Literature DB >> 16288434

Dialytic performance evaluation of Rexeed: a new polysulfone-based dialyzer with improved flow distributions.

A Brendolan1, F Nalesso, A Fortunato, C Crepaldi, M De Cal, S Cazzavillan, D Cruz, N Techawathanawanna, C Ronco.   

Abstract

New dialyzers are designed to optimize the convective and diffusive components of solute transport. Asahi Kasei Medical Co.,Ltd.has developed a new high flux dialyzer series called Rexeed with improved flow distributions. We evaluated the in vivo dialytic performance of two dialyzers of the Rexeed series: Rexeed-18A and Rexeed-25A (1.8 m2 and 2.5 m2 ). We calculated the clearance for urea,creatinine,phosphate and b2-microglobulin both in high flux dialysis (HFD)and in 15 liter postidiluitional on-line hemodiafiltration (HDF)mode. With n = 3 patients in high flux HD at blood flow 450, 400, 350 and 250 ml/min we found remarkably high clearance for urea (347 +/- 4%, 305 +/- 0%, 288 +/- 5%, 230 +/- 3%, for Rexeed-18A and 361 +/- 3%, 329 +/- 0%, 313 +/- 1%, 234 +/- 3%for Rexeed-25A),creatinine (282 +/- 10%, 234 +/- 0%, 221 +/- 8%, 174 +/- 8%, for Rexeed-18A and 276 +/- 6%, 245 +/- 0%, 226 +/- 9%, 172 +/- 13% for Rexeed-25A),phosphate (347 +/- 0%, 316 +/- 0%, 275 +/- 4%, 202 +/- 16%, for Rexeed-18A and 364 +/- 3%, 365 +/- 0%,286 +/- 3%, 224 +/- 2% for Rexeed-25A)and b2-microglobulin (133 +/- 21%, 124 +/- 0%,118 +/- 12%, 98 +/- 11%, for Rexeed-18A and 159 +/- 8%, 169 +/- 0%,157 +/- 8%, 129 +/- 7% for Rexeed-25A) With n = 2 patients in HDF at blood flow 300 ml/min we found remarkably high clearance for urea (268 +/- 2%, for Rexeed-18A and 283 +/- 2% for Rexeed-25A),creatinine (183 +/- 6%for Rexeed-18A and 205 +/- 9% for Rexeed-25A),phosphate (245 +/- 3%, for Rexeed-18A and 270 +/- 2% for Rexeed-25A)and b2-microglobulin (166 +/- 12%, for Rexeed-18A and 192 +/- 4% for Rexeed-25A). Our preliminary evaluation describes the characteristics and the performances of a new polysulfone-based hemodialyzer series called Rexeed. Several innovative features have been implemented by the manufacturer. These constructive approaches seem to have produced a positive effect on the dialyzer performance at the bedside.

Entities:  

Mesh:

Substances:

Year:  2005        PMID: 16288434     DOI: 10.1177/039139880502801003

Source DB:  PubMed          Journal:  Int J Artif Organs        ISSN: 0391-3988            Impact factor:   1.595


  3 in total

1.  Outside-In Hemofiltration for Prolonged Operation without Clogging.

Authors:  Stanislav S Dukhin; Yacoob Tabani; Richard Lai; Omar A Labib; Andrew L Zydney; Mohamed E Labib
Journal:  J Memb Sci       Date:  2014-08-15       Impact factor: 8.742

2.  The clearance of unidentified uremic solutes (with molecular weight under 5 kDa) plays an important role in hemodialyzer selection.

Authors:  Tung-Sheng Chen; Shaw-Yih Liou; Yen-Lin Chang
Journal:  Int Urol Nephrol       Date:  2009-07-10       Impact factor: 2.370

3.  Removal of large middle molecules via haemodialysis with medium cut-off membranes at lower blood flow rates: an observational prospective study.

Authors:  Tae Hoon Kim; Seok-Hyung Kim; Tae Yeon Kim; Hae Yeul Park; Kwon Soo Jung; Moon Hyoung Lee; Jong Hyun Jhee; Jung Eun Lee; Hoon Young Choi; Hyeong Cheon Park
Journal:  BMC Nephrol       Date:  2019-12-31       Impact factor: 2.388

  3 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.