To evaluate the anabolic effects of hyperinsulinemia and hyperaminoacidemia on amino acid (and protein) metabolism in type 1 (insulin-dependent) diabetes mellitus (IDDM), we studied leucine and phenylalanine kinetics in nine IDDM and seven control subjects, both at basal euglycemic conditions and during a euglycemic hyperinsulinemic clamp (approximately 60-80 microU/ml of plasma free insulin), combined with an intravenous infusion of amino acids (AA), which doubled plasma concentrations of most AA. In the basal state, euglycemia was maintained in IDDM subjects at the expense of a peripheral free insulin level (16 +/- 2 microU/ml) greater (P less than 0.05) than controls (9 +/- 1 microU/ml). Despite that, leucine rate of appearance (Ra), alp...
Deficiency of insulin results in a net loss of lean body mass and wasting of muscle. The...
To elucidate the mechanism of insulin's anticatabolic effect in humans, protein dynamics were e...
Free fatty acids are known to inhibit carbohydrate disposal and oxidation. This action may play an i...
To determine whether a resistance to insulin in type 1, insulin-dependent diabetes mellitus (IDDM) i...
The effects of physiologic hyperinsulinemia and hyperaminoacidemia, alone or in combination, on leuc...
Although amino acid mixtures enriched in branched-chain amino acids (BCAA) and deficient in aromatic...
It has long been recognized that diabetes mellitus is characterized by alterations in amino acid met...
Improvement of glycemic status by insulin is associated with profound changes in amino acid metaboli...
To determine the effects of insulin on dietary and endogenous leucine metabolism, five normal subjec...
To determine the effects of physiological and pharmacological insulin concentrations on leucine-carb...
Suppression of tissue proteolysis is an important mechanism of postprandial protein anabolism, and i...
Different amino acids (AAs) may exert distinct effects on postprandial glucose and insulin concentra...
To determine whether hyperaminoacidaemia may modify insulin-mediated glucose disposal, normal subjec...
Different amino acids (AAs) may exert distinct effects on postprandial glucose and insulin concentra...
To investigate the mechanism(s) of insulin-induced suppression of plasma amino acid concentration an...
Deficiency of insulin results in a net loss of lean body mass and wasting of muscle. The...
To elucidate the mechanism of insulin's anticatabolic effect in humans, protein dynamics were e...
Free fatty acids are known to inhibit carbohydrate disposal and oxidation. This action may play an i...
To determine whether a resistance to insulin in type 1, insulin-dependent diabetes mellitus (IDDM) i...
The effects of physiologic hyperinsulinemia and hyperaminoacidemia, alone or in combination, on leuc...
Although amino acid mixtures enriched in branched-chain amino acids (BCAA) and deficient in aromatic...
It has long been recognized that diabetes mellitus is characterized by alterations in amino acid met...
Improvement of glycemic status by insulin is associated with profound changes in amino acid metaboli...
To determine the effects of insulin on dietary and endogenous leucine metabolism, five normal subjec...
To determine the effects of physiological and pharmacological insulin concentrations on leucine-carb...
Suppression of tissue proteolysis is an important mechanism of postprandial protein anabolism, and i...
Different amino acids (AAs) may exert distinct effects on postprandial glucose and insulin concentra...
To determine whether hyperaminoacidaemia may modify insulin-mediated glucose disposal, normal subjec...
Different amino acids (AAs) may exert distinct effects on postprandial glucose and insulin concentra...
To investigate the mechanism(s) of insulin-induced suppression of plasma amino acid concentration an...
Deficiency of insulin results in a net loss of lean body mass and wasting of muscle. The...
To elucidate the mechanism of insulin's anticatabolic effect in humans, protein dynamics were e...
Free fatty acids are known to inhibit carbohydrate disposal and oxidation. This action may play an i...