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January 1, 2009Internal Medicine81 citationsOpen Access

Plasma Brain Natriuretic Peptide Can be a Biological Marker to Distinguish Cardioembolic Stroke from Other Stroke Types in Acute Ischemic Stroke

KSKensaku ShibazakiKKKazumi KimuraYIYasuyuki Iguchi

Key Result

Plasma BNP levels were significantly higher in cardioembolic stroke patients (409.6 pg/mL) compared to other stroke subtypes, with levels >140.0 pg/mL strongly suggesting a cardioembolic etiology.

Study Design

Type

Observational (n=200)

Multicenter

No

Structured PICO

Does plasma BNP level on admission distinguish cardioembolic stroke from other stroke subtypes in patients with acute ischemic stroke?

P
Population
200 patients (mean age 71.4 years, 38% female) with acute ischemic stroke within 24 hours of onset, evaluated for plasma BNP levels on admission.
E
Exposure
Measurement of plasma brain natriuretic peptide (BNP) on admission.
C
Comparator
Comparison across TOAST classification stroke subtypes (large-vessel disease, small-vessel disease, and other stroke).
O
Outcome
Optimal cut-off concentration, sensitivity, and specificity of plasma BNP levels to distinguish cardioembolic stroke from other stroke subtypes.surrogate

Plasma BNP levels >140 pg/mL on admission can help distinguish cardioembolic stroke from other ischemic stroke subtypes with 80.5% sensitivity and specificity.

Main Result

p-value: p=<0.001

Limitations

  • Most of the embolic sources in cardioembolic stroke were chronic or paroxysmal atrial fibrillation, and the number of other cardiac diseases was small.
  • 24.6% of patients in the 'other stroke' subtype showed a plasma BNP of over 140.0 pg/mL, likely due to having multiple potential causes of stroke.

Abstract

BACKGROUND: Plasma brain natriuretic peptide (BNP) is used as a marker of congestive heart failure. Moreover, plasma BNP levels are increased in patients with acute ischemic stroke, in particular, cardioembolic stroke. We investigated whether the plasma BNP level can also be used as a biological marker to differentiate specific stroke subtype, in particular cardioembolic stroke from the other ischemic stroke subtypes. METHODS: Consecutive patients (total 200; 124 males, 76 females; mean age, 71.4 years) with acute ischemic stroke within 24 hours of onset were prospectively enrolled. We measured plasma BNP on admission. Patients were divided into four groups according to the TOAST classification: large-vessel disease (LVD), cardioembolism (CE), small-vessel disease (SVD), and other stroke. Correlation between plasma BNP level and stroke subtype was then examined. RESULTS: Cardioembolism (41%) was the most frequent stroke subtype, followed by other stroke (34%), SVD (16%), and LVD (9%). Age, female, atrial fibrillation, NIHSS score > or = 7 on admission and mRS score > or = 3 at discharge were significantly higher in CE than in the other stroke subtypes. The mean plasma BNP level of the CE group was significantly higher than that of the other 3 subtypes (409.6 pg/mL for CE, 94.0 pg/mL for LVD, 37.4 pg/mL for SVD, and 156.9 pg/mL for others, p<0.001). The optimal cut-off concentration, sensitivity, and specificity of plasma BNP levels to distinguish CE from other stroke subtypes were 140.0 pg/mL, 80.5% and 80.5%, respectively. CONCLUSION: Plasma BNP level is significantly higher in CE patients than in other stroke subtypes, and thus physicians should strongly consider CE when the plasma BNP level is over 140.0 pg/mL in patients with acute ischemic stroke.

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Cite This Study

Shibazaki et al. (2009) conducted an observational in Acute ischemic stroke (n=200). Cardioembolic stroke vs. Other ischemic stroke subtypes (large-vessel disease, small-vessel disease, and other stroke) was evaluated on Mean plasma BNP level (p=<0.001). Plasma BNP levels were significantly higher in cardioembolic stroke patients (409.6 pg/mL) compared to other stroke subtypes, with levels >140.0 pg/mL strongly suggesting a cardioembolic etiology.

synapsesocial.com/papers/6a623618b3ffb27a727dbc74https://doi.org/10.2169/internalmedicine.48.1475
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