Literature DB >> 2709867

Different oxygenators for cardiopulmonary bypass lead to varying degrees of human complement activation in vitro.

V Videm1, E Fosse, T E Mollnes, O Ellingsen, T Pedersen, H Karlsen.   

Abstract

Complement activation was studied in vitro with six different membrane and bubble oxygenators for cardiopulmonary bypass. There was a similar increase in terminal (C5 to C9) activation with all oxygenators (p less than 0.001), ranging from 281% (117% to 444%) to 453% (225% to 680%) after 60 minutes (median and 95% confidence intervals). C3 activation was not observed with a hollow fiber membrane and a soft shell bubble oxygenator. On the other hand, a capillary membrane, a sheet membrane, a nonporous membrane, and a hard shell bubble oxygenator all induced a similar increase in C3 activation (p less than 0.01), ranging from 107% (23% to 346%) to 272% (88% to 395%) after 60 minutes. The differences in C3 activation could not be explained by the blood contact materials or any other single factor known to induce activation, which suggests that overall complement activation during cardiopulmonary bypass is a multifactorial effect. The tubing set per se induced only minor C3 activation but contributed to the overall formation of terminal complement complex. The study further indicates that an arterial line blood filter prevents activated neutrophils from being reinfused to the patient and should be used regardless of type of oxygenator.

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Year:  1989        PMID: 2709867

Source DB:  PubMed          Journal:  J Thorac Cardiovasc Surg        ISSN: 0022-5223            Impact factor:   5.209


  3 in total

1.  Complement activation and bioincompatibility. The terminal complement complex for evaluation and surface modification with heparin for improvement of biomaterials.

Authors:  T E Mollnes; V Videm; J Riesenfeld; P Garred; J L Svennevig; E Fosse; K Hogasen; M Harboe
Journal:  Clin Exp Immunol       Date:  1991-10       Impact factor: 4.330

2.  Activation of complement during apheresis.

Authors:  G Hetland; T E Mollnes; P Garred
Journal:  Clin Exp Immunol       Date:  1991-06       Impact factor: 4.330

3.  Tubing loops as a model for cardiopulmonary bypass circuits: both the biomaterial and the blood-gas phase interfaces induce complement activation in an in vitro model.

Authors:  J Gong; R Larsson; K N Ekdahl; T E Mollnes; U Nilsson; B Nilsson
Journal:  J Clin Immunol       Date:  1996-07       Impact factor: 8.317

  3 in total

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