| Literature DB >> 17888151 |
Yves Denizot1, Alexandre Leguyader, Elisabeth Cornu, Marc Laskar, Isabelle Orsel, Christelle Vincent, Nathalie Nathan.
Abstract
BACKGROUND: This study was conducted to follow plasma concentrations of sFlt-1 and sKDR, two soluble forms of the vascular endothelial growth factor (VEGF) receptor in patients undergoing coronary artery bypass graft (CABG) surgery with extracorporeal circulation (ECC).Entities:
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Year: 2007 PMID: 17888151 PMCID: PMC2034558 DOI: 10.1186/1749-8090-2-38
Source DB: PubMed Journal: J Cardiothorac Surg ISSN: 1749-8090 Impact factor: 1.637
Figure 1Plasma sFlt1 and sKDR levels during and after cardiopulmonary bypass graft surgery. A: Plasma sFlt-1 values are expressed in pg per mg protein. T0: before vascular cannulation and after opening the chest; T1: during extracorporeal circulation (ECC); T2: at the end of ECC before cross clamp release; T3: after cross clamp release; T4: the 6th post-operative hour; T5: the 24th post-operative hour. Mean ± SEM of 15 patients. *p < 0.001 as compared with T0 (Mann-Whitney U-test). B: Plasma sKDR levels are expressed in pg/mg protein. Same blood sampling time than in A. Mean ± SEM of 15 patients. *p < 0.001 as compared with T0 (Mann-Whitney U-test). No statistical differences were observed (Mann-Whitney U-test). C: Plasma sFlt-1 values at the beginning of ECC. T0: before vascular cannulation and after opening the chest; T1': before cross clamp; T2': after cross clamp. Mean ± SEM of 10 patients. *p = 0.0002 as compared with T0 (Mann-Whitney U-test).
Figure 2RT-PCR analysis of sFlt-1 transcripts and mFlt-1 on blood mononuclear cells before and during ECC. A: PCR experiments were carried out to amplify a 175 bp fragment of the human sFlt-1 receptor. GAPDH amplification (a 439 bp fragment) was performed to highlight the integrity of blood mononuclear cell mRNA. PCR products were analysed on a 1.2% agarose gel. Sizes of PCR products and DNA ladder are indicated by arrows. One representative experiment out of three is shown. B: Blood samples were collected before and during ECC. Forward scatter (FS) and side scatter (SS) were used to identify platelets and leukocytes (A). CD45 expression was used to separate lymphocytes, monocytes and granulocytes (B). Flow cytometry revealed no significant effect of ECC on mFlt-1 expression on platelets (C), lymphocytes (D), monocytes (E) and granulmocytes (F). The solid line represents blood cells before ECC staining with Flt-1-PE antibodies. The shaded area represents blood cells during ECC staining with Flt-1-PE antibodies. One experiment representative of 3 is shown.
Figure 3Effect of ECC-derived sFlt-1 on HUVEC proliferation. HUVECs (2 × 103 cells) were cultured alone or in the presence of 10 ng VEGF, 10 μl of plasma collected at T2 during ECC and/or 0.25 μg rabbit anti-soluble Flt-1. A: Cell proliferation (in sixplicates) was measured by a colorimetric method. One representative experiment out of 3 is shown. B: Cell number (in quadruplicate) was determined by direct cell counts. One representative experiment out of 2 is shown. Statistical differences were made using the Mann-Whitney U-test.