| Literature DB >> 25024880 |
Geneviève Du Pont-Thibodeau1, Karen Harrington1, Jacques Lacroix1.
Abstract
Anemia and red blood cell (RBC) transfusion occur frequently in hospitalized patients with cardiac disease. In this narrative review, we report the epidemiology of anemia and RBC transfusion in hospitalized adults and children (excluding premature neonates) with cardiac disease, and on the outcome of anemic and transfused cardiac patients. Both anemia and RBC transfusion are common in cardiac patients, and both are associated with mortality. RBC transfusion is the only way to rapidly treat severe anemia, but is not completely safe. In addition to hemoglobin (Hb) concentration, the determinant(s) that should drive a practitioner to prescribe a RBC transfusion to cardiac patients are currently unclear. In stable acyanotic cardiac patients, Hb level above 70 g/L in children and above 70 to 80 g/L in adults appears safe. In cyanotic children, Hb level above 90 g/L appears safe. The appropriate threshold Hb level for unstable cardiac patients and for children younger than 28 days is unknown. The optimal transfusion strategy in cardiac patients is not well characterized. The threshold at which the risk of anemia outweighs the risk of transfusion is not known. More studies are needed to determine when RBC transfusion is indicated in hospitalized patients with cardiac disease.Entities:
Keywords: Blood; Cardiac; Critical care; Erythrocyte; Hemoglobin; Intensive care; Practice; Risk factors; Surgery; Transfusion
Year: 2014 PMID: 25024880 PMCID: PMC4085735 DOI: 10.1186/2110-5820-4-16
Source DB: PubMed Journal: Ann Intensive Care ISSN: 2110-5820 Impact factor: 6.925
Figure 1Critical oxygen delivery (DO), cardiac failure, anemia and multiple organ dysfunction syndrome (MODS). X axis:systemic DO2; Y axis: global oxygen consumption (VO2). Critical DO2: level below which DO2 does not meet oxygen demand (O2 supply dependency). (1) In healthy subjects (dotted black and white line), as DO2 decreases, VO2 remains constant by compensatory mechanisms (increased cardiac output and cellular O2 extraction). (2) Cardiac failure limits compensatory increase in cardiac output (hatched blueline). (3) This limitation is worst in patients with anemia and heart failure (plain red line) because low hemoglobin decreases arterial oxygen content (CaO2). (4) Severe cardiac dysfunction may be associated with systemic inflammatory response syndrome (SIRS) and multiple organ dysfunction syndrome (MODS), both of which increase systemic VO2 and therefore critical DO2 (double black line).
Figure 2Cost-benefit analysis of red blood cell (RBC) transfusion. The background histogram is drawn from data published by Carson et al. [13] (with permission) illustrating the relationship between pre-operative anemia and surgical mortality in 1,958 Jehovah’s Witness patients. Dark blue bars: preoperative hemoglobin (Hb) versus odds ratio (OR) of death in cardiac patients (risk of death increases as Hb level falls). Light blue bars: pre-Hb versus OR of death in patients who were healthy before surgery. We draw on this histogram: (1) dotted horizontal red line: no risk of mortality attributable to RBC transfusion (OR = 1); (2) hatched horizontal red line: hypothetical higher risk of mortality attributable to RBC transfusion (OR = 5); (3) plain curved black line: pre-operative Hb versus odds ratio (OR) of death in cardiac patients. A RBC transfusion is probably more useful than harmful when Hb level is below the intersection between the black curve describing the risk of mortality associated with anemia and the red line describing the risk of mortality attributable to RBC transfusion. If RBC transfusions are perfectly safe (OR = 1), the dotted horizontal red line and the black curve cross together at a Hb level of about 110 g/L (black arrow). If the risk of mortality attributable to RBC transfusion is high (for example, OR = 5), the hatched horizontal red line and the black curve cross together at a Hb level of about 80 g/L (red arrow). Where the true curve lies for cardiac patients is unknown. The curved line would probably move to the right in severely ill cardiac patients, and to the left if cardiac dysfunction is milder. The actual risk of death attributable to RBC transfusions in different cardiac populations remains to be determined.
Anemia and outcomes in cardiac adults: observations studies
| Outcome | | (n) | (n) | (95% CI) |
| Meta-analyses | | | | |
| Mortalitya[ | ACS | 51,449 | 10 | aOR: 1.49 (1.24 to 1.79) |
| Mortalityb[ | ACS | 171,915 | 27 | aHR: 1.49 (1.23 to 1.81) |
| Studies not included in the meta-analyses | | | | |
| Mortality [ | New heart failure | 12,065 | 1 | aHR: 1.34 (1.24 to 1.46) |
| Mortality [ | PCI | 6,116 | 1 | aHR: 1.8 (1.3 to 2.3) |
| Mortality [ | PCI | 48,851 | 1 | aOR: 2.29 (1.79 to 2.92) |
| Mortality [ | Cardiac surgery | 13,843 | 1 | 12.5% versus 7.5%, |
| Mortality [ | CABG | 2,102 | 1 | aOR: 0.99 (0.98 to 1.0) |
| Mortality [ | ACS | 7,922 | 1 | aOR: 1.71 (1.34 to 2.17) |
| Meta-analyses on other outcomes | | | | |
| Heart failurea[ | ACS | 152,849 | 5 | OR: 1.96 (1.47 to 2.62) |
| Cardiogenic shocka[ | ACS | 129,136 | 4 | OR: 1.95 (1.04 to 2.64) |
| Reinfarctionb[ | ACS | 22,115 | 6 | RR: 1.25 (1.02 to 1.53) |
ACS: acute coronary syndrome; aHR: adjusted HR; aOR: adjusted odds ratio; CABG: coronary artery bypass graft; CI: confidence interval; HR: hazard ratio; OR: odds ratio; PCI: percutaneous coronary intervention; RR: relative risk.
This table reports data from two meta-analyses [9,14] and six observational studies [15-20] that were not included in these meta-analyses.
aOverall, the meta analysis conducted by Liu et al. [14] included 241,293 patients enrolled in 19 studies; the analysis on mortality (10 studies) disclosed a very important heterogeneity (I = 84%).
bOverall, the meta analysis conducted by Lawler et al. [9] included 233,144 patients. The analyses on mortality and reinfarction included 27 and 10 studies respectively; an important heterogeneity was found in both instances (I = 98.2% and 48.4% respectively).
Red blood cell (RBC) transfusions and outcomes in cardiac patients: observational studies
| | | |||
|---|---|---|---|---|
| Outcome: mortality in adults | | | | |
| Mortality, Alexander, 2008 [ | ACS | 44,242 | OR: 3.2 (2.9 to 3.6) | |
| | ACS and Hct ≤ 24% | | aOR: 0.68 (0.45 to 1.02) | |
| | ACS and Hct = 24 to 27% | | aOR: 1.01 (0.79 to 1.30) | |
| | ACS and Hct = 27 to 30% | | aOR: 1.18 (0.92 to 1.50) | |
| | ACS and Hct > 30% | | aOR: 3.47 (2.30 to 5.23) | |
| Mortality, Aronson, 2008 [ | AMI | 2,358 | aHR: 0.13 (0.03 to 0.65)d,e | 0.013 |
| | | | aHR: 2.2 (1.5 to 3.3)d,f | < 0.0001 |
| Mortality, Jani, 2007 [ | AMI | 4,623 | aOR: 2.02 (1.47 to 2.79) | < 0.0001 |
| | | | RR: 4.83 (3.81 to 6.12)d | |
| Mortality, Jolicœur, 2009 [ | AMI | 5,188 | RR: 6.38 (4.88 to 8.34) | |
| | | 5,532 | aHR: 2.16 (1.20 to 3.88) | < 0.0001 |
| | | 5,188 | RR: 6.38 (4.88 to 8.34)d | |
| Mortality, Koch, 2006 [ | CABG | 5,814 | OR: 1.77 (1.67 to 1.87) | < 0.0001 |
| Mortality, Murphy, 2007 [ | Cardiac surgery (UK) | 8,518 | HR: 6.69 (3.66 to 15.1) | < 0.05 |
| Mortality, Nikolsky, 2009 [ | AMI | 2,060 | HR: 4.71 (1.97 to 11.36) | |
| | | | RR: 2.92 (1.62 to 5.24)d | |
| Mortality, Pattakos, 2012 [ | Cardiac surgery | 644 | 95% versus 89% | 0.007 |
| Mortality, Rao, 2004 [ | ACS | 24,112 | aHR: 3.94 (3.26 to 4.75) | < 0.05 |
| | | | RR: 2.60 (2.22 to 3.03)d | < 0.05 |
| Mortality, Shehata, 2012 [ | CABG | 2,102 | OR: 0.44 (0.32 to 14.1) | NS |
| Mortality, Shishehbor, 2009 [ | AMI | 3,575 | aHR: 3.89 (2.66 to 5.68) | < 0.001 |
| | | | RR: 1.30 (0.90 to 1.88)d | < 0.001 |
| Mortality, Singla, 2007 [ | AMI | 370 | RR: 2.36 (1.49 to 3.76)d | |
| Mortality, Wu, 2001, [ | AMI | 78,974 | RR: 2.51 (2.42 to 2.61)d,g | < 0.05 |
| Mortality, Yang, 2005 [ | AMI | 85,111 | aOR: 1.67 (1.48 to 1.88) | < 0.05 |
| | | | RR: 3.03 (2.85 to 3.21)d | < 0.05 |
| Outcomes: myocardial infarction or ischemic eventsh in adults | | | | |
| AMI, Jani, 2007 [ | AMI | 4,623 | RR: 1.19 (0.82 to 1.74)d | |
| AMI, Jolicœur, 2009 [ | AMI | 5,188 | RR: 3.05 (1.85 to 5.04)d | |
| IEh, Murphy, 2007 [ | Cardiac surgery (UK) | 8,518 | aOR: 3.35 (2.68 to 4.35)c | < 0.05 |
| AMI, Nikolsky, 2009 [ | AMI | 2,060 | RR: 3.28 (1.44 to 7.49)d | |
| AMI, Pattakos, 2012 [ | Cardiac surgery | 644 | 2.8% versus 0.31% | < 0.01 |
| AMI + death, Rao, 2004 [ | ACS | 2,401 | HR: 3.08 (2.84 to 3.35)d | < 0.05 |
| AMI, Shishehbor, 2009 [ | ACS | 3,575 | aHR : 3.44 | < 0.001 |
| AMI + death, Singla, 2007 [ | AMI | 370 | aOR: 2.57 (1.41 to 4.69) | < 0.001 |
| | | | RR: 2.10 (0.83 to 5.30)d | |
| AMI, Yang, 2005 [ | AMI | 85,111 | aOR: 0.95 (0.83 to 1.09)d | < 0.05 |
| LMV (days), 2011 [ | Cardiac surgery | 270 | HR: 0.71 (0.54 to 0.92) | 0.009 |
| LMV (days), 2013 [ | Cardiac surgery | 335 | HR: 2.6 (2.0 to 3.4) | < 0.001 |
| PICU LOS (days), 2013 [ | Cardiac surgery | 335 | LOS: 8 ± 0.9 versus 3.5 ± 2 | < 0.001 |
| Hospital LOS, 2011 [ | Cardiac surgery | 802 | aHR: 0.65 (0.49 to 0.87) | < 0.001 |
| Wound infection, 2010 [ | Cardiac surgery | 216 | aOR: 7.87 (1.63 to 37.92) | < 0.001 |
ACS: acute coronary syndrome; aHR: adjusted HR; AMI: acute myocardial infarction; aOR: adjusted OR; CABG: coronary artery bypass graft; card surg: cardiac surgery; CI: confidence interval; Hct: hematocrit; HR: hazard ratio; IE: ischemic events; LMV: length of MV; LOS: length of stay; MI: myocardial infarction; MV: mechanical ventilation; OR: odds ratio; PICU: pediatric intensive care unit; RBC: red blood cell; NS: not significant; RCT: randomized controlled trial; UK: United Kingdom.
aStudies on the relationship between the length of storage of RBC units and outcomes of transfused cardiac patients are excluded from this table.
bYear of publication.
cTransfused patients versus no RBC transfusion or restricted RBC transfusion strategy.
dChatterjee et al. [51] completed a systematic review that included the studies marked byd in this table, plus a small RCT conducted by Cooper et al. [52]. Overall, the risk ratio of death in transfused patients versus controls was 2.91 (95% confidence interval (CI): 2.46 to 3.44), but there was a very significant heterogeneity (I = 92%).
ePre-transfusion hemoglobin concentration ≤ 80 g/L.
fPre-transfusion hemoglobin concentration > 80 g/L.
gThe study by Wu et al. [46] enrolled patients ≥ 65 years of age with AMI. RBC transfusion was associated with a reduction in 30-day mortality if hematocrit < 24% (aOR = 0.22; 95% CI: 0.11 to 0.45) or between 30% and 33% (aOR = 0.69; 95% CI: 0.53 to 0.89), but the risk of mortality was not increased in patients with a hematocrit > 33% who received RBC transfusion.
hIschemic events: myocardial infarction, stroke, renal impairment, or failure.
Restrictive versus liberal red blood cell (RBC) transfusion strategy in cardiac patients: randomized clinical trials
| | | |||
|---|---|---|---|---|
| Adults | | | | |
| Bracey, 1999 [ | CABG | 428 | RR: 0.52 (0.13 to 2.04) | NS |
| Carson, 2011 [ | Hip surgeryc | 2,016 | ARR: 0.9 (−1.5 to +3.4) | NS |
| Cooper, 2001 [ | Myocardial infarction | 46 | 8% versus 5% | 1.0 |
| Hajjar, 2012 [ | Cardiac surgery | 502 | 6% versus 5% | 0.93 |
| Hébert, 2001 [ | ICU cardiac patients | 357 | 22.5% versus 22.7% | 1.00 |
| Johnson, 1992 [ | CABG | 38 | No differenced | NS |
| Shehata, 2012 [ | Cardiac surgery | 50 | 16% versus 4% | NS |
| Pediatric cardiac surgery | | | | |
| Cholette, 2011 [ | Cyanotic | 60 | 1 death | NS |
| de Gast-Bakker, 2013 [ | Non-cyanotic | 107 | No death | NS |
| Willems, 2010 [ | Non-cyanotic | 125 | 12.7% versus 6.5% | 0.36 |
ARR: absolute risk reduction; CABG: coronary artery bypass graft; CI: confidence interval; RBC: red blood cell; NS: not statistically significant.
aYear of publication.
bRestrictive versus liberal transfusion strategy.
cHip surgery in patients older than 50 years with atherosclerosis.
dNo significant difference in duration or degree of exercise was demonstrated between the two groups.