PubMed HealthSearch

Biomedical subjects

I G Joshua

Publications and source records attributed to I G Joshua.

7 recordsLinked to original sources

Microvascular and clinical effects of altered peritoneal dialysis solutions.

Blood flow in the peritoneum is one of the more important factors governing the efficiency of peritoneal dialysis. Yet there have been no previous studies which relate alterations and control of the peritoneal microcirculation to dialysis efficiency. Thus, we used closed-circuit television microscopy to quantitative the in vivo response (changes in diameter) to dialysis solutions of the small arteries on the mesothelial surface of the rat cecum and arterioles of the rat cremaster muscle. These responses were correlated wiht solute clearances from multiple peritoneal dialysis performed in humans. In the cremaster, a transient constriction was followed by a prolonged dilation. pH adjustments of the dialysis solution from 5.6 to 7.4 had no effect on the microvascular response and no effect on solute clearances during human peritoneal dialysis. In the cecum, dialysis solution caused a prolonged dilation which reached a maximum in about 10 min. Since dilation appears to be an important determinant of solute clearances during human peritoneal dialysis, the effects of a vasodilator, sodium nitroprusside, were determined. Sodium nitroprusside decreased the time to maximal dilation, which correlated clinically with an increased solute clearance during exchanges with this drug. Since nitroprusside increased clearances of the larger molecular weight solutes proportionally more than the smaller molecular weight solutes did, we hypothesize that nitroprusside increases solute clearances by both a vasodilatory effect and by an effect on vascular membrane permeability and area for solute exchange.

Animals

Microvascular responses to norepinephrine in renovascular and spontaneously hypertensive rats.

Closed-circuit television microscopy was used to quantitate the responses of in vivo small arteries (50-140 micrometer diam) and veins (95-265 micrometer) to topically applied norepinephrine in the cremaster muscle of four groups of urethan-chloralose anesthetized rats. The rat groups were: Sprague-Dawley control (SDC), Sprague-Dawley renovascular hypertensive (RVH), Wistar-Kyoto control (WKY), and spontaneous hypertensive (SHR). The cremaster muscle with intact circulation and innervation was suspended by sutures in a 60-ml bath of bicarbonate-buffered Krebs solution. The vascular responses to the addition of progressively higher concentrations of norepinephrine to the bath were quantitated to obtain concentration-response curves. We found that the RVH (vs. SDC) had a decreased small-artery control diameter and decreased sensitivity to norepinephrine, whereas the SHR (vs. WKY) had tachycardia and decreased small-vein control diameter. Thus, the microvascular characteristics of these two types of hypertension appear to be quite different.

Animals

Clinical studies with a nonvasoactive peritoneal dialysis solution.

Topical application of dialysis solution to the rat microcirculation causes a transient vasoconstriction for 2 to 3 min. We assessed the clinical importance of this vasoconstriction by developing a dialysis solution without vasoactive properties, as assessed in the microcirculatory laboratory. The solution was of similar composition to human extracellular fluid. We tested its effects on Cur, Ccr, Cin, and dialysate protein concentration. We found that compared to commercial solutions, the lower osmolality of the NVS resulted in loss of ultrafiltration and decreases in clearance of urea and creatinine. The clearance of inulin was unchanged, and dialysate protein increased, suggesting a major increase in diffusive transport of large solutes. Increased diffusive transport of large solutes with NVS suggests that initial vasoconstriction seen in the rat could be present and clinically important during peritoneal dialysis in humans.

Adolescent