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Biomedical subjects

D G Sapir

Publications and source records attributed to D G Sapir.

15 recordsLinked to original sources

Modulation of plasma aldosterone by physiological changes in hydrogen ion concentration.

To assess the effect of extracellular hydrogen ion concentration (PH+) on aldosterone secretion, studies in which other known modulators could be controlled were performed on 13 patients undergoing hemodialysis. High (35 mM) or low (14-17 mM) dialysate bicarbonate concentrations were utilized on separate days to either decrease or increase PH+, while plasma potassium concentrations (PK) were held at constant levels and changes in plasma renin activity (PRA) were minimized by avoiding changes in body weight. Changes in PH+ were associated with concordant changes in plasma aldosterone concentration (Pa) in both high- and low-bicarbonate studies. When these changes in Pa in high- and low-bicarbonate studies were analyzed together as a function of corresponding changes in PH+, a significant correlation could be demonstrated (r = 0.659, P less than 0.001). There was no correlation between changes in Pa and changes in PK, plasma sodium, plasma adrenocorticotropic hormone (ACTH), or PRA. Using the same methods to control PH+ and other variables during hemodialysis, the effects of altered PH+ on ACTH-stimulated aldosterone and cortisol secretion were evaluated in studies on six patients who received incremental infusions of ACTH after pretreatment with dexamethasone. In these studies, there was no demonstrable effect of PH+ on Pa or plasma cortisol concentration. We conclude that physiological changes in PH+ have a weak modulating effect on basal aldosterone secretion that may not be evident in the presence of other acutely applied stimuli.

Adrenocorticotropic Hormone

Low-dose captopril in mild to moderate geriatric hypertension.

The safety and efficacy of captopril in geriatric patients with mild to moderate hypertension was examined in an eight-week multicenter study of 99 patients. Following a placebo period, patients were treated with captopril 25 mg twice daily. Patients who were uncontrolled after two weeks of active therapy were randomized to either captopril 25 mg plus hydrochlorothiazide 15 mg or captopril 50 mg twice daily. The average decrease in blood pressure at study completion was--16.9/11.9 mmHg. At the conclusion of the trial, 75.8% of patients responded to therapy. Captopril was well tolerated and believed to be a good therapeutic alternative for treating hypertension in the elderly population.

Black or African American

Renal function and lithium: a longitudinal study.

Forty lithium-treated manic-depressive patients underwent two renal function assessments 6 to 18 months apart to assess the course of renal function changes associated with lithium therapy. No change in glomerular filtration rate was noted. Although the average 24-hour urine volume increased significantly, large increases occurred in few patients. Most patients had no substantial urine volume change, and a few had decreases. The changes were correlated with serum lithium levels. The results suggest that the majority of patients develop little renal concentrating impairment, while a small proportion of patients become more polyuric with further lithium treatment.

Adult

Acute renal failure after ruptured abdominal aortic aneurysm: an improved clinical prognosis.

Eleven cases of renal failure associated with resection of ruptured abdominal aortic aneurysm and requiring hemodialysis are reported. Previously described series have emphasized the extremely high mortality rate in such patients. In our clinical experience, however, 8 of 11 consecutively treated patients with this clinical problem survived and recovered adequate renal function. We believe that these favorable results can be largely explained by the low incidence of pulmonary infection in our patients as opposed to the frequent occurrence of pulmonary sepsis in other reported series. The reduction in the incidence of pulmonary infection can probably be attributed to the early discontinuance of artificial ventilation after prompt removal of pulmonary edema fluid by intensive hemodialysis ultrafiltration. These survival figures demonstrate that, with appropriate intensive management, full recovery is possible in the majority of patients with acute renal failure complicating ruptured aortic abdominal aneurysm. Our experience serves as a stimulus to render full intensive care support to such patients.

Acute Kidney Injury

Nitrogen sparing induced early in starvation by infusion of branched-chain ketoacids.

The alpha-ketoanalogues of the branched-chain amino acids were administered to fasting subjects to determine whether or not they promoted nitrogen sparing. Two fasting studies were carried out in each subject. During the first week of one of the two fasts 4.7 g of a mixture of the alpha-ketoanalogues of valine, leucine, and isoleucine were infused daily. No infusions were administered during the other fast, which served as a control. Urinary urea and calculated total urinary nitrogen were significantly lower during both the week of infusions and the ensuing week of fasting after the infusions were discontinued. Immediately after ketoacid infusions, plasma branched-chain amino acids, including allosioleucine, rose, while alanine and several other amino acids (but not glutamine) fell. There were no differences between the two fasts with respect to ketone bodies, free fatty acids, glucose, insulin, or glucagon concentrations. We conclude that branched-chain ketoacids spare nitrogen early in fasting and that this effect persists after they are metabolized.

Adult

The role of alanine and glutamine in steroid-induced nitrogen wasting in man.

1. Administration of dexamethasone, 8 mg/day (0-02 mmol/day), for 5 days to normal subjects produced negative nitrogen balance, due to early and sustained increases in urinary urea nitrogen excretion 2. In eight subjects ingesting 0-9--1-6 g of protein day-1 kg-1 body weight the cumulative increment in urea nitrogen excretion averaged + 12-5 g (SEM 2-8, P less than 0-01) over the 5 days of glucocorticoid administration. 3. Increases in urinary urea nitrogen excretion could be related to both plasma alanine and blood glutamine changes by using a multiple regression equation. 4. These results suggest that corticosteroids induce increased release of alanine and glutamine by peripheral tissues, which may augment urea formation and negative nitrogen balance. 5. The correlation between increments in urea nitrogen excretion and increases in plasma arginine remains unexplained.

Adult

The role of potassium in the control of ammonium excretion during starvation.

Administration of KC1 0.5 mmol/kg/day to subjects undergoin prolonged starvation reduced daily urinary ammonium and beta-hydroxybutyrate excretion by one-third. These changes were accompanied by an improvement in potassium balance and an increased rate of chloride excretion. A similar fall in ammonium excretion occurred in a second group of subjects after administration of KHCO3 0.5 mmol/kg/day. Ketone body and bicarbonate excretion remained unchanged in this group while potassium balance improved. In both the first and second groups urine pH fell significantly as the rate of excretion of urinary buffer (ammonium) decreased. When the dose of KHCO3 was increased to 1.5-2.0 mmol/kg/day in fasting subjects, the urine was alkalinized, and ammonium excretion fell to negligible levels, resulting in nitrogen sparing of 2.0 g/day. The results indicate that one-half of the increase in ammonium excretion observed in starvation is due to potassium deficiency. Nitrogen wastage caused by losses of urinary ammonium during starvation can be virtually eliminated by potassium supplementation and urinary alkalinization. The decrease in beta-hydroxybutyrate excretion after potassium chloride administration was not caused by a fall in the rate of nonionic diffusion of this organic acid related to the reduction in urine pH. The reason for the fall in beta-hydroxybutyrate excretion is not apparent, though it was associated with an increase in chloride excretion.

Acid-Base Equilibrium

Renal conservation of ketone bodies during starvation.

Renal handling of acetoacetate and beta-hydroxybutyrate was studied in 12 obese subjects undergoing total starvation. Simultaneously, the acetoacetate, beta-hydroxybutyrate, and inulin clearance rates were measured, and acetoacetate and beta-hydroxybutyrate reabsorption rates were calculated. Renal clearance of blood acetoacetate and beta-hydroxybutyrate remained constant. In contrast, acetoacetate reabsorption rate increased significantly from 47 plus or minus 10 mumoles/min on day 3 to 106 plus or minus 15, 89 plus or minus 10, and 96 plus or minus 10 mumoles/min on days 10, 17, and 24, respectively. Similarly, beta-hydroxybutyrate reabsorption rate increased significantly from 154 plus or minus 27 mumoles/min on day 3 to 419 plus or minus 53, 399 plus or minus 25, and 436 plus or minus 53 mumoles/min on days 10, 17, and 24, respectively. Both acetoacetate and beta-hydroxybutyrate reabsorption rates increased linearly when plotted against their filtered loads. Thus, no tubular maximal transport rate exists for acetoacetate or beta-hydroxybutyrate during physiologic ketonemia. Conservation 450-500 mmoles of ketone bodies/day prevents large urinary losses of cations during prolonged starvation. Since ammonium becomes the major cation excreted during prolonged fasting, the increased renal reabsorption of ketone bodies minimizes body protein loss and aids in maintaining high circulating acetoacetate and beta-hydroxybutyrate concentrations.

Acetoacetates

Nitrogen sparing induced by a mixture of essential amino acids given chiefly as their keto-analogues during prolonged starvation in obese subjects.

11 normal obese subjects were fasted for 33 days. In five, who served as controls, urine urea nitrogen excretion remained constant for 2 wk thereafter. The other six were given seven daily infusions containing 6-8 mmol each of the alpha-keto-analogues of valine, leucine, isoleucine, phenylalanine, and methionine (as sodium salts) plus 3-4 mmol each of the remaining essential amino acids (lysine, threonine, tryptophan, and histidine). Rapid amination of the infused ketoacids occurred, as indicated by significant increases in plasma concentrations of valine, leucine, isoleucine, alloisoleucine, phenylalanine, and methionine. Glutamine, glycine, serine, glutamate, and taurine fell significantly. Blood glucose, ketone bodies, plasma free fatty acids, and serum immunoreactive insulin concentrations were unaltered. Urine urea nitrogen fell from 1.46 to 0.89 g/day on the last day of infusions; 5 days later it was still lower (0.63 g/day) and in two subjects studied for 9 and 17 days postinfusion it remained below preinfusion control values. Urine ammonia, creatinine, and uric acid were unaltered. Nitrogen balance became less negative during and after infusions. The results indicate that this mixture of essential amino acids and their keto-analogues facilitates nitrogen sparing during prolonged starvation, in part by conversion of the ketoacids to amino acids and in part by altering mechanisms of nitrogen conservation. The latter effect persists after the ketoacids are metabolized.

Amino Acids

The effect of carbohydrates on ammonium and ketoacid excretion during starvation.

The metabolic effects of oral ingestion of minute quantities of carbohydrate during prolonged starvation were studied in nine obese subjects. Measurements were made during a control period of total starvation, during the ingestion of 7.5 g carbohydrate daily, and finally during the ingestion of 15.0 g carbohydrate daily. Daily ketoacid excretion fell after carbohydrate ingestion and was significantly correlated (r = 0.62, P < 0.01) with the amount of carbohydrate administered. Despite this fall in ketoacids, the concentration of blood ketoacids, plasma free fatty acids, and serum insulin remained constant throughout the study. Urinary ammonium excretion, closely correlated with ketoacid output (r = 0.95, P < 0.001), also fell significantly after carbohydrate ingestion. No significant changes were present in extracellular or urinary pH. Urea nitrogen excretion did not change when urinary ammonium output fell. These results indicate that: the excretion of ketoacids and ammonium in starving man is exquisitely sensitive to minute amounts of ingested carbohydrate; the change in ketonuria appears to be due to increased renal ketoacid reabsorption after carbohydrate ingestion; and the nitrogen-sparing effect of reducing renal ammonium output in starvation can be dissociated from nitrogen sparing occurring because of changes in urine urea excretion.

Adolescent

Acute renal failure. Community hospital experience with hemodialysis as intensive care adjunct.

A 3-year experience with 50 acute renal failure patients managed by hemodialysis in a 417-bed community hospital is reviewed. The 58% survival rate was better than that reported in other recent series. Possible reasons for our favorable mortality experience include: (1) Hemodialysis was performed within the ICU facility by the ICU staff. Continuity of total care was thereby maintained and hemodialysis problems, such as maintenance of circulating volume, were managed in the context of continued assessment of the patient's cardiopulmonary status. (2) In contrast to previous reports, the presence of sepsis did not influence recovery rates from acute renal failure. Early administration of specific antibiotics, mainly gentamicin, rapid drainage of abdominal abscesses, and early and frequent dialysis were all utilized in spetic patients and may have contributed to their high recovery rate. (3) The use of agressive dialysis may also have lessened other uremic complications, notably gastrointestinal bleeding. Our dialysis organization and procedures are described.

Acute Kidney Injury

Evidence for an anabolic action of essential amino acid analogues in uremia and starvation.

Nitrogen-free analogues of essential amino acids, when administered with those essential amino acids for which analogues are ineffective or unavailable, exert three actions that may be beneficial in protein-deficient or protein-intolerant subjects. First, they bring about an increase in the concentrations of essential amino acids in the blood at the expense of the concentrations of certain non-essential amino acids, notably alanine and glutamine. This effect is most readily demonstrated in children with congenital defects of the urea cycle enzymes, but can also be seen during daily therapy of adults with portal-systemic encephalopathy. Second, these compounds promote nitrogen balance through their suppressive effect on urea synthesis (an effect not attributable to re-utilization of ammonia derived from urease action in the gut). This action is demonstrable in obese subjects who are already conserving nitrogen maximally at the end of a prolonged fast and can also be shown in the first week of fasting when the branched-chain keto acids alone are administered. In both situations, improved nitrogen conservation persists long after the analogues are metabolized, suggesting enzyme adaptations. In chronic uremics, nitrogen balance can be maintained in some (but not all) patients on very low nitrogen intakes. Third, these mixtures may delay or reverse the progressive decline in glomerular filtration rate characteristic of chronic renal failure in some cases: thus, for example, 5 of 6 patients taken off chronic dialysis have maintained lower serum urea concentrations without evidence of protein malnutrition for periods of 2-24 months.

Amino Acids