Effect of Dialyzer Geometry on Granulocyte and Complement Activation
作者:
Roland M. Schaefer,
August Heidland,
Walter H. Hörl,
期刊:
American Journal of Nephrology
(Karger Available online 1987)
卷期:
Volume 7,
issue 2
页码: 121-126
ISSN:0250-8095
年代: 1987
DOI:10.1159/000167446
出版商: S. Karger AG
关键词: Hemodialysis;Hollow fiber;Flat sheet;Surface area;C3a;Granulocyte elastase;Lactoferrin
数据来源: Karger
摘要:
During hemodialysis with cuprophan membranes, the complement system as well as leukocytes become activated. In order to clarify the role of dialyzer geometry, the effect of hollow-fiber versus flat-sheet dialyzers and of different surface areas on C3a generation and leukocyte degranulation was investigated. Plasma levels of leukocyte elastase in complex with α1-proteinase inhibitor were significantly increased after 1 h (+55%) and 3 h (+62%) of hemodialysis with flat-sheet dialyzers as compared to hollow-fiber devices. In addition, plasma levels of lactoferrin, released from the specific granules of leukocytes during activation, were significantly higher (+ 42 %) 3 h after the onset of dialysis treatment with flat-sheet than with hollow-fiber dialyzers. With respect to surface area, larger dialyzers tended to cause more release of leukocyte elastase as compared to dialyzers with smaller surface areas, irrespectively of the configuration of the dialyzer used. On the other hand, activation of the complement system, as measured by the generation of C3a-desarg, did not differ with both types of configurations. The same held true for leukopenia, which was almost identical for hollow-fiber and flat-sheet dialyzers. From these findings two lines of evidence emerge: First, not only the type of membrane material used in a dialyzer may influence its biocompatibility, but the geometry of the extracorporeal device also determines the degree of compatibility. Hence, the extent of leukocyte activation correlated with both configuration of the dialyzer and surface area of the membrane. Second, the fact that both types of configurations activated the complement system to virtually the same extent favors a more mechanical route of leukocyte activation and demonstrates that leukocytes do not necessarily need the involvement of the complement system to become activated
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