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Published on: October 2, 2020
Electrolyte Changes in Contemporary Hemodialysis: A Secondary Analysis of the Monitoring in Dialysis (MiD) Study
Simon Correa1,2, Katherine Mikovna Scovner1,2, James A Tumlin3
1Renal Division, Department of Medicine, Brigham and Women's Hospital, Boston, Massachusetts.
Insights
Contemporary hemodialysis (HD) shows significant post-dialytic electrolyte shifts. Many patients experience electrolyte abnormalities, highlighting the need for optimized dialysate prescriptions in HD care.
Area of Science:
- Nephrology
- Clinical Chemistry
Background:
- Limited contemporary data exists on electrolyte changes during and after hemodialysis (HD).
- The relationship between these electrolyte shifts and dialysate prescriptions is not well-established.
Purpose of the Study:
- To examine electrolyte changes immediately post-hemodialysis.
- To investigate the association between these changes and dialysate prescriptions.
Main Methods:
- Analysis of patient and HD session-level laboratory data (n=1,713) over six months.
- Mixed effects regression models used to assess pre- and post-HD electrolyte levels, accounting for pre-HD values and dialysate prescriptions.
- Exploration of dynamic electrolyte changes at 15 and 30 minutes post-HD in a subset of patients.
Main Results:
- Significant post-HD increases in serum bicarbonate, calcium, and albumin.
- Significant post-HD decreases in serum potassium, magnesium, and phosphorus.
- High incidence of hypokalemia (40%) and hypophosphatemia (67%) immediately post-HD.
Conclusions:
- The study quantifies post-dialytic electrolyte changes in modern HD.
- A high prevalence of post-HD electrolyte abnormalities was observed.
- Predictive nomograms relating electrolyte changes to dialysate prescriptions were developed for clinical use and future research.
Background:
There is a paucity of contemporary data examining electrolyte changes during and immediately after hemodialysis (HD), and their relationship with dialysate prescriptions. The present study examines these relationships.
Methods:
We analyzed patient- (n=66) and HD session-level pre- and post-dialysis laboratory data (n=1,713) over a six-month period from the Monitoring in Dialysis Study. We fit mixed effects regression models to analyze electrolyte, blood urea nitrogen, creatinine, and albumin levels immediately post-HD, accounting for pre-HD and dialysate prescriptions. In a subset of US patients (n=40), 15-minute post-HD and 30-minute post-HD values were available at one session. Predictive models were fit to estimate electrolyte levels immediately post-HD, accounting for pre-HD concentrations and dialysate prescriptions.
Results:
Serum bicarbonate, calcium, and albumin increased (mean increase 4.9±0.3 mEq/L, 0.7±0.1 mEq/L, and 0.4±0.03 g/dL, respectively), whereas potassium, magnesium, and phosphorus decreased immediately post-HD (mean -1.2±0.1 mEq/L, -0.3±0.03 mEq/L, and -3.0±0.2 mg/dL, respectively). Hypokalemia and hypophosphatemia were present in 40% of and 67% of immediate post-HD samples, respectively. Dynamic changes were observed in electrolyte concentrations at 15- and 30-minutes post-HD, compared to immediately post-HD.
Conclusion:
We describe the magnitude of post-dialytic changes in serum electrolytes with contemporary HD, reporting a high incidence of electrolyte abnormalities post-HD, and present predictive nomograms relating electrolyte changes immediately post-HD to dialysate prescriptions. Our results may be useful for clinical care and provide insights for future research on dialysate prescriptions.
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