Literature DB >> 29774568

Effects of Plasma Proteins on the Transport and Surface Characteristics of Polysulfone/Polyethersulfone and Asymmetric Cellulose Triacetate High Flux Dialyzers.

Tae Ryung Kim1, Mahsa Hadidi1, Seyed Pouria Motevalian1, Takashi Sunohara2, Andrew L Zydney1.   

Abstract

Blood-membrane interactions can have a large impact on the performance of hemodialysis membranes, particularly for high flux membranes in which the membrane itself provides very low resistance to solute transport. The objective of this study was to examine the effects of exposure to serum on the solute clearance and convective sieving characteristics of high flux polysulfone (Optiflux F250NR), polyethersulfone (ELISIO-25H), and asymmetric cellulose triacetate (SOLACEA-25H) hemodialyzers using both vitamin B12 and a range of polydisperse dextrans. Zeta potential measurements were used to obtain additional insights into the changes in membrane surface properties. Exposure to serum in a simulated dialysis session caused a significant reduction in both solute clearance and sieving coefficients for the polysulfone/polyethersulfone dialyzers, particularly for the larger molecular weight solutes. In contrast, the transport characteristics of the asymmetric cellulose triacetate dialyzers were almost unchanged after exposure to serum. The zeta potential of the cellulose triacetate membrane became slightly more negative after exposure to serum, consistent with an adsorbed protein layer composed largely of albumin. The net result is that the asymmetric cellulose triacetate dialyzer had dramatically higher clearance of the larger dextrans after exposure to serum, with the clearance and sieving coefficient for a 10 kDa molecular weight dextran being more than an order of magnitude greater than that of the polysulfone/polyethersulfone membranes. These results provide important insights into the expected clinical performance of these high flux dialyzers.
© 2018 International Center for Artificial Organs and Transplantation and Wiley Periodicals, Inc.

Entities:  

Keywords:  Asymmetric cellulose triacetate; Blood-membrane interactions; Clearance; Hemodialysis; Membrane; Polysulfone

Mesh:

Substances:

Year:  2018        PMID: 29774568     DOI: 10.1111/aor.13154

Source DB:  PubMed          Journal:  Artif Organs        ISSN: 0160-564X            Impact factor:   3.094


  4 in total

1.  Semi-Quantitative Evaluation of Asymmetricity of Dialysis Membrane Using Forward and Backward Ultrafiltration.

Authors:  Akihiro C Yamashita; Toshiki Kakee; Takahisa Ono; Jun Motegi; Satoru Yamaguchi; Takashi Sunohara
Journal:  Membranes (Basel)       Date:  2022-06-15

2.  Determinants of Hemodialysis Performance: Modeling Fluid and Solute Transport in Hollow-Fiber Dialyzers.

Authors:  Jian Yu; Vipul C Chitalia; Olukemi O Akintewe; Aurelie Edwards; Joyce Y Wong
Journal:  Regen Eng Transl Med       Date:  2019-11-25

3.  A pilot study comparing the efficiency of a novel asymmetric cellulose triacetate (ATA) dialyser membrane (Solacea-190H) to a standard high flux polysulfone dialyser membrane (FX-80) in the setting of extended hours haemodialysis.

Authors:  Kamya Kameshwar; Matthew J Damasiewicz; Kevan R Polkinghorne; Peter G Kerr
Journal:  Nephrology (Carlton)       Date:  2022-03-10       Impact factor: 2.358

4.  Effect of Membrane Surface Area on Solute Removal Performance of Dialyzers with Fouling.

Authors:  Takayoshi Kiguchi; Hiromi Ito; Akihiro C Yamashita
Journal:  Membranes (Basel)       Date:  2022-07-01
  4 in total

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