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Dynamic changes of D-dimer and neutrophil-lymphocyte count ratio as prognostic biomarkers in COVID-19
Wenjing Ye1, Guoxi Chen2, Xiaopan Li3,4
1Department of Respiratory Medicine, Xinhua Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai, 200092, China.
Insights
Dynamic monitoring of D-Dimer and Neutrophil-Lymphocyte Count Ratio (NLR) is crucial for predicting COVID-19 patient outcomes. Elevated levels and upward trends in these markers indicate a higher risk of mortality and need for intubation.
Area of Science:
- Biomedical research
- Clinical diagnostics
- Infectious disease epidemiology
Background:
- COVID-19 outbreak led to significant hospitalizations and mortality.
- Acute respiratory distress syndrome is a common severe complication.
- Prognostic utility of D-Dimer and Neutrophil-Lymphocyte Count Ratio (NLR) in COVID-19 requires further evaluation.
Purpose of the Study:
- To evaluate the prognostic value of dynamic changes in D-Dimer and NLR for COVID-19 patients.
- To identify critical values for D-Dimer and NLR as indicators of mortality and intubation.
- To assess the correlation of these markers with clinical outcomes.
Main Methods:
- Retrospective study of 349 hospitalized COVID-19 patients.
- Analysis of dynamic changes in D-Dimer and NLR levels during hospitalization.
- Utilized ROC curves and Cox regression for prognostic assessment.
Main Results:
- Deceased patients showed statistically higher initial and peak D-Dimer and NLR levels compared to survivors.
- A significant upward trend of D-Dimer and NLR was observed in non-survivors.
- Peak D-Dimer and NLR demonstrated higher prognostic accuracy than initial values, with identified critical thresholds.
Conclusions:
- Dynamic observation of D-Dimer and NLR is valuable for COVID-19 prognosis.
- Rising trends or levels exceeding critical values for D-Dimer and NLR indicate increased risk of death.
- These markers are also significant predictors for the need for intubation in COVID-19 patients.
Background:
Since December 2019, the outbreak of COVID-19 caused a large number of hospital admissions in China. Many patients with COVID-19 have symptoms of acute respiratory distress syndrome, even are in danger of death. This is the first study to evaluate dynamic changes of D-Dimer and Neutrophil-Lymphocyte Count Ratio (NLR) as a prognostic utility in patients with COVID-19 for clinical use.
Methods:
In a retrospective study, we collected data from 349 hospitalized patients who diagnosed as the infection of the COVID-19 in Wuhan Pulmonary Hospital. We used ROC curves and Cox regression analysis to explore critical value (optimal cut-off point associated with Youden index) and prognostic role of dynamic changes of D-Dimer and NLR.
Results:
Three hundred forty-nine participants were enrolled in this study and the mortality rate of the patients with laboratory diagnosed COVID-19 was 14.9%. The initial and peak value of D-Dimer and NLR in deceased patients were higher statistically compared with survivors (P < 0.001). There was a more significant upward trend of D-Dimer and NLR during hospitalization in the deceased patients, initial D-Dimer and NLR were lower than the peak tests (MD) -25.23, 95% CI: - 31.81- -18.64, P < 0.001; (MD) -43.73, 95% CI:-59.28- -31.17, P < 0.001. The test showed a stronger correlation between hospitalization days, PCT and peak D-Dimer than initial D-Dimer. The areas under the ROC curves of peak D-Dimer and peak NLR tests were higher than the initial tests (0.94(95%CI: 0.90-0.98) vs. 0.80 (95% CI: 0.73-0.87); 0.93 (95%CI:0.90-0.96) vs. 0.86 (95%CI:0.82-0.91). The critical value of initial D-Dimer, peak D-Dimer, initial NLR and peak NLR was 0.73 mg/L, 3.78 mg/L,7.13 and 14.31 respectively. 35 (10.03%) patients were intubated. In the intubated patients, initial and peak D-Dimer and NLR were much higher than non-intubated patients (P < 0.001). The critical value of initial D-Dimer, peak D-Dimer, initial NLR and peak NLR in prognosticate of intubation was 0.73 mg/L, 12.75 mg/L,7.28 and 27.55. The multivariable Cox regression analysis showed that age (HR 1.04, 95% CI 1.00-1.07, P = 0.01), the peak D-Dimer (HR 1.03, 95% CI 1.01-1.04, P < 0.001) were prognostic factors for COVID-19 patients' death.
Conclusions:
To dynamically observe the ratio of D-Dimer and NLR was more valuable during the prognosis of COVID-19. The rising trend in D-Dimer and NLR, or the test results higher than the critical values may indicate a risk of death for participants with COVID-19.
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