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Cystatin C, creatinine, estimated glomerular filtration, and long-term mortality in stroke patients
Tanja Hojs Fabjan1, Meta Penko, Radovan Hojs
1Dept. of Neurology, University Clinical Centre Maribor , Maribor , Slovenia .
Insights
Serum cystatin C, a marker of kidney function, better predicts long-term mortality in ischemic stroke patients than creatinine. Higher cystatin C levels indicate increased risk, independent of other factors.
Area of Science:
- Nephrology
- Neurology
- Clinical Biochemistry
Background:
- Renal dysfunction is a significant predictor of mortality post-ischemic stroke.
- Cystatin C shows promise as a more sensitive renal function marker than creatinine and estimated glomerular filtration rate (eGFR).
Purpose of the Study:
- To evaluate the association of serum cystatin C and creatinine-based eGFR with long-term mortality in acute ischemic stroke patients.
- To compare the predictive performance of cystatin C versus creatinine for mortality risk in this cohort.
Main Methods:
- Observational cohort study of 390 Caucasian patients with acute ischemic stroke.
- Serum creatinine and cystatin C measured at admission; eGFR calculated using CKD-EPI creatinine and CKD-EPI creatinine/cystatin equations.
- Patients categorized into quintiles based on biomarker levels; prospectively followed for up to 56 months for mortality.
Main Results:
- Nearly linear increase in mortality and hazard ratios with increasing quintiles of serum cystatin C and cystatin C-based eGFR.
- Multivariate analysis confirmed cystatin C's independent association with long-term mortality.
- Creatinine and creatinine-based eGFR showed J-shaped associations but lacked independent predictive value after adjustment.
Conclusions:
- Serum cystatin C is a superior independent predictor of long-term mortality in ischemic stroke patients compared to serum creatinine and eGFR.
- Cystatin C offers enhanced risk stratification for renal dysfunction in post-stroke care.
Abstract:
Renal dysfunction is associated with mortality in patients after ischemic stroke. Cystatin C is a potentially superior marker of renal function compared to creatinine and estimated glomerular filtration rate (GFR). In our observational cohort study, 390 Caucasian patients suffered from acute ischemic stroke (mean age 70.9 years; 183 women and 207 men) were included and prospectively followed up to maximal 56 months. Serum creatinine and cystatin C were measured at admission to the hospital; GFR was estimated according to CKD-EPI creatinine and CKD-EPI creatinine/cystatin equations. According to values of serum creatinine, estimated GFR and serum cystatin C patients were divided into quintiles. In the follow-up period, 191 (49%) patients died. For serum cystatin C and estimated GFR based on creatinine and cystatin C, the mortality and the hazard ratios for long-term mortality increased from the first to the fifth quintile nearly linearly. The associations of serum creatinine and estimated GFR categories based on creatinine with long-term mortality were J-shaped. As compared with lowest quintile of serum cystatin C, the fifth quintile was associated with long-term mortality significantly also after multivariate adjustment (age, gender, initial stroke severity, known risk factors for stroke mortality). In contrast, in adjusted analysis serum creatinine and estimated GFR (CKD-EPI creatinine and CKD-EPI creatinine/cystatin) were not associated with long-term mortality. In summary, serum cystatin C was independently and better associated with the risk of long-term mortality in patients suffering from ischemic stroke than were creatinine and estimated GFR using both CKD-EPI equations.
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