Limitation of Small-Solute Exchange across the Visceral Peritoneum: Effects of Vibration

Author:

Zakaria El Rasheid1,Carlsson Ola1,Rippe Bengt1

Affiliation:

1. Departments of Nephrology and Physiology, University Hospital of Lund, Lund, Sweden

Abstract

Objective To evaluate the importance of the peritoneal membrane diffusion resistances to small solutes prevailing outside the capillaries in the visceral versus the parietal peritoneum during acute peritoneal dialysis (PD). Design Experimental study in anesthetized Wistar rats undergoing PD in a single exchange (120 min) using 1.36% Dianeal as dialysis fluid. Vibration, using a standard laboratory shaker at 10 Hz, was used to induce dialysate mixing and reduce the impact of “unstirred layers” in intact and eviscerated rats. Nonvibrated rats served as controls. Measurements The mass transfer area coefficient (PS) for chromium 51-ethylenediamine tetraacetic acid (51 Cr-EDTA), continuously infused intravenously, the plasma-to -peritoneal clearance (CI→D) of radioiodinated (1251) serum albumin (human) (RISA), as well as the total clearance out of the peritoneal cavity (CI) of Evans blue labeled albumin, given as an intraperitoneal volume marker, and the portion of this C1 reaching the plasma per unit time (CI→P) were assessed. Results In intact rats there was a marked increase in PS for 51Cr -EDTA, from 0.297:I: 0.036 mL/min to 0.642 :I: 0.122 mL/min (n = 7, p < 0.01), and a moderate increase in CI and CI→D, from 37.6 :I: 1.3 μL/min to 63.3 :I: 9.0 μL/min and from 6.04 :I: 0.51μL/min to 9.54 :I: 0.93 μL/min (n = 7, p < 0.05), respectively, upon vibration. However, the plasma absorption clearance of albumin (CI→P) was unchanged after vibration. Furthermore, in eviscerated rats, vibration caused no significant changes in either of the exchange parameters measured. Conclusion In conclusion, the visceral peritoneal transport of small solutes is normally limited by the presence of diffusion resistances outside the capillaries, which may be markedly reduced by “stirring” of the dialysate by vibration. Normally, the parietal, rather than the visceral, peritoneum is the major site for small-solute mass transfer in stationary animals. However, the visceral peritoneum apparently becomes increasingly important after stirring. The moderate increases in transperitoneal clearances of macromolecules occurring upon vibration, which were quite unexpected, indicate that vibration may also increase the dialysatelperitoneal membrane contact and/ or cause some recruitment of capillaries.

Publisher

SAGE Publications

Subject

Nephrology,General Medicine

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1. Intraperitoneal Chemotherapy;Nolph and Gokal's Textbook of Peritoneal Dialysis;2023

2. Peritoneal dialysis beyond kidney failure?;Journal of Controlled Release;2018-07

3. Erythrocytes as Volume Markers in Experimental PD Show that Albumin Transport in the Extracellular Space Depends on PD Fluid Osmolarity;Peritoneal Dialysis International: Journal of the International Society for Peritoneal Dialysis;2016-05

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