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Monitoring and dose adjustment of regional citrate anticoagulation for continuous renal replacement therapy

Journal
Current opinion in critical care (Q1)
Published
19 September 2026
Study design
Unclassified
Evidence level
Level 5, Expert Opinion (CEBM 5)
Authors
Lenar Yessayan, Balazs Szamosfalvi, Ashita Tolwani
PMID
42758964
DOI
10.1097/MCC.0000000000001433

Why clinicians should know about it

  • Picked for Nephrology (paper of the day, 22 September 2026): Regional citrate anticoagulation for CRRT review

Abstract

PURPOSE OF REVIEW: Regional citrate anticoagulation (RCA) is the preferred anticoagulation strategy for many patients receiving continuous renal replacement therapy (CRRT). Safe implementation requires a coordinated prescription integrating citrate delivery, citrate removal within the extracorporeal circuit, individualized calcium replacement, CRRT fluid composition, and structured biochemical monitoring. This review summarizes practical approaches to RCA prescription, monitoring, and dose adjustment, emphasizing recent advances in citrate kinetics, calcium homeostasis, impaired citrate metabolism, metabolic complications, and systems-based safety. RECENT FINDINGS: Randomized trials and meta-analyses continue to demonstrate that RCA prolongs circuit life and reduces bleeding compared with systemic heparin anticoagulation, although a mortality benefit has not been demonstrated. Recent studies have refined understanding of citrate dose, systemic citrate load, first-pass citrate extraction, individualized calcium replacement based on anticipated effluent calcium losses, and recognition of impaired citrate metabolism. They also support baseline ionized calcium assessment before CRRT initiation, integration of lactate trends into assessment of citrate metabolism, individualized CRRT fluid selection, and distinguishing true citrate accumulation from other metabolic effects of RCA. SUMMARY: RCA is most effectively managed as an integrated CRRT prescription in which citrate delivery and removal, individualized calcium replacement, CRRT fluid composition, and operational parameters are coordinated to optimize circuit anticoagulation while maintaining electrolyte and acid-base homeostasis. Prescription adjustment should focus on four recurring clinical scenarios: inadequate circuit anticoagulation, negative calcium balance, excessive bicarbonate generation from citrate metabolism, and impaired citrate metabolism. Standardized protocols, structured monitoring, staff training, and workflow integration remain central to safe RCA implementation.

Abstract as published, via PubMed.

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For healthcare professionals. The summary is generated by AI from the published abstract, and the evidence level is assigned automatically from the study design on the Oxford CEBM hierarchy. Neither is medical advice. Read the full paper before changing practice.