2005Circulation JournalOpen access

Serum Heart-Type Fatty Acid-Binding Protein Concentration Positively Correlates With the Length of Aortic Dissection

Hiroshi Hazui, Nobuyuki Negoro, Masayoshi Nishimoto, Hideyuki Muraoka, Motonobu Murai, Hitoshi Takeshita, Yasuo Ohishi, Hitoshi Fukumoto, Hiroshi Morita, Toshiaki Hanafusa

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Abstract

BACKGROUND: Patients with aortic dissection (AD) often demonstrate positive heart-type fatty acid-binding protein (H-FABP), but its significance is unclear. METHODS AND RESULTS: In 63 of 64 consecutive AD patients, the serum H-FABP concentration was measured and the H-FABP positive rate calculated (cutoff value: 6.2 ng/ml) for each of following factors: (1) with or without dissection of the ascending aorta; and (2) a thrombosed false lumen; (3) length score; (4) presence of shock; (5) malperfusion of limbs; (6) ST elevation and/or depression on electrocardiogram; and (7) renal dysfunction. In total 36 AD patients had a positive H-FABP test. Statistically significant differences in the H-FABP positive rate were observed between those with and without ascending AD (76.7% vs 39.4%, p = 0.003), and in the length score (p < 0.001). Multivariate logistic regression test demonstrated that the most significant factor was the length score (odds ratio: 2.239 (95% confidence interval: 1.119-4.481), p = 0.023). Moreover, a significant correlation was observed between length score and absolute H-FABP value (r = 0.420, p = 0.001). CONCLUSIONS: In patients with AD, an increased serum H-FABP concentration is caused by the protein being released not only from the cardiac muscle but also from skeletal muscle, or possibly the aortic wall. Physicians using H-FABP for detection of myocardial injury need to be aware that patients with a long or ascending AD will show an elevation of H-FABP.

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BACKGROUND: Patients with aortic dissection (AD) often demonstrate positive heart-type fatty acid-binding protein (H-FABP), but its significance is unclear. METHODS AND RESULTS: In 63 of 64 consecutive AD patients, the serum H-FABP concentration was measured and the H-FABP positive rate calculated (cutoff value: 6.2 ng/ml) for each of following factors: (1) with or without dissection of the ascending aorta; and (2) a thrombosed false lumen; (3) length score; (4) presence of shock; (5) malperfusion of limbs; (6) ST elevation and/or depression on electrocardiogram; and (7) renal dysfunction. In total 36 AD patients had a positive H-FABP test. Statistically significant differences in the H-FABP positive rate were observed between those with and without ascending AD (76.7% vs 39.4%, p = 0.003), and in the length score (p < 0.001). Multivariate logistic regression test demonstrated that the most significant factor was the length score (odds ratio: 2.239 (95% confidence interval: 1.119-4.481), p = 0.023). Moreover, a significant correlation was observed between length score and absolute H-FABP value (r = 0.420, p = 0.001). CONCLUSIONS: In patients with AD, an increased serum H-FABP concentration is caused by the protein being released not only from the cardiac muscle but also from skeletal muscle, or possibly the aortic wall. Physicians using H-FABP for detection of myocardial injury need to be aware that patients with a long or ascending AD will show an elevation of H-FABP.

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Available abstract

BACKGROUND: Patients with aortic dissection (AD) often demonstrate positive heart-type fatty acid-binding protein (H-FABP), but its significance is unclear. METHODS AND RESULTS: In 63 of 64 consecutive AD patients, the serum H-FABP concentration was measured and the H-FABP positive rate calculated (cutoff value: 6.2 ng/ml) for each of following factors: (1) with or without dissection of the ascending aorta; and (2) a thrombosed false lumen; (3) length score; (4) presence of shock; (5) malperfusion of limbs; (6) ST elevation and/or depression on electrocardiogram; and (7) renal dysfunction. In total 36 AD patients had a positive H-FABP test. Statistically significant differences in the H-FABP positive rate were observed between those with and without ascending AD (76.7% vs 39.4%, p = 0.003), and in the length score (p < 0.001). Multivariate logistic regression test demonstrated that the most significant factor was the length score (odds ratio: 2.239 (95% confidence interval: 1.119-4.481), p = 0.023). Moreover, a significant correlation was observed between length score and absolute H-FABP value (r = 0.420, p = 0.001). CONCLUSIONS: In patients with AD, an increased serum H-FABP concentration is caused by the protein being released not only from the cardiac muscle but also from skeletal muscle, or possibly the aortic wall. Physicians using H-FABP for detection of myocardial injury need to be aware that patients with a long or ascending AD will show an elevation of H-FABP.

Key concepts: Heart-type fatty acid binding protein, Cardiology, Internal medicine, Medicine, Fatty acid-binding protein, Aortic dissection, Ascending aorta, Odds ratio

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