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Minimizing transfusion requirements for children undergoing craniosynostosis repair: the CHoR protocol
Rafael A Vega1, Camila Lyon, Jeannette F Kierce
1Departments of Neurosurgery and.
Insights
A new protocol for craniosynostosis repair significantly reduced blood transfusions in pediatric patients. This involved preoperative erythropoietin, blood recycling, and a lower hemoglobin trigger, leading to shorter hospital stays.
Area of Science:
- Pediatric Surgery
- Hematology
- Anesthesiology
Background:
- Craniosynostosis repair in children often leads to significant blood loss and high transfusion rates.
- Blood transfusions carry documented risks, including infectious agent transmission and immune modulation.
Purpose of the Study:
- To present the Children's Hospital of Richmond (CHoR) protocol designed to decrease blood transfusion rates in infants undergoing primary craniosynostosis repair.
Main Methods:
- Retrospective chart review of pediatric patients from January 2003 to February 2012.
- Implementation of the CHoR protocol in November 2008, including preoperative erythropoietin and iron, intraoperative blood recycling, and a lower hemoglobin transfusion trigger (< 7 g/dl).
- Comparison of patients treated before (controls) and after (protocol) protocol implementation.
Main Results:
- The CHoR protocol group (32 patients) showed a significant reduction in transfusion rates (56% vs. 96% in controls, p < 0.001).
- Despite increased blood loss and surgery length, preoperative recombinant erythropoietin effectively raised hemoglobin levels (p < 0.001).
- The protocol group experienced a shorter mean hospital stay (2.6 vs. 3.4 days, p < 0.001).
Conclusions:
- The CHoR protocol, incorporating preoperative erythropoietin, blood recycling, and a lower transfusion trigger, significantly reduced transfusion utilization.
- A shorter length of hospital stay was observed in the protocol group.
- Further investigation is needed to determine if reduced transfusions correlate with better patient outcomes.
Object:
Children with craniosynostosis may require cranial vault remodeling to prevent or relieve elevated intracranial pressure and to correct the underlying craniofacial abnormalities. The procedure is typically associated with significant blood loss and high transfusion rates. The risks associated with transfusions are well documented and include transmission of infectious agents, bacterial contamination, acute hemolytic reactions, transfusion-related lung injury, and transfusion-related immune modulation. This study presents the Children's Hospital of Richmond (CHoR) protocol, which was developed to reduce the rate of blood transfusion in infants undergoing primary craniosynostosis repair.
Methods:
A retrospective chart review of pediatric patients treated between January 2003 and Febuary 2012 was performed. The CHoR protocol was instituted in November 2008, with the following 3 components; 1) the use of preoperative erythropoietin and iron therapy, 2) the use of an intraoperative blood recycling device, and 3) acceptance of a lower level of hemoglobin as a trigger for transfusion (< 7 g/dl). Patients who underwent surgery prior to the protocol implementation served as controls.
Results:
A total of 60 children were included in the study, 32 of whom were treated with the CHoR protocol. The control (C) and protocol (P) groups were comparable with respect to patient age (7 vs 8.4 months, p = 0.145). Recombinant erythropoietin effectively raised the mean preoperative hemoglobin level in the P group (12 vs 9.7 g/dl, p < 0.001). Although adoption of more aggressive surgical vault remodeling in 2008 resulted in a higher estimated blood loss (212 vs 114.5 ml, p = 0.004) and length of surgery (4 vs 2.8 hours, p < 0.001), transfusion was performed in significantly fewer cases in the P group (56% vs 96%, p < 0.001). The mean length of stay in the hospital was shorter for the P group (2.6 vs 3.4 days, p < 0.001).
Conclusions:
A protocol that includes preoperative administration of recombinant erythropoietin, intraoperative autologous blood recycling, and accepting a lower transfusion trigger significantly decreased transfusion utilization (p < 0.001). A decreased length of stay (p < 0.001) was seen, although the authors did not investigate whether composite transfusion complication reductions led to better outcomes.
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