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Growth differentiation factor-15 is associated with cardiovascular outcomes in patients with coronary artery disease
Man Li1,2, Lei Duan2, Yu-Lun Cai1,2
1Medical School of Chinese PLA, Beijing, China.
Insights
Growth Differentiation Factor-15 (GDF-15) is a significant predictor of adverse outcomes in coronary artery disease (CAD) patients. Elevated GDF-15 levels independently associate with increased risks of major adverse cardiovascular events (MACEs) and all-cause mortality.
Area of Science:
- Cardiology
- Biomarkers
- Prognostics
Background:
- Growth Differentiation Factor-15 (GDF-15) is a known marker for inflammation and oxidative stress.
- GDF-15 is associated with poor prognosis in cardiovascular diseases.
Purpose of the Study:
- To investigate the prognostic value of GDF-15 in patients with coronary artery disease (CAD).
- To assess the association of GDF-15 with long-term major adverse cardiovascular events (MACEs) and all-cause death.
Main Methods:
- A cohort study of 3641 consecutive CAD patients.
- Prospective follow-up for up to 7.6 years for MACEs and all-cause death.
- Plasma GDF-15 levels were measured and analyzed in relation to clinical data and outcomes.
Main Results:
- After a median follow-up of 6.4 years, 21% experienced MACEs and 7.55% died.
- Patients with GDF-15 > 1800 ng/L showed significantly increased risks of MACEs and all-cause death.
- GDF-15 independently predicted MACEs (HR 1.74) and all-cause death (HR 2.04), significantly improving risk stratification models.
Conclusions:
- GDF-15 is associated with long-term MACEs and all-cause death in CAD patients.
- GDF-15 offers incremental prognostic value beyond traditional risk factors.
- GDF-15 can enhance risk prediction for adverse outcomes in coronary artery disease.
Background:
Growth differentiation factor-15 (GDF-15) is a marker of inflammation, oxidative stress and it is associated with adverse prognosis in cardiovascular disease. The aim of the present cohort study is to investigate the prognostic value of GDF-15 in patients with coronary artery disease (CAD) during long-term follow up.
Methods:
A total of 3641 consecutive patients with CAD were prospectively enrolled into the study and followed up for major adverse cardiovascular events (MACEs) and all-cause death up to 5.3-7.6 years. Plasma GDF-15 was measured and clinical data and long-term events were registered. The patients were subsequently divided into three groups by the levels of GDF-15 and the prognostic value of GDF-15 level with MACEs and all-cause death was evaluated.
Results:
After a median follow-up at 6.4 years later, 775 patients (event rate of 21%) had developed MACEs and 275 patients died (event rate of 7.55%). Kaplan-Meier analysis indicated that the patients with GDF-15 > 1800 ng/L were significantly associated with an increased risk of MACEs and all-cause death. Cox regression analysis indicated that GDF-15 > 1800 ng/L were independently associated with the composite of MACEs (HR 1.74; 95% CI 1.44-2.02; P < 0.001) and all-cause death (HR 2.04; 95% CI 1.57-2.61; P < 0.001). For MACEs, GDF-15 significantly improved the C-statistic (area under the curve, 0.583 [95% CI 0.559-0.606] to 0.628 [0.605-0.651]; P < 0.001), net reclassification index (0.578; P = 0.031), and integrated discrimination index (0.021; P = 0.027). For all-cause death, GDF-15 significantly improved the C-statistic (0.728 [95% CI 0.694-0.761] to 0.817 [0.781-0.846]; P < 0.001), net reclassification index (0.629; P = 0.001), and integrated discrimination index (0.035; P = 0.002).
Conclusions:
In the setting of CAD, GDF-15 is associated with long-term MACEs and all-cause death, and provides incremental prognostic value beyond traditional risks factors.
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