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Biomedical subjects

N D Adams

Publications and source records attributed to N D Adams.

26 records · Page 2Linked to original sources

Is there a disorder of phosphate metabolism in idiopathic hypercalciuria?

Hypophosphatemia either as a consequence of secondary hyperparathyroidism or as a consequence of a primary defect in phosphate metabolism appears to be a well established abnormality among subsets of patients with idiopathic hypercalciuria and nephrolithiasis. The detailed biochemical events that lead to hypophosphatemia in those patients who exhibit a primary abnormality of phosphate metabolism remain to be clarified.

Calcinosis↗

The calciuria of increased fixed acid production in humans: evidence against a role for parathyroid hormone and 1,25(OH)2-vitamin D.

We measured mineral and acid balances, serum iPTH, urinary cAMP/creatinine, and plasma concentrations of 25OHD and 1,25(OH)2D in 7 healthy adults during control conditions and during increased fixed acid production achieved either by the administration of NH4Cl (N = 3) or by increased dietary protein intake (N = 4). When acid production was increased, the subjects were in positive acid balance and negative Ca balance because of increased urinary Ca excretion. Serum iPTH fell slightly but urinary cAMP and the plasma levels of vitamin D metabolites did not change. W conclude that the accelerated skeletal and urinary losses of Ca that occur when fixed acid production is increased are not contributed to nor compensated for by the parathyroid-vitamin D endocrine systems.

Acids↗

Ethanol induced secretion of calcitonin in chronic renal disease.

Whisky (25-50 ml) increased plasma levels of immunoreactive calcitonin (iCT) in seventeen of nineteen patients with chronic renal failure. The effect was greater in patients with high levels of iCT than in those with normal levels. Changes in plasma iCT were not related to changes in calcium, phosphate or immunoreactive gastrin, but were inhibited by the prior administration of propranolol.

Calcitonin↗

The interrelationships among prolactin, 1,25-dihydroxyvitamin D, and parathyroid hormone in humans.

Serum PRL, parathyroid hormone (PTH), and plasma 1,25-dihydroxyvitamin D [1,25(OH)2D]concentrations were measured in 6 women and 2 men with hyperprolactinemia, 6 normal men and 7 normal women, 4 men and 4 women with primary hyperparathyroidism, and 16 men and 4 women with Ca nephrolithiasis. Plasma 1,25(OH)2D and serum parathyroid hormone (PTH) concentrations were normal in the women and men with hyperprolactinemia. In patients with primary hyperparathyroidism and elevated serum PTH, plasma 1,25(OH)2D concentrations were elevated but serum PRL levels were normal. Likewise, serum PRL levels were normal in patients with Ca nephrolithiasis who had significantly elevated plasma, 1,25(OH)2D concentrations and normal serum PTH concentrations. Thus, hyperprolactinemia due to pituitary adenoma or idiopathic hypersecretion is not accompanied but elevated plasma concentrations of 1,25(OH)2D.

Adenoma↗

The effects of dihydrotachysterol therapy on the measurement of plasma 1,25-(OH)2-vitamin D in humans.

Anephric patients have undetectable plasma concentrations of 1,25-(OH)2-D, but when anephric patients are treated with DHT2 (Hytakerol), their plasma contains a substance that is co-purified with and displaces authentic 3H-1,25(OH)2-D3 from its intestinal cytoplasmic receptor. The concentration of this substance in the plasma of anephric patients taking DHT2 is proportional to the administered daily dose of DHT2 per kilogram body weight. When DHT2 therapy is discontinued, the substance disappears from plasma with an average t 1/2 of about 8 days.

Dihydrotachysterol↗

Physiological and pharmacological aspects of 24,25-dihydroxycholecalciferol in man.

The present study describes the response to small oral doses (1--10 microgram/day) of 24,25-DHCC in man. Contrary to expectation, 24,25-DHCC was as potent as 1,25-DHCC in increasing intestinal absorption of calcium both in normal persons and in patients with a variety of disorders of calcium metabolism. Despite this increase in intestinal absorption, plasma and urine calcium did not increase after 24,25-DHCC as they did after 1,25-DHCC. Metabolic balance studies showed calcium balances to increase by 1.6 to 11.5 mmoles/day in 5 of the 6 patients studied. 24,25-DHCC increased intestinal absorption of calcium equally well in anephric patients, suggesting that conversion of 24,25-DHCC to 1,24,25-trihydroxycholecalciferol by the kidney cannot be the sole mechanism by which 24,25-DHCC expresses biological activity, even though in vitamin D deficient rats nephrectomy does abolish the ability of large doses of 24,25-DHCC to increase calcium absorption. It is concluded that 24,25-DHCC may be a calcium-regulating hormone in man. In view of the effects demonstrated here and its relatively high concentration in plasma and slow turnover rate, 24,25-DHCC has the properties that might be ideal for a long-acting stimulator of bone mineralisation. Further work is needed to explain why 24,25-DHCC has effects in man which are not readily seen in other species.

Bone Development↗