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Effect of red blood cell transfusion on oxygen consumption in the anemic pediatric patient
Mary Jo C Grant1, Sue E Huether, Madolin K Witte
1Pediatric Critical Care, Primary Children's Medical Center, Salt Lake City, UT 84113, USA. pcmgrant@ihc.com
Insights
Packed red blood cell transfusions significantly increase oxygen consumption (Vo(2)) in pediatric patients with isovolemic anemia. This suggests their bodies were previously oxygen-deprived and adapted to conserve oxygen.
Area of Science:
- Pediatric Hematology-Oncology
- Cardiopulmonary Physiology
Background:
- Pediatric patients with isovolemic anemia often present with reduced oxygen-carrying capacity.
- Assessing the physiological response to red blood cell transfusion is crucial for optimizing patient care.
Purpose of the Study:
- To evaluate the impact of packed red blood cell (PRBC) transfusion on oxygen consumption (Vo(2)) in pediatric patients with isovolemic anemia.
- To determine if Vo(2) is influenced by oxygen supply in this patient population.
Main Methods:
- Prospective, repeated-measures clinical study involving 17 pediatric outpatients.
- Oxygen consumption (Vo(2)) measured by indirect calorimetry before and after PRBC transfusion.
- Patients had a pre-transfusion hematocrit below 26%.
Main Results:
- A significant mean increase of 19% in Vo(2) was observed post-transfusion (p <.001).
- No correlation found between pre-transfusion hematocrit or PRBC volume and the change in Vo(2).
- Systolic blood pressure and respiratory rate remained unchanged; heart rate decreased in most patients.
Conclusions:
- PRBC transfusion leads to a significant increase in Vo(2) in pediatric patients with isovolemic anemia.
- Findings suggest that these patients operate with a relative oxygen deficit, adapting physiologically to maintain function.
- Increased Vo(2) post-transfusion indicates a dependence on improved oxygen delivery.
Objective:
To compare oxygen consumption (Vo(2)) measured by indirect calorimetry before and after a packed red blood cell (PRBC) transfusion in patients with isovolemic anemia.
Design:
Prospective, repeated-measures clinical study.
Setting:
Outpatient pediatric hematology-oncology clinic.
Patients:
A total of 17 pediatric hematology-oncology outpatients undergoing a PRBC transfusion for a hematocrit of <26%.
Interventions:
Vo(2) was measured by indirect calorimetry before and after a PRBC transfusion.
Measurements And Main Results:
Baseline hematocrit averaged 23% (15.5-25.7%), hemoglobin averaged 8.24 g/dL (5.2 g/dL-9.3 g/dL). Patients received an average of 10.3 mL/kg (2.8-17.5 mL/kg) of PRBC. After PRBC transfusion, all patients had an increase in Vo(2), with a mean increase of 35.09 mL x min(-1) x m(-2) (5-75 mL x min(-1) x m(-2)) or 19% (3.1-52%; p <.001). No significant correlation was found between the pretransfusion hematocrit or the volume of red blood cells administered and the change in Vo(2). No significant change was noted in systolic blood pressure or respiratory rate. There were 14 patients who had a decrease in heart rate after PRBC transfusion, and seven patients who demonstrated an increase in Vo(2) of <10% were compared with patients with a > or =10% change. No significant difference was found in age, height, weight, initial hematocrit, or volume of red blood cells transfused between these two groups.
Conclusions:
A significant increase in Vo(2) was noted after a red blood cell transfusion in pediatric patients with isovolemic anemia. These findings suggest that Vo(2) was dependent on the supply of oxygen in this subset of pediatric patients. Responding to increased oxygen delivery by increasing Vo(2) implies that these patients were functioning in a state of relative oxygen deficit and had made physiologic adaptive changes to function in this state.
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