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Citrate anticoagulation during continuous renal replacement therapy in pediatric critical care
T Keefe Davis1, Tara Neumayr, Kira Geile
11Division of Nephrology, Department of Pediatrics, Washington University School of Medicine, St. Louis, MO. 2Division of Critical Care Medicine, Department of Pediatrics, Washington University School of Medicine, St. Louis, MO. 3St. Louis Children's Hospital, St. Louis, MO.
Insights
Regional citrate anticoagulation is effective for pediatric patients undergoing continuous renal replacement therapy, offering circuit survival comparable to heparin with reduced bleeding risks. Further research is needed for standardized pediatric care.
Area of Science:
- Critical Care Medicine
- Pediatric Nephrology
- Pharmacology
Background:
- Continuous renal replacement therapy (CRRT) is a cornerstone of critical care for pediatric patients with renal failure.
- Anticoagulation is essential for CRRT to maintain circuit patency, with heparin being the traditional choice.
- Citrate offers a regional anticoagulation alternative, potentially reducing systemic complications.
Purpose of the Study:
- To elucidate the role and efficacy of citrate as a regional anticoagulant in pediatric CRRT.
- To provide pediatric intensivists with comprehensive insights into citrate anticoagulation protocols.
- To compare citrate anticoagulation with heparin in critically ill children.
Main Methods:
- Systematic review of English-language literature from PubMed, EMBASE, CINAHL, and SCOPUS.
- Inclusion of retrospective and prospective observational studies in pediatric populations.
- Inclusion of randomized controlled trials and systematic reviews in adult populations for comparative data.
Main Results:
- No prospective trials exist for pediatric regional citrate anticoagulation (RCA) versus systemic anticoagulation.
- Eleven pediatric studies (observational) show RCA is effective, with equivalent circuit survival and decreased bleeding versus heparin.
- Adult data from six RCTs and meta-analyses demonstrate reduced bleeding and equivalent circuit survival with RCA compared to heparin.
Conclusions:
- RCA is a viable and commonly employed anticoagulation strategy in pediatric critical care requiring CRRT.
- Understanding citrate's properties and clearance is crucial for avoiding complications.
- Further observational data and prospective multicenter trials are necessary for safe, standardized pediatric RCA protocols.
Objective:
To provide the pediatric intensivist an in-depth understanding of citrate as regional anticoagulant during continuous renal replacement therapy.
Data Sources And Data Selection:
We searched the PubMed.gov database using the initial key words: citrate anticoagulation [title] AND continuous; citrate [title] AND pediatric AND continuous; prospective pediatric renal replacement AND citrate; and regional citrate anticoagulation. Additional searchers were performed using EMBASE, CINAHL, and SCOPUS with similar keywords and limits. Further articles were gathered from bibliographic references of relevant studies and reviews. Only articles published in English were reviewed.
Data Extraction And Data Synthesis:
In the pediatric population, there are no prospective interventional or randomized studies comparing regional versus systemic anticoagulation. However, there are 11 (retrospective and prospective observational studies) in the pediatric population using citrate anticoagulation. These studies have shown that regional citrate anticoagulation in the pediatric population can be effective, provide equivalent circuit survival, and decrease bleeding compared with heparin anticoagulation. In the adult population, there are six prospective randomized controlled trials comparing the efficacy of regional citrate anticoagulation versus heparin. Two systematic reviews with meta-analysis of these six trials have been performed. The adult data on the use of regional citrate anticoagulation during continuous renal replacement therapy show a decreased risk of bleeding and at the least equivalent circuit survival as compared to heparin. Current pediatric and adult studies support regional citrate anticoagulation as an effective alternative to systemic heparin anticoagulation in most patient populations.
Conclusions:
Continuous renal replacement therapy is the most common modality of renal replacement in the critical care setting. Regional anticoagulation is an ideal option in a critically ill child after recent surgery or with coagulopathy. Therefore, regional citrate anticoagulation in the pediatric critical care population requiring renal replacement therapy is commonly employed. Complications of citrate anticoagulation can be avoided with a greater understanding of the properties and clearance of citrate. Continued reporting of observational data and the development of prospective multicenter trials using citrate anticoagulation are needed to ensure safe and standardized care in the pediatric population.
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