Modelling of icodextrin hydrolysis and kinetics during peritoneal dialysis

被引:1
作者
Stachowska-Pietka, Joanna [1 ]
Waniewski, Jacek [1 ]
Olszowska, Anna [2 ]
Garcia-Lopez, Elvia [3 ,4 ]
Wankowicz, Zofia [2 ]
Lindholm, Bengt [3 ,4 ]
机构
[1] Polish Acad Sci, Nalecz Inst Biocybernet & Biomed Engn, Ks Trojdena 4, PL-02109 Warsaw, Poland
[2] Minist Publ Def, Mil Inst Med, Cent Hosp, Warsaw, Poland
[3] Karolinska Inst, Dept Clin Sci Intervent & Technol, Div Renal Med, Stockholm, Sweden
[4] Karolinska Inst, Baxter Novum, Stockholm, Sweden
关键词
ALPHA-AMYLASE ACTIVITY; LYMPHATIC ABSORPTION; EQUILIBRATION TEST; SOLUTE TRANSPORT; MOLECULAR-WEIGHT; GLUCOSE; FLUID; CAPD; MEMBRANE; PLASMA;
D O I
10.1038/s41598-023-33480-w
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
In peritoneal dialysis, ultrafiltration is achieved by adding an osmotic agent into the dialysis fluid. During an exchange with icodextrin-based solution, polysaccharide chains are degraded by alpha-amylase activity in dialysate, influencing its osmotic properties. We modelled water and solute removal taking into account degradation by alpha-amylase and absorption of icodextrin from the peritoneal cavity. Data from 16 h dwells with icodextrin-based solution in 11 patients (3 icodextrin-exposed, 8 icodextrin-naive at the start of the study) on dialysate volume, dialysate concentrations of glucose, urea, creatinine and alpha-amylase, and dialysate and blood concentrations of seven molecular weight fractions of icodextrin were analysed. The three-pore model was extended to describe hydrolysis of icodextrin by alpha-amylase. The extended model accurately predicted kinetics of ultrafiltration, small solutes and icodextrin fractions in dialysate, indicating differences in degradation kinetics between icodextrin-naive and icodextrin-exposed patients. In addition, the model provided information on the patterns of icodextrin degradation caused by alpha-amylase. Modelling of icodextrin kinetics using an extended three-pore model that takes into account absorption of icodextrin and changes in alpha-amylase activity in the dialysate provided accurate description of peritoneal transport and information on patterns of icodextrin hydrolysis during long icodextrin dwells.
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页数:15
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共 44 条
[21]   Pharmacokinetics of icodextrin in peritoneal dialysis patients [J].
Moberly, JB ;
Mujais, S ;
Gehr, T ;
Hamburger, R ;
Sprague, S ;
Kucharski, A ;
Reynolds, R ;
Ogrinc, F ;
Martis, L ;
Wolfson, M .
KIDNEY INTERNATIONAL, 2002, 62 :S23-S33
[22]   Mechanisms of Crystalloid versus Colloid Osmosis across the Peritoneal Membrane [J].
Morelle, Johann ;
Sow, Amadou ;
Fustin, Charles-Andre ;
Fillee, Catherine ;
Garcia-Lopez, Elvia ;
Lindholm, Bengt ;
Goffin, Eric ;
Vandemaele, Frederic ;
Rippe, Bengt ;
Oberg, Carl M. ;
Devuyst, Olivier .
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2018, 29 (07) :1875-1886
[23]   Molecular weight of polydisperse icodextrin effects its oncotic contribution to water transport [J].
Nishimura, Kohei ;
Kamiya, Yohei ;
Miyamoto, Keiichi ;
Nomura, Shinsuke ;
Horiuchi, Takashi .
JOURNAL OF ARTIFICIAL ORGANS, 2008, 11 (03) :165-169
[24]   Optimization of bimodal automated peritoneal dialysis prescription using the three-pore model [J].
Oberg, Carl M. .
PERITONEAL DIALYSIS INTERNATIONAL, 2021, 41 (04) :381-393
[25]   Long Peritoneal Dialysis Dwells With Icodextrin: Kinetics of Transperitoneal Fluid and Polyglucose Transport [J].
Olszowska, Anna ;
Waniewski, Jacek ;
Stachowska-Pietka, Joanna ;
Garcia-Lopez, Elvia ;
Lindholm, Bengt ;
Wankowicz, Zofia .
FRONTIERS IN PHYSIOLOGY, 2019, 10
[26]   The kinetics of water transperitoneal transport during long-term peritoneal dialysis performed using icodextrin dialysis fluid [J].
Olszowska, Anna ;
Zelichowski, Grzegorz ;
Waniewski, Jacek ;
Stachowska-Pietka, Joanna ;
Werynski, Andrzej ;
Wankowicz, Zofia .
POLSKIE ARCHIWUM MEDYCYNY WEWNETRZNEJ-POLISH ARCHIVES OF INTERNAL MEDICINE, 2009, 119 (05) :305-310
[27]   THE STANDARD PERITONEAL PERMEABILITY ANALYSIS - A TOOL FOR THE ASSESSMENT OF PERITONEAL PERMEABILITY CHARACTERISTICS IN CAPD PATIENTS [J].
PANNEKEET, MM ;
IMHOLZ, ALT ;
STRUIJK, DG ;
KOOMEN, GCM ;
LANGEDIJK, MJ ;
SCHOUTEN, N ;
DEWAART, R ;
HIRALALL, J ;
KREDIET, RT .
KIDNEY INTERNATIONAL, 1995, 48 (03) :866-875
[28]   Mathematical modeling of maize starch liquefaction catalyzed by α-amylases from Bacillus licheniformis: effect of calcium, pH and temperature [J].
Presecki, Ana Vrsalovic ;
Blazevic, Zvjezdana Findrik ;
Vasic-Racki, Durda .
BIOPROCESS AND BIOSYSTEMS ENGINEERING, 2013, 36 (01) :117-126
[29]   Kinetics of starch hydrolysis with Bacillus amyloliquefaciens-alpha-amylase under high hydrostatic pressure [J].
Raabe, E ;
Knorr, D .
STARCH-STARKE, 1996, 48 (11-12) :409-414
[30]   Computer simulations of ultrafiltration profiles for an icodextrin-based peritoneal fluid in CAPD [J].
Rippe, B ;
Levin, L .
KIDNEY INTERNATIONAL, 2000, 57 (06) :2546-2556