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Interleukin-6, C-Reactive Protein, and Recurrence After Stroke: A Time-Course Analysis of Individual-Participant Data
John J McCabe1,2,3, Cathal Walsh1,4, Sarah Gorey1,2,3
1Health Research Board Stroke Clinical Trials Network Ireland, Dublin (J.J.M., C.W., S.G., P.J.K.).
Insights
Measuring interleukin-6 (IL-6) after 24 hours post-stroke predicts cardiovascular events, unlike early measurements. High-sensitivity C-reactive protein (hsCRP) timing did not affect its association with stroke recurrence.
Area of Science:
- Biomarker analysis in cardiovascular disease
- Stroke research and epidemiology
- Inflammation and atherosclerosis
Background:
- Inflammation is a key driver of atherosclerosis.
- Current anti-inflammatory therapies lack proven benefit for post-stroke prevention.
- Interleukin-6 (IL-6) and high-sensitivity C-reactive protein (hsCRP) are linked to adverse cardiovascular events after stroke.
Purpose of the Study:
- To investigate the association between IL-6 and hsCRP levels and recurrent cardiovascular events after stroke.
- To determine the optimal timing for measuring IL-6 and hsCRP to predict outcomes.
- To inform patient selection for future anti-inflammatory therapy trials.
Main Methods:
- Individual-participant data from 11 studies (9798 patients) were analyzed.
- Time-course analysis examined IL-6 and hsCRP associations with recurrent major adverse cardiovascular events and stroke.
- Biomarker levels were stratified by acute (<24 hours) and postacute (≥24 hours) phases post-stroke.
Main Results:
- IL-6 levels were significantly higher in the acute phase (<24 hours) compared to the postacute phase (≥24 hours).
- Postacute IL-6 (≥24 hours) was associated with increased risk of recurrent major adverse cardiovascular events and stroke.
- Acute IL-6 measurements (<24 hours) did not show a significant association with these events.
- No time-dependent interaction was observed for hsCRP.
Conclusions:
- The timing of IL-6 measurement after stroke is critical for predicting recurrent cardiovascular events.
- Postacute IL-6 measurements are more informative than acute measurements for risk stratification.
- These findings support using IL-6 timing in future clinical trial designs for anti-inflammatory therapies in stroke survivors.
Background:
Inflammation promotes atherogenesis. Randomized controlled trials of anti-inflammatory therapies for prevention after stroke have not yet demonstrated clear benefit. IL-6 (interleukin-6) and hsCRP (high-sensitivity C-reactive protein) are independently associated with major adverse cardiovascular events poststroke and may guide patient selection in future randomized controlled trials. Optimal timing of hsCRP/IL-6 measurement poststroke is unknown, as early blood levels may be confounded by the inflammatory response to brain infarction.
Methods:
Using individual-participant data from a systematic review, we performed a time-course analysis to investigate the association between hsCRP/IL-6 and recurrent events stratified by timing of sampling. The prespecified coprimary end points after sample measurement were: (1) recurrent major adverse cardiovascular events (first major coronary event, recurrent stroke, or vascular death) and (2) recurrent stroke (ischemic, hemorrhagic, or unspecified). The poststroke dynamics of IL-6/hsCRP were analyzed by plotting their median (interquartile interval) concentrations within each tenth of the sampling timeframe. Acute/postacute phases were defined for each biomarker according to the shape of this relationship.
Results:
There were data for 9798 patients from 11 studies (19 891 person-years follow-up, 10 observational cohorts, and 1 randomized trial). Each marker was measured once. IL-6 was markedly elevated <24 hours poststroke compared with postacute levels (≥24 hours; 11.6 versus 3.02 pg/mL; P<0.001). HsCRP was elevated for 10 days. IL-6 was associated with recurrent major adverse cardiovascular events in the postacute phase (≥24 hours; risk ratio, 1.30 [CI, 1.19-1.41], per unit logeIL-6), but not in the acute phase (<24 hours; risk ratio, 1.10 [CI, 0.98-1.25]; Pinteraction=0.03). After adjustment for risk factors/medication, the association remained for postacute IL-6 when analyzed per logeunit (risk ratio, 1.16 [CI, 1.05-1.66]) and per quarter increase (risk ratio, 1.55 [CI, 1.19-2.02]; Q4 versus Q1), but not if measured acutely. Similar findings were observed for recurrent stroke. There was no evidence of time-dependent interaction with hsCRP.
Conclusions:
Timing of sample measurement after stroke modifies the association with recurrent major adverse cardiovascular events for IL-6 but not hsCRP. These data inform future randomized controlled trial designs incorporating biomarker-based selection of patients for anti-inflammatory therapies.
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