The scientific principles and technological determinants of haemodialysis membranes

被引:18
作者
Bowry, Sudhir K. [1 ]
Chazot, Charles [2 ]
机构
[1] Dialysis Crossrd A X Advisory, Bad Nauheim, Germany
[2] NephroCare Tassin Charcot, St Foy Les Lyon, France
关键词
haemodialysis; hollow fibres; membranes; semipermeable; transport phenomena; CHRONIC KIDNEY-DISEASE; HIGH-FLUX; ONLINE HEMODIAFILTRATION; PERITONEAL-DIALYSIS; SIZE DISTRIBUTION; WATER TRANSPORT; RENAL-FAILURE; ION CHANNELS; PERMEABILITY; DIALYZER;
D O I
10.1093/ckj/sfab184
中图分类号
R5 [内科学]; R69 [泌尿科学(泌尿生殖系疾病)];
学科分类号
1002 ; 100201 ;
摘要
In most biological or industrial (including medical) separation processes, a membrane is a semipermeable barrier that allows or achieves selective transport between given compartments. In haemodialysis (HD), the semipermeable membrane is in a tubular geometry in the form of miniscule pipes (hollow fibres) and separation processes between compartments involve a complex array of scientific principles and factors that influence the quality of therapy a patient receives. Several conditions need to be met to accomplish the selective and desired removal of substances from blood in the inner cavity (lumen) of the hollow fibres and across the membrane wall into the larger open space surrounding each fibre. Current HD membranes have evolved and improved beyond measure from the experimental membranes available in the early developmental periods of dialysis. Today, the key functional determinants of dialysis membranes have been identified both in terms of their potential to remove uraemic retention solutes (termed 'uraemic toxins') as well subsidiary criteria they must additionally fulfill to avoid undesirable patient reactions or to ensure safety. The production of hundreds of millions of kilometres of hollow fibre membranes is truly a technological achievement to marvel, particularly in ensuring that the fibre dimensions of wall thickness and inner lumen diameter and controlled porosity-all so vital to core solute removal and detoxification functions of dialysis-are maintained for every centimetre length of the fragile fibres. Production of membranes will increase in parallel with the increase in the number of chronic kidney disease (CKD) patients expected to require HD therapies in the future. The provision of high-quality care entails detailed consideration of all aspects of dialysis membranes, as quality cannot in any way be compromised for the life-sustaining-like the natural membranes within all living organisms-function artificial dialysis membranes serve.
引用
收藏
页码:I5 / I16
页数:12
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