PubMed Health⌕ Search

Biomedical subjects

A W Yu

Publications and source records attributed to A W Yu.

At least 55 records · Page 3Linked to original sources

Hemodynamic effects of intradialytic food ingestion and the effects of caffeine.

Although the hypotensive effects of food ingestion during hemodialysis have been documented, the hemodynamic mechanism is unclear. It could be decreased cardiac output due to splanchnic sequestration or decreased vascular resistance due to splanchnic vasorelaxation. Also, the effects of caffeine, which block postprandial hypotension in the elderly, have not been studied in a dialysis setting. Central hemodynamics were monitored by thoracic electric bioimpedance in 10 dialysis patients who ingested a test meal 1 h into dialysis. All ultrafiltration was done during the initial 2 h. Bicarbonate dialysate was used. Each patient was studied three times in a double-blind (with respect to placebo/caffeine) cross-over trial: placebo/no meal, placebo/meal, and caffeine/meal. Blood pressure decreased sooner and to a great extent in the treatments in which food ingestion accompanied ultrafiltration (e.g., at 30 min after food ingestion, percent change in mean arterial pressure was -12.4 +/- 1.8 versus -2.4 +/- 3.5 mm Hg when food was not ingested; P < 0.05). The hemodynamic mechanism of food-associated hypotension was found to be a fall in systemic vascular resistance (SVRI). Caffeine pretreatment (200 mg), which resulted in intradialytic plasma caffeine levels of about 4 micrograms/mL at time of food ingestion, had no effect on food-associated reductions in blood pressure or SVRI. The results suggest that food ingestion during dialysis causes hypotension primarily because of decreased SVRI. The effects of food ingestion on mean arterial pressure and SVRI are not attenuated by the ingestion of 200 mg of caffeine 1 h before dialysis.

Analysis of Variance↗

Effects of an acidic, lactate-based peritoneal dialysis solution and its euhydric, bicarbonate-based counterpart on neutrophilic intracellular pH.

An exposure of human neutrophils to an acidic (pH 5.2), lactate-based incubation mixture containing a conventional, acidic, lactate-based peritoneal dialysis solution (PDS) resulted in the development of a prompt and substantial intracellular acidosis. A comparable exposure to a euhydric, bicarbonate-based incubation mixture containing a euhydric, bicarbonate-based PDS did not bring about similar changes in intracellular pH. The absence of an intracellular acidosis in the instance of the euhydric, bicarbonate-based PDS may be the reason why this solution is more biocompatible than its acidic, lactate-based counterpart.

Bicarbonates↗

Skin necrosis and protein C deficiency associated with vitamin K depletion in a patient with renal failure.

Skin necrosis similar to that induced by warfarin was seen in a patient who had never received the drug but who was vitamin K-deficient due to malnutrition and prolonged treatment with broad-spectrum antibiotics. He also had end-stage renal failure and was receiving prophylactic subcutaneous heparin therapy because of immobilization. His plasma protein C antigen level and, disproportionately, his plasma protein C functional activity were decreased. Both protein C values improved after vitamin K therapy, discontinuation of heparin, and initiation of hemodialysis. We surmise that skin necrosis occurred as a result of protein C deficiency caused by vitamin K depletion. Production of abnormal (descarboxy) protein C/protein S due to vitamin K deficiency and increased protein C inhibitory activity associated with renal failure and/or heparin administration may have contributed to the clinical picture. This rare but serious complication of a relatively common disorder, viz., vitamin K deficiency, reinforces the importance of vitamin K supplementation in malnourished patients who receive long-term antibiotic maintenance therapy.

Adult↗

Penile calcification in maintenance hemodialysis patients.

Penile calcification was detected in 6 of 32 patients (19%) with end-stage renal disease (ESRD) using soft tissue x-ray techniques. Having been maintained on hemodialysis for a minimum of one year, all the affected patients showed clinical evidence of secondary hyperparathyroidism and calcification in the blood vessels of some other tissues. All had erectile impotence, while in 1 patient gangrene of the penis developed. Penile calcification is probably more common in ESRD patients than realized and should be looked for as a possible cause of impotence in male patients treated with maintenance hemodialysis.

Adult↗

Increasing plasma phosphorus values by enriching with phosphorus the "acid concentrate" of a bicarbonate-buffered dialysate delivery system.

Each of seven hypophosphatemic hemodialysis patients was dialyzed with a phosphorus-enriched, bicarbonate-buffered dialysate. The latter was prepared by the introduction of sodium phosphate salts to the "acid concentrate" of a bicarbonate-buffered dialysate delivery system. The patients tolerated the procedure well and their hypophosphatemia improved.

Aged↗

L-lactate high-efficiency hemodialysis: hemodynamics, blood gas changes, potassium/phosphorus, and symptoms.

Hemodynamic changes were measured during high-efficiency hemodialysis (HEHD) using three dialysis solutions: L-lactate (46 mM), bicarbonate (35 mM + 4 mM acetate), and acetate (39 mM). Cardiac output was determined by changes in thoracic electrical bioimpedance. Although there appeared to be subtle differences in hemodynamic response to L-lactate versus bicarbonate, the blood pressure, cardiac output, and total peripheral resistance were affected less with either of these solutions than with acetate. In particular, neither L-lactate nor bicarbonate HEHD were associated with a change in cardiac output, whereas with acetate HEHD a marked (22%) increase in cardiac output was seen concurrently with a moderate fall in blood pressure and TPR. Both acetate and L-lactate HEHD were associated with hypoxemia, whereas with bicarbonate HEHD the PO2 did not change. With L-lactate HEHD, correction of pH and plasma HCO3 concentrations was delayed but these values were not significantly different from those obtained with bicarbonate HEHD by one hour after dialysis. Potassium removal was comparable with the three dialysis solutions. Phosphorus removal with L-lactate tended to be slightly less than with bicarbonate, but not less than with acetate. Our results suggest that L-lactate (46 mM) dialysis solution may be a suitable alternative to acetate for HEHD, being associated with a hemodynamic profile that is similar to that of bicarbonate and better than that of acetate. Our results further suggest that the hypoxemia associated with the use of acetate dialysis solution is not intrinsic to acetate, but is due either to a low dialysis solution PCO2 level or to accelerated consumption of oxygen during substrate metabolism.

Acetates↗

Effects of hypertonic peritoneal dialysis solutions on neutrophil superoxide production.

Superoxide produced by neutrophils plays an important role in the killing of bacterial pathogens. The effects of glucose-containing peritoneal dialysis solutions on superoxide production by canine and human neutrophils were studied. A significant decrement in superoxide generation was noted with the 2.27% and 3.86% glucose solutions. The results suggest that hypertonic peritoneal dialysis solutions curtail neutrophil superoxide generation.

Animals↗

Superoxide generation by neutrophils after exposure to a conventional peritoneal dialysis solution for different time periods.

Neutrophils were isolated from canine blood and exposed to a conventional, acidic, lactate-containing peritoneal dialysis solution for 0, 2 and 4 minutes in one study and 0, 4, 7 and 10 minutes in another. Superoxide generation, expressed in nanomoles per million cells, was determined using a method based on the superoxide dismutase-inhibitable reduction of ferricytochrome c. Brief exposure of neutrophils to a conventional dialysis solution could significantly inhibit the generation of superoxide by neutrophils.

Animals↗

Acid-base values of single pass, batch system, bicarbonate based hemodialysate.

The bicarbonate, calcium, and magnesium values of a single pass, batch system, bicarbonate based hemodialysate were found to be stable during a period of 5 hours, whether the solution was extensively covered by a floating polystyrene lid or not. The pH and PCO2 of the dialysate that had been covered with a floating lid remained stable during the 5 hours, whereas the corresponding values of the dialysate that had not been so covered did show changes that were secondary to the loss of carbon dioxide. The changes were not marked enough to preclude the clinical use of the latter uncovered dialysate.

Bicarbonates↗