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血液和透析液流量及表面积对新型聚砜血液透析器性能的影响

Impact of blood and dialysate flow and surface on performance of new polysulfone hemodialysis dialyzers.

作者信息

Mandolfo S, Malberti F, Imbasciati E, Cogliati P, Gauly A

机构信息

Renal Unit, Ospedale Maggiore, Lodi, Italy.

出版信息

Int J Artif Organs. 2003 Feb;26(2):113-20. doi: 10.1177/039139880302600204.

Abstract

Optimization of hemodialysis treatment parameters and the characteristics of the dialyzer are crucial for short- and long-term outcome of end stage renal disease patients. The new high-flux membrane Helixone in the dialyzer of the FX series (Fresenius Medical Care, Germany) has interesting features, such as the relationship of membrane thickness and capillary diameter which increases middle molecule elimination by convection, as well as higher capillary packing and microondulation to improve the dialysate flow and distribution. Blood flow, dialysate flow and surface area are the main determinants of the performance of a dialyzer, however the impact of each parameter on small and middle molecule clearance in high flux dialysis has not been well explored. In order to find the best treatment condition for the new dialyzer series, we evaluated urea, creatinine, phosphate clearances and reduction rate of beta2-microglobulin in ten stable patients treated with different blood flows (effective Qb 280 and 360 ml/min), dialysate flow (Qd 300 or 500 ml/min) and dialyzer surfaces (1.4 and 2.2 m2, FX60 or FX100). KoA and Kt/V were also calculated. Blood flow, dialysate flow and surface area demonstrated a significant and independent effect on clearance of urea, creatinine and phosphate, as well as on Kt/V. Small solute clearance was stable over the treatment. In contrast to small solutes, reduction rate of beta2-microglobulin was related to increasing dialyzer surface only. The new dialyzer design of the FX series proves highly effective due to improved dialysate distribution and reduced diffusive resistance as shown by the small solute clearance. A high reduction rate of beta2-microglobulin is favored by improved fiber geometry and pore size distribution. These findings have potential long-term benefits for the patient.

摘要

优化血液透析治疗参数和透析器的特性对于终末期肾病患者的短期和长期预后至关重要。费森尤斯医疗护理公司(德国)生产的FX系列透析器中的新型高通量膜Helixone具有一些有趣的特性,例如膜厚度与毛细血管直径的关系,这种关系通过对流增加了中分子清除率,以及更高的毛细血管填充率和微起伏以改善透析液流动和分布。血流量、透析液流量和表面积是透析器性能的主要决定因素,然而,在高通量透析中,每个参数对小分子和中分子清除率的影响尚未得到充分研究。为了找到新型透析器系列的最佳治疗条件,我们评估了10例稳定患者在不同血流量(有效Qb为280和360 ml/min)、透析液流量(Qd为300或500 ml/min)和透析器表面积(1.4和2.2 m²,FX60或FX100)下的尿素、肌酐、磷酸盐清除率以及β2-微球蛋白的降低率。还计算了KoA和Kt/V。血流量、透析液流量和表面积对尿素、肌酐和磷酸盐的清除率以及Kt/V均显示出显著且独立的影响。小分子溶质清除率在治疗过程中保持稳定。与小分子溶质不同,β2-微球蛋白的降低率仅与透析器表面积的增加有关。如小分子溶质清除率所示,FX系列的新型透析器设计由于改善了透析液分布和降低了扩散阻力而被证明非常有效。纤维几何形状和孔径分布的改善有利于β2-微球蛋白的高降低率。这些发现对患者具有潜在的长期益处。

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