The medium cut-off (MCO) dialyzer has shown good clearance of large middle molecules, but its long-term effects are unclear. We investigated whether MCO hemodialysis (HD) over one year could reduce middle molecule levels and cell-free hemoglobin (CFH), without albumin loss. A prospective cohort study in 57 hemodialysis patients was conducted. The patients were assigned to the MCO dialyzer group or the high-flux dialyzer group, according to the HD machine they used. The reduction ratio (RR) and one-year changes in small and middle molecules and CFH were analyzed. Over a 12-month follow-up, MCO HD did not reduce the serum levels of middle molecules (lambda free light chain [FLC], from 135.7 ± 39.9 to 132.0 ± 39.1 mg/L; kappa FLC, from 168.2 ±...
Introduction: Of the most remarkable molecules associated with atherosclerosis and the cardiovascula...
The development of hemodialysis (HD) membranes has substantially advanced in the last decade. This h...
Tuning the pore size distribution of hemodialysis membranes is essential for the membrane's selectiv...
Introduction: Medium cutoff (MCO) membranes for hemodialysis (HD) remove more effectively large midd...
International audienceBACKGROUND:Accumulation of middle-weight uraemic toxins in haemodialysis (HD) ...
Background Larger middle molecules are important substances associated with cardiovascular complicat...
To increase the removal of middle-sized uremic toxins a new membrane with enhanced permeability and ...
Introduction Medium-cut-off (MCO) dialyzers may beneficially impact outcomes in patients on hemodia...
Background. Despite significant advances in haemodialysis (HD) in recent decades, current dialysis t...
<div><p>Background</p><p>To increase the removal of middle-sized uremic toxins a new membrane with e...
Abstract In this single-center prospective study of 20 patients receiving maintenance hemodialysis (...
Background: A new class of dialysis membrane, the mid cut-off (MCO) dialyzer, has been developed to ...
Purpose: Conventional hemodialysis (HD) treatment has an acceptable removal of small uremic molecule...
Purpose: Conventional hemodialysis (HD) treatment has an acceptable removal of small uremic molecule...
Background To increase the removal of middle-sized uremic toxins a new membrane with enhanced permea...
Introduction: Of the most remarkable molecules associated with atherosclerosis and the cardiovascula...
The development of hemodialysis (HD) membranes has substantially advanced in the last decade. This h...
Tuning the pore size distribution of hemodialysis membranes is essential for the membrane's selectiv...
Introduction: Medium cutoff (MCO) membranes for hemodialysis (HD) remove more effectively large midd...
International audienceBACKGROUND:Accumulation of middle-weight uraemic toxins in haemodialysis (HD) ...
Background Larger middle molecules are important substances associated with cardiovascular complicat...
To increase the removal of middle-sized uremic toxins a new membrane with enhanced permeability and ...
Introduction Medium-cut-off (MCO) dialyzers may beneficially impact outcomes in patients on hemodia...
Background. Despite significant advances in haemodialysis (HD) in recent decades, current dialysis t...
<div><p>Background</p><p>To increase the removal of middle-sized uremic toxins a new membrane with e...
Abstract In this single-center prospective study of 20 patients receiving maintenance hemodialysis (...
Background: A new class of dialysis membrane, the mid cut-off (MCO) dialyzer, has been developed to ...
Purpose: Conventional hemodialysis (HD) treatment has an acceptable removal of small uremic molecule...
Purpose: Conventional hemodialysis (HD) treatment has an acceptable removal of small uremic molecule...
Background To increase the removal of middle-sized uremic toxins a new membrane with enhanced permea...
Introduction: Of the most remarkable molecules associated with atherosclerosis and the cardiovascula...
The development of hemodialysis (HD) membranes has substantially advanced in the last decade. This h...
Tuning the pore size distribution of hemodialysis membranes is essential for the membrane's selectiv...