Independent prognostic value of the blood urea nitrogen-to-albumin ratio beyond the creatinine-to-albumin ratio among eICU patients with recorded sepsis and acute respiratory failure: a retrospective cohort study

Patients recorded as having both sepsis and acute respiratory failure (ARF) constitute a high-risk critically ill population, although historical database-based sepsis classifications may not correspond directly to contemporary Sepsis-3 criteria. The blood urea nitrogen-to-albumin ratio (BAR) and the creatinine-to-albumin ratio (CAR) are readily available laboratory-derived indices that integrate renal dysfunction, catabolic stress, and nutritional status. Whether BAR and CAR provide independent or overlapping prognostic information in this operationally defined population remains unclear. We conducted a retrospective cohort study using the eICU Collaborative Research Database. Adult patients with eICU-derived admission flags for both sepsis and acute respiratory failure were included; Sepsis-3 criteria were not retrospectively reconstructed. BAR and CAR were calculated from the first available measurements within 24 h of ICU admission. The primary outcome was in-hospital mortality. Multivariable logistic regression was used to evaluate independent associations, including mutual adjustment between the two ratios and residual analyses. Restricted cubic splines examined dose-response relationships. Incremental predictive performance was quantified by AUC, NRI, and IDI. Subgroup and sensitivity analyses were performed to assess robustness. A total of 6,316 patients were included, of whom 1,742 (27.6%) died in hospital. Both BAR and CAR were independently associated with in-hospital mortality in separate models. After mutual adjustment, BAR retained a statistically significant association, whereas the association for CAR was substantially attenuated and no longer significant. Both ratios similarly improved discrimination beyond a clinical base model (ΔAUC ≈ 0.028–0.029), and the combined model achieved the highest overall performance. Findings were consistent across prespecified subgroups and multiple sensitivity analyses. Among patients identified using eICU-derived admission flags for sepsis and acute respiratory failure, BAR demonstrated a more robust independent prognostic association with in-hospital mortality than CAR after mutual adjustment. Both ratios may provide readily available prognostic information within this operationally defined cohort. External validation in contemporary cohorts explicitly defined according to Sepsis-3 is required before these findings can be generalised to current sepsis populations or applied in clinical practice.

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Journal
BMC Pulmonary Medicine
Published
2026-10-09
DOI
https://doi.org/10.1186/s12890-026-04757-3
Primary Topic
Sepsis Diagnosis and Treatment
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article
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article

Independent prognostic value of the blood urea nitrogen-to-albumin ratio beyond the creatinine-to-albumin ratio among eICU patients with recorded sepsis and acute respiratory failure: a retrospective cohort study

Lu Chen, A-Mei Tang, Chi Chen, Tao Zheng
BMC Pulmonary Medicine
Sepsis Diagnosis and Treatment
article

Independent prognostic value of the blood urea nitrogen-to-albumin ratio beyond the creatinine-to-albumin ratio among eICU patients with recorded sepsis and acute respiratory failure: a retrospective cohort study

Lu Chen, A-Mei Tang, Chi Chen, Tao Zheng
article en

Abstract

Patients recorded as having both sepsis and acute respiratory failure (ARF) constitute a high-risk critically ill population, although historical database-based sepsis classifications may not correspond directly to contemporary Sepsis-3 criteria. The blood urea nitrogen-to-albumin ratio (BAR) and the creatinine-to-albumin ratio (CAR) are readily available laboratory-derived indices that integrate renal dysfunction, catabolic stress, and nutritional status. Whether BAR and CAR provide independent or overlapping prognostic information in this operationally defined population remains unclear. We conducted a retrospective cohort study using the eICU Collaborative Research Database. Adult patients with eICU-derived admission flags for both sepsis and acute respiratory failure were included; Sepsis-3 criteria were not retrospectively reconstructed. BAR and CAR were calculated from the first available measurements within 24 h of ICU admission. The primary outcome was in-hospital mortality. Multivariable logistic regression was used to evaluate independent associations, including mutual adjustment between the two ratios and residual analyses. Restricted cubic splines examined dose-response relationships. Incremental predictive performance was quantified by AUC, NRI, and IDI. Subgroup and sensitivity analyses were performed to assess robustness. A total of 6,316 patients were included, of whom 1,742 (27.6%) died in hospital. Both BAR and CAR were independently associated with in-hospital mortality in separate models. After mutual adjustment, BAR retained a statistically significant association, whereas the association for CAR was substantially attenuated and no longer significant. Both ratios similarly improved discrimination beyond a clinical base model (ΔAUC ≈ 0.028–0.029), and the combined model achieved the highest overall performance. Findings were consistent across prespecified subgroups and multiple sensitivity analyses. Among patients identified using eICU-derived admission flags for sepsis and acute respiratory failure, BAR demonstrated a more robust independent prognostic association with in-hospital mortality than CAR after mutual adjustment. Both ratios may provide readily available prognostic information within this operationally defined cohort. External validation in contemporary cohorts explicitly defined according to Sepsis-3 is required before these findings can be generalised to current sepsis populations or applied in clinical practice.

BMC Pulmonary Medicine
Guiyang Medical University (CN), Affiliated Hospital of Guizhou Medical University (CN)
Openalex Percentile: Top 12%
Sepsis Diagnosis and Treatment
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