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February 26, 2026BMC Pulmonary Medicine0 citationsOpen Access

Reactive thrombocytosis in hospitalized pneumonia reflects intense inflammation and confers context-dependent mortality risk

CLCheng LiuPeking UniversityLHLili HeZhejiang Sci-Tech UniversityYGYuanhao GuoPeking University

Key Points

  • This research examines how reactive thrombocytosis relates to inflammation and mortality in pneumonia patients.
  • Analyzed data from 2754 patients hospitalized for pneumonia
  • Used Cox regression and multivariate logistic regression to analyze mortality
  • Employed multivariate linear regression to assess length of hospital stay
  • Compared platelet counts across different groups (<90, ≥400, 90-399 × 10⁹/L)
  • Patients with reactive thrombocytosis had longer hospital stays (13 vs. 10 days; p < 0.001)
  • Higher levels of inflammatory markers (CRP, PCT, WBC) in thrombocytosis patients
  • No significant difference in mortality rates between groups (3.4% vs 4.4%)
  • Thrombocytosis showed context-dependent mortality risk, higher in non-septic and lower in septic patients

Abstract

Beyond hemostasis, platelets’ immune and inflammatory role is recognized and thrombocytosis is generally regarded as a marker of the inflammatory response. However, the immune functions of platelets remain beneath the surface, and previous studies have reported conflicting findings regarding the significance of thrombocytosis in infection-related diseases. Can reactive thrombocytosis be viewed as a “higher-is-worse or higher-is-better” predictor of clinical outcome? We analyzed 2754 patients discharged from the respiratory and infectious-disease wards between 1 January 2021 and 11 June 2025, and patients from the MIMIC-IV 3.1 database were used as validation cohorts, grouped by peak platelet counts (< 90, ≥ 400, 90–399 × 10⁹/L). Cox regression and multivariate logistic regression were performed to analyze the relationship between platelet count and in-hospital mortality. Multivariate linear regression was used to analyze the relationship between platelet count and length of hospital stay (LOS). Patients with reactive thrombocytosis had longer hospital stays (13 vs. 10 days; p < 0.001) and higher inflammatory markers than those with normal platelet counts CRP (90.2 vs. 28.6 mg/L; p < 0.001), PCT (0.195 vs. 0.092 ng/mL; p < 0.001), WBC (12.6 vs. 8.4 × 10⁹/L; p < 0.001). Despite these differences, mortality (3.4% vs. 4.4%) did not differ, nor did the rates of bloodstream, fungal, or polymicrobial infections. Clustering analyses confirmed comparable overall microbial spectra between the two groups. The impact of thrombocytosis on mortality (HR, 0.52; 95% CI, 0.27–0.99; p = 0.047) is context-dependent: it trended toward higher mortality in non-septic patients (OR, 1.42; 95% CI, 0.64–2.86, p = 0.357) but toward lower mortality in those with sepsis (OR, 0.33; 95% CI, 0.05–1.51, p = 0.18). The same opposing pattern and the interaction of sepsis and thrombocytosis re-emerged (OR, 1.70; 95% CI, 0.95–2.92, p = 0.063 vs. OR, 0.58; 95% CI, 0.34–0.96, p = 0.04) in MIMIC-IV data. Thrombocytopenia is an independent risk factor for mortality (HR, 2.08; 95% CI, 1.48–2.93; p < 0.001) and has good combined predictive ability. Thrombocytosis trended toward higher mortality in non-septic patients yet toward lower mortality in those with sepsis.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/699fe28895ddcd3a253e6532https://doi.org/10.1186/s12890-026-04206-1
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