Optimized calcium supplementation approach in post-dilution CVVHDF using regional citrate anticoagulation

Author:

Bi Xiao1ORCID,Zhang Qi1,Zhuang Feng1,Lu Wei1,Ding Feng1

Affiliation:

1. Division of Nephrology & Critical Care Nephrology Unit, Shanghai Ninth People’s Hospital, Shanghai JiaoTong University, School of Medicine, Shanghai, China

Abstract

Background: Regional citrate anticoagulation has been recommended as first choice for anticoagulation of continuous renal replacement therapy. Precise calcium supplementation is important for the safety of regional citrate anticoagulation. In this study we aimed to provide an optimized calcium supplementation approach for regional citrate anticoagulation in post-dilution continuous venous-venous hemodiafiltration. Methods: Twenty-seven patients receiving post-dilution continuous venous-venous hemodiafiltration anticoagulated by citrate were included in this study. The ionized calcium levels were monitored and maintained in the targeted range. After linear regression analysis of the clearance of non-protein bound calcium and calculating the ratio of the non-protein bound calcium concentration to total calcium concentration, we concluded the mathematical model for calcium supplementation. Results: Positive correlations were found between the clearance of non-protein bound calcium and both dialysate flow rates (r = 0.647, p < 0.001) and ultrafiltration plus substitution fluid flow rates (r = 0.525, p = 0.005). The ratio of the non-protein bound calcium concentration to total calcium concentration values at the pre-filter point after infusion of citrate were constant about 0.83. Based on the clearance and the calcium ratio, the amount of extracorporeal calcium removal can be estimated with a simplified equation. Conclusions: We provided an optimized calcium supplementation approach for post-dilution continuous venous-venous hemodiafiltration anticoagulated by citrate which may help to estimate the amount of extracorporeal circuit removal of calcium with regard to different dosages of regional citrate anticoagulation.

Funder

National Natural Science Foundation of China

Shanghai Ninth People’s Hospital Clinical Research Program

Science & Technology Innovation fund of Shanghai Ninth People’s Hospital

Science and Technology Commission of Shanghai Municipality

Publisher

SAGE Publications

Subject

Biomedical Engineering,Biomaterials,General Medicine,Medicine (miscellaneous),Bioengineering

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