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Clinical outcome after coronary surgery with heparin-coated extracorporeal circuits for cardiopulmonary bypass.

Authors :
Baufreton C
Le Besnerais P
Jansen P
Mazzucotelli JP
Wildevuur CRH
Loisance DY
Source :
Perfusion; Nov1996, Vol. 11 Issue 6, p437-443, 7p
Publication Year :
1996

Abstract

In this prospective randomized trial, we studied whether heparin-coated extracorporeal circuits (ECC), known to reduce complement activation, could improve the clinical outcome of 200 patients undergoing coronary artery surgery. Patients have been divided into two groups (heparin-coated ECC and uncoated ECC groups) which were similar in terms of age, gender, left ventricle function, preoperative aspirin use and consequent intraoperative aprotinin use, number of grafts, duration of aortic cross-clamping and cardiopulmonary bypass. Univariate analysis showed that heparin coating did not reduce significantly postoperative bleeding (640 +/- 311 versus 682 +/- 342 ml with uncoated ECC) nor the need for transfusion (19% of patients versus 25% with uncoated ECC). Adverse events, including all mortality and morbidity noticed during the five first postoperative days, occurred in 20 patients of the uncoated ECC group and in eight patients of the heparin-coated ECC group (p = 0.013). The most frequent complications were supraventricular arrhythmias that occurred in 13 patients of the uncoated ECC group and in four patients of the heparin-coated ECC group (p = 0.02). Multivariate analysis by stepwise logistic regression showed that only heparin coating of the ECC was shown as a significant predictive factor of adverse events reduction (p = 0.01; odds ratio = 0.34). These data suggest that heparin coating reduced postoperative complications in patients undergoing coronary artery surgery. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02676591
Volume :
11
Issue :
6
Database :
Complementary Index
Journal :
Perfusion
Publication Type :
Academic Journal
Accession number :
107314988
Full Text :
https://doi.org/10.1177/026765919601100603