in 2 subjects with elevated serum T(4)-binding globulin. The 3,3'-T(2) CR was assessed from data acquired from the (125)I-3,3'-T(2) constant infusion technique. The 3,3'-T(2) PR was calculated from CR and serum concentration of 3,3'-T(2) determined by radio-immunoassay. In the HT(4) subjects the 3,3'-T(2) CR averaged 840+/-377 liters/day and 3,3'-T(2) PR 33.9+/-12.5 mug/day. These results were not significantly different from those in the control group: 3,3'-T(2) CR 628+/-218 liters/day and 3,3'-T(2) PR 39.8+/-19.8 mug/day (all corrected to 70 kg body wt). In addition to 3,3'-T(2) PR, T(3), and reverse triiodothyronine (rT(3)) PR were determined in three of the HT(4) subjects. In each case studied, the 3,3'-T(2) PR was close to the combined triiodothyronine (T(3) + rT(3)) PR. The mean molar ratio of T(2) PR/(T(3) + rT(3)) PR was 1.08+/-0.10. The results obtained in the HT(4) subjects indicate that the production of 3,3'-T(2) is a major route of T(4) metabolism. The combined studies of 3,3'-T(2), T(3) and rT(3) PR in the HT(4) subjects indicate that both T(3) and rT(3) are major precursors of 3,3'-T(2). In the HT(3) subjects, the conversion of T(3) to 3,3'-T(2), determined as the molar ratio of 3,3'-T(2) PR to T(3) PR, ranged from 0.36 to 0.92, providing further evidence that T(3) is a precursor of 3,3'-T(2). From the close agreement between the mean values for 3,3'-T(2) PR in the euthyroid and HT(4) group it is concluded that most, if not all of the 3,3'-T(2) produced in normal humans is derived by extrathyroidal conversion from T(3) and rT(3).

Humans↗