Computer simulations of osmotic ultrafiltration and small-solute transport in peritoneal dialysis: a spatially distributed approach

被引:26
作者
Stachowska-Pietka, Joanna [1 ]
Waniewski, Jacek [1 ]
Flessner, Michael F. [2 ]
Lindholm, Bengt [3 ,4 ]
机构
[1] Poland Acad Sci, Inst Biocybernet & Biomed Engn, Warsaw, Poland
[2] NIDDK, Hematol Branch, NIH, Bethesda, MD USA
[3] Karolinska Inst, Dept Clin Sci Intervent & Technol, Div Baxter Novum, Stockholm, Sweden
[4] Karolinska Inst, Dept Clin Sci Intervent & Technol, Div Renal Med, Stockholm, Sweden
关键词
peritoneal transport; distributed model; diffusion and convection; capillary transport; peritoneal tissue; SKELETAL-MUSCLE CAPILLARIES; PLASMA TRANSPORT; FLUID TRANSPORT; SURFACE-AREA; INTRAPERITONEAL THERAPY; ABDOMINAL-WALL; 3-PORE MODEL; EXCHANGE; MEMBRANE; WATER;
D O I
10.1152/ajprenal.00301.2011
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Stachowska-Pietka J, Waniewski J, Flessner MF, Lindholm B. Computer simulations of osmotic ultrafiltration and small-solute transport in peritoneal dialysis: a spatially distributed approach. Am J Physiol Renal Physiol 302: F1331-F1341, 2012. First published February 1, 2012; doi:10.1152/ajprenal.00301.2011.-The aim of this study was to simulate clinically observed intraperitoneal kinetics of dialysis fluid volume and solute concentrations during peritoneal dialysis. We were also interested in analyzing relationships between processes in the peritoneal cavity and processes occurring in the peritoneal tissue and microcirculation. A spatially distributed model was formulated for the combined description of volume and solute mass balances in the peritoneal cavity and flows across the interstitium and the capillary wall. Tissue local parameters were assumed dependent on the interstitial hydration and vasodilatation induced by glucose. The model was fitted to the average volume and solute concentration profiles from dwell studies in 40 clinically stable patients on chronic ambulatory peritoneal dialysis using a 3.86% glucose dialysis solution. The model was able to describe the clinical data with high accuracy. An increase in the local interstitial pressure and tissue hydration within the distance of 2.5 mm from the peritoneal surface of the tissue was observed. The penetration of glucose into the tissue and removal of urea, creatinine, and sodium from the tissue were restricted to a layer located within 2 mm from the peritoneal surface. The initial decline of sodium concentration (sodium dip) was observed not only in intraperitoneal fluid but also in the tissue. The distributed model can provide a precise description of the relationship between changes in the peritoneal tissue and intraperitoneal dialysate volume and solute concentration kinetics. Computer simulations suggest that only a thin layer of the tissue within 2-3 mm from the peritoneal surface participates in the exchange of fluid and small solutes between the intraperitoneal dialysate and blood.
引用
收藏
页码:F1331 / F1341
页数:11
相关论文
共 63 条
[1]  
[Anonymous], 1984, Handbook of Physiology. The Cardiovascular System Microcirculation
[2]  
[Anonymous], 1990, GEIGY SCI TABLES HEA, V5
[3]   Intraperitoneal cisplatin and paclitaxel in ovarian cancer [J].
Armstrong, DK ;
Bundy, B ;
Wenzel, L ;
Huang, HQ ;
Baergen, R ;
Lele, S ;
Copeland, LJ ;
Walker, JL ;
Burger, RA .
NEW ENGLAND JOURNAL OF MEDICINE, 2006, 354 (01) :34-43
[4]   Intraperitoneal chemotherapy for ovarian carcinoma: Results of long-term follow-up [J].
Barakat, RR ;
Sabbatini, P ;
Bhaskaran, D ;
Revzin, M ;
Smith, A ;
Venkatraman, E ;
Aghajanian, C ;
Hensley, M ;
Soignet, S ;
Brown, C ;
Soslow, R ;
Markman, M ;
Hoskins, WJ ;
Spriggs, D .
JOURNAL OF CLINICAL ONCOLOGY, 2002, 20 (03) :694-698
[5]  
Chagnac A, 1999, J AM SOC NEPHROL, V10, P342
[6]   Effect of increased dialysate volume on peritoneal surface area among peritoneal dialysis patients [J].
Chagnac, A ;
Herskovitz, P ;
Ori, Y ;
Weinstein, T ;
Hirsh, J ;
Katz, M ;
Gafter, U .
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2002, 13 (10) :2554-2559
[7]  
Cherniha R, 2005, UKR MATH J, V57, P1112
[8]  
Cherniha R, 2007, MATH MODELING BIOL S, P291
[9]  
Crone C., 1984, CARDIOVASCULAR SYSTE, P411
[10]   OSMOTIC REFLECTION COEFFICIENTS OF CAPILLARY WALLS TO LOW-MOLECULAR WEIGHT HYDROPHILIC SOLUTES MEASURED IN SINGLE PERFUSED CAPILLARIES OF FROG MESENTERY [J].
CURRY, FE ;
MASON, JC ;
MICHEL, CC .
JOURNAL OF PHYSIOLOGY-LONDON, 1976, 261 (02) :319-336