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Unmasking delayed recovery in severe diabetic ketoacidosis: clinical and biochemical clues from early resuscitation

Source: PubMed Central Open Access, NCBI / U.S. National Library of Medicine

Annals of Pediatric Endocrinology & MetabolismLast synced 9/10/2026Status: syncedPMID: 42705656 pmidDOI: 10.6065/apem.2550324.162

Purpose This study aimed to explore how the rate of acidosis correction relates to initial clinical status, treatment needs, and short-term outcomes in severe diabetic ketoacidosis (DKA). Methods This retrospective study reviewed records of patients aged 1–18 with severe DKA admitted to a single tertiary center (January 2009–March 2023). Patients whose pH rose ≥0.05 within 6 hours were assigned to the early recovery group (ERG); the remainder were assigned to the delayed recovery group (DRG). Statistical analyses included group comparisons and regression models to assess clinical and biochemical factors. Results Fifty admissions met inclusion criteria (ERG n=39; DRG n=11). Compared with the ERG, DRG patients were older (median: 14.1 years vs. 11.8 years) and showed greater weight loss, more altered mentation, and more hyperosmolar presentations, though differences were not significant. Initial laboratory results in the DRG revealed lower pH and bicarbonate with higher blood urea nitrogen (BUN), creatinine, and C-reactive protein, indicating deeper hypovolemia and inflammation. Despite similar guideline-based fluids and insulin, the DRG gained less weight in 24 hours, suggesting underestimation of fluid deficit. Although the rate of pH improvement differed during the first 6 hours, pH values converged by 24 hours, and time to reach pH 7.30 did not differ significantly. Conclusions This study clarifies the natural course of acute severe DKA and highlights the importance of prec

Abstract

Purpose This study aimed to explore how the rate of acidosis correction relates to initial clinical status, treatment needs, and short-term outcomes in severe diabetic ketoacidosis (DKA). Methods This retrospective study reviewed records of patients aged 1–18 with severe DKA admitted to a single tertiary center (January 2009–March 2023). Patients whose pH rose ≥0.05 within 6 hours were assigned to the early recovery group (ERG); the remainder were assigned to the delayed recovery group (DRG). Statistical analyses included group comparisons and regression models to assess clinical and biochemical factors. Results Fifty admissions met inclusion criteria (ERG n=39; DRG n=11). Compared with the ERG, DRG patients were older (median: 14.1 years vs. 11.8 years) and showed greater weight loss, more altered mentation, and more hyperosmolar presentations, though differences were not significant. Initial laboratory results in the DRG revealed lower pH and bicarbonate with higher blood urea nitrogen (BUN), creatinine, and C-reactive protein, indicating deeper hypovolemia and inflammation. Despite similar guideline-based fluids and insulin, the DRG gained less weight in 24 hours, suggesting underestimation of fluid deficit. Although the rate of pH improvement differed during the first 6 hours, pH values converged by 24 hours, and time to reach pH 7.30 did not differ significantly. Conclusions This study clarifies the natural course of acute severe DKA and highlights the importance of precise evaluation of fluid deficits. In patients with elevated BUN, creatinine, and CRP levels, timely and appropriate fluid management strategies are essential to improve outcomes.

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