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May 6, 2026Pediatric Critical Care Medicine1 citations

Early Central Venous-to-Paco 2 Difference and Subsequent Lactate Clearance in Shock: Prospective Pediatric Cohort, 2021–2022

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RTRaíssa A. R. B. TeixeiraCMCaio C. MendonçaSMSayara S. G. Melocra

Key Points

  • To evaluate the correlation between early central venous-to-PaCO2 difference and lactate concentration in pediatric patients with shock.
  • Prospective observational study
  • Conducted in two medical-surgical PICUs
  • Included children under 18 with septic or cardiogenic shock
  • Collected central venous and arterial blood samples to measure PaCO2 differences and lactate levels
  • Fifty-four patients included, primarily septic shock cases
  • Higher PaCO2 difference associated with elevated Vasoactive-Inotropic Score and lower LVEF
  • PaCO2 difference correlated positively with lactate levels and negatively with lactate clearance
  • Cutoff of 7.5 mm Hg at 6 hours had 70% sensitivity and 76% specificity for predicting lactate clearance

Abstract

Objectives: To evaluate early central venous-to-Pa co 2 difference (∆P co 2 ) and its correlation with later lactate concentration in pediatric patients with shock. Design: Prospective observational study. Setting: Two medical-surgical PICUs in a tertiary-care university hospital. Patients: Children younger than 18 years old with septic or cardiogenic shock admitted to the PICUs (March 2021 to December 2022). Interventions: None. Measurements and Main Results: Demographic, clinical, and outcome data were collected from medical records. Arterial and central venous blood samples were collected simultaneously at PICU admission and 6, 24, and 48 hours after admission to determine ∆P co 2 , arterial lactate concentration, lactate clearance, and central venous oxygen-hemoglobin saturation (Scv o 2 ). Left ventricle ejection fraction (LVEF) was estimated by echocardiography. Fifty-four patients 1.1 to 203.1 months old (median, 25.2 mo old) were included: (43/54 79.6% had septic shock and 11/54 20.4% had cardiogenic shock). Patients were divided into two groups according to ∆P co 2 at 6 hours (24 ≤ 6 mm Hg and 30 > 6 mm Hg). The group with ∆P co 2 greater than 6 mm Hg, compared with the group less than or equal to 6 mm Hg, had a higher Vasoactive-Inotropic Score and Pediatric Logistic Organ Dysfunction score, and there was a higher proportion of patients with low LVEF, elevated lactate concentrations, reduced lactate clearance, and Scv o 2 less than 70%. ∆P co 2 positively correlated with lactate concentrations and negatively correlated with lactate clearance and Scv o 2 . The ∆P co 2 cutoff of 7.5 mm Hg at 6 hours had sensitivity of 0.70, specificity of 0.76, positive predictive value of 0.87, and negative predictive value of 0.54 for predicting lactate clearance less than 10% at 24 hours (area under the receiver operating characteristic curve, 0.81 95% CI, 0.69–0.91). There were no differences in clinical outcomes between the groups. Conclusions: In pediatric shock, ∆P co 2 measured 6 hours after presentation is correlated with subsequent lactate clearance at 24 hours and may serve as an early resuscitation and severity stratification metric.

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Cite This Study

Teixeira et al. (2026) studied this question.

synapsesocial.com/papers/69faa30204f884e66b5338dchttps://doi.org/10.1097/pcc.0000000000003946
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