A bartender fixes a curious drink.
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Biomedical subjects
Publications and source records attributed to W P Muldowney.
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Milk-alkali syndrome is characterized by progressive hypercalcemia, systemic alkalosis, and renal insufficiency. After calcium carbonate is ingested with diary products, hypercalcemia and alkalosis may develop in susceptible persons, particularly those with underlying renal insufficiency. We describe a young woman who neither drank milk nor had peptic ulcer disease, yet who ingested enough calcium carbonate to require admission to an intensive care unit for acute renal failure. Chronically bulimic, she was taking Rolaids (Warner-Lambert Co, Morris Plains, NJ), which contained calcium carbonate, and was eating yogurt daily to prevent osteoporosis. We discuss the characteristics and complex metabolic interactions of the milk-alkali syndrome, a critical but generally reversible electrolyte disorder. Early recognition of coincident hypercalcemia and alkalosis and prompt cessation of calcium carbonate ingestion are essential for successful recovery. Finally, we suggest that nephrologists should discourage patients with renal insufficiency and chronic vomiting from consuming calcium-containing antacids and excessive dietary calcium.
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Experimental nephrotic syndrome results in sodium retention, reflecting, at least in part, an intrinsic defect in renal sodium handling in the distal nephron. We studied the relationships among plasma atrial natriuretic peptide (ANP) concentration, sodium excretion (UNaV), and urinary cyclic GMP excretion (UcGMPV) in vivo, and the responsiveness of isolated glomeruli and inner medullary collecting duct (IMCD) cells to ANP in vitro, in rats with adriamycin nephrosis (6-7 mg/kg body weight, intravenously). 3-5 wk after injection, rats were proteinuric and had a blunted natriuretic response to intravenous infusion of isotonic saline, 2% body weight given over 5 min. 30 min after onset of the infusion, plasma ANP concentrations were elevated in normals and were even higher in nephrotics. Despite this, nephrotic animals had a reduced rate of UcGMPV after the saline infusion, and accumulation of cGMP by isolated glomeruli and IMCD cells from nephrotic rats after incubation with ANP was significantly reduced compared to normals. This difference was not related to differences in binding of 125I-ANP to IMCD cells, but was abolished when cGMP accumulation was measured in the presence of 10(-3) M isobutylmethylxanthine or zaprinast (M&B 22,948), two different inhibitors of cyclic nucleotide phosphodiesterases (PDEs). Infusion of zaprinast (10 micrograms/min) into one renal artery of nephrotic rats normalized both the natriuretic response to volume expansion and the increase in UcGMPV from the infused, but not the contralateral, kidney. These results show that, in adriamycin nephrosis, blunted volume expansion natriuresis is associated with renal resistance to ANP, demonstrated both in vivo and in target tissues in vitro. The resistance does not appear related to a defect in binding of the peptide, but is blocked by PDE inhibitors, suggesting that enhanced cGMP-PDE activity may account for resistance to the natriuretic actions of ANP observed in vivo. This defect may represent the intrinsic sodium transport abnormality linked to sodium retention in nephrotic syndrome.
Moderate dietary Na restriction (80 mmol/d for 7 days) during constant Ca intake can reduce high urinary Ca excretion to normal levels in idiopathic hypercalciuria (IH). A similar protocol was used to test its effect in primary hyperparathyroidism (PHPT) and also in hypoparathyroid subjects (HOPT) during treatment with dihydrotachysterol (DHT). Nine subjects with PHPT, 10 with HOPT, and one with pseudo-HOPT were evaluated after Na-restricted (80 mmol/d) and Na-supplemented (200 mmol/d) diets for 7 days each with dietary Ca constant. Na restriction resulted in a decrease in mean urinary 24-hour Ca excretion in PHPT subjects (10.6 v 7.6 mmol/d [424 v 304 mg], P less than 0.0001) and in one pseudo-HOPT subject, similar to the pattern seen previously in IH subjects. In contrast, Na restriction was not accompanied by significant change in Ca excretion in HOPT. There was no change in serum immunoreactive PTH (iPTH) or 1,25(OH)2 vitamin D levels in either group when Na intake was altered. Thus, the presence of parathyroid hormone (PTH) is necessary for sodium-related alterations in urinary Ca to occur. The effect of PTH appears to be "permissive" rather than "active." Dietary Na restriction may have a role in the management of hypercalciuria in mild PHPT cases when parathyroidectomy is contraindicated.