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Published on: September 24, 2020
Chloride Reduction Therapy with Furosemide: Short-Term Effects in Children with Acute Respiratory Failure
Hisataka Nozawa1, Norihiko Tsuboi1, Tadashi Oi1
1Department of Critical Care and Anesthesia, Critical Care Medicine, National Center for Child Health and Development, Tokyo, Japan.
Insights
Furosemide expanded the sodium chloride difference (SCD) in pediatric acute respiratory failure patients, helping maintain normal pH levels despite persistent hypercapnia. This suggests furosemide
Area of Science:
- Pediatric Critical Care Medicine
- Renal Physiology
- Acid-Base Balance
Background:
- The Stewart approach explains that increased sodium chloride difference (SCD) can induce alkalosis.
- Furosemide is a diuretic that can alter electrolyte balance, including chloride levels.
Purpose of the Study:
- To investigate the effect of furosemide-induced chloride reduction on SCD in pediatric patients with acute respiratory failure.
- To determine if SCD expansion influences acid-base balance (pH) in this patient population.
Main Methods:
- A case-control study involving pediatric patients intubated for acute respiratory failure.
- Case group received furosemide within 24 hours; control group did not receive furosemide within 48 hours.
- Primary outcomes measured: SCD, PaCO2, and pH over 48 hours; multiple regression analysis used.
Main Results:
- SCD significantly increased in the furosemide group compared to the control group at 48 hours (p=0.005).
- Despite persistent hypercapnia in the furosemide group, pH remained unchanged and within the normal range in both groups (p=0.089).
- Both SCD and PaCO2 were independently associated with pH (p<0.001).
Conclusions:
- Furosemide-induced SCD expansion may help maintain normal pH in pediatric patients with acute respiratory failure and concurrent metabolic acidosis.
- This intervention could be a useful strategy for managing acid-base disturbances in critically ill children.
- Further research is warranted to confirm these findings and optimize therapeutic approaches.
Abstract:
From the perspective of the Stewart approach, it is known that expansion of the sodium chloride ion difference (SCD) induces alkalosis. We investigated the role of SCD expansion by furosemide-induced chloride reduction in pediatric patients with acute respiratory failure. We included patients admitted to our pediatric intensive care unit intubated for acute respiratory failure without underlying diseases, and excluded patients receiving extracorporeal circulation therapy (extracorporeal membrane oxygenation and/or renal replacement therapy). We classified eligible patients into the following two groups: case-those intubated who received furosemide within 24 hours, and control-those intubated who did not receive furosemide within 48 hours. Primary outcomes included SCD, partial pressure of carbon dioxide (PaCO 2 ), and pH results from arterial blood gas samples obtained over 48 hours following intubation. Multiple regression analysis was also performed to evaluate the effects of SCD and PaCO 2 changes on pH. Twenty-six patients were included of which 13 patients were assigned to each of the two groups. A total of 215 gas samples were analyzed. SCD (median [mEq/L] [interquartile range]) 48 hours after intubation significantly increased in the case group compared with the control group (37 [33-38] vs. 31 [30-34]; p = 0.005). Although hypercapnia persisted in the case group, the pH (median [interquartile range]) remained unchanged in both groups (7.454 [7.420-7.467] vs. 7.425 [7.421-7.436]; p = 0.089). SCD and PaCO 2 were independently associated with pH ( p < 0.001 for each regression coefficient). As a result, we provide evidence that SCD expansion with furosemide may be useful in maintaining pH within the normal range in pediatric patients with acute respiratory failure complicated by concurrent metabolic acidosis.
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