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July 13, 2015Frontiers in Physiology54 citationsOpen Access

Serum PINP, PIIINP, galectin-3, and ST2 as surrogates of myocardial fibrosis and echocardiographic left venticular diastolic filling properties

ELE. Samuli LepojärviOPOlli-Pekka PiiraEPEija Pääkkö

Key Result

Serum galectin-3 was significantly higher in the lowest post-LGE T1 relaxation time tertile (p=0.002), reflecting myocardial fibrosis, and along with ST2 and PIIINP, with impaired diastolic function.

Study Design

Type

Observational (n=63)

Structured PICO

Do serum biomarkers (PINP, PIIINP, gal-3, ST2) correlate with myocardial fibrosis and LV diastolic filling properties in patients with stable CAD?

P
Population
63 consecutive patients with angiographically documented stable CAD, normal sinus rhythm, and preserved LVEF, without a history of prior myocardial infarction.
I
Intervention
Measurement of serum biomarkers (PINP, PIIINP, galectin-3, ST2), LGE CMR T1 mapping, and tissue Doppler echocardiography
O
Outcome
Correlation between serum biomarkers (PINP, PIIINP, gal-3, ST2) and myocardial fibrosis (LGE CMR T1 relaxation time) and LV diastolic filling properties (E/e')surrogate

In patients with stable CAD, elevated serum galectin-3 reflects myocardial fibrosis assessed by LGE CMR, and gal-3, ST2, and PIIINP are elevated in those with impaired LV diastolic function.

Limitations

  • relatively small sample size
  • Measurement of relaxation time T1 by the LGE method may also have some limitations in terms of reliable quantification of diffuse myocardial fibrosis

Abstract

OBJECTIVES AND BACKGROUND: Serum biomarkers have been proposed to reflect fibrosis of several human tissues, but their specific role in the detection of myocardial fibrosis has not been well-established. We studied the association between N-terminal propeptide of type I and III procollagen (PINP, PIIINP, respectively), galectin-3 (gal-3), soluble ST2 (ST2), and myocardial fibrosis measured by late gadolinium enhanced cardiac magnetic resonance imaging (LGE CMR) and their relation to left ventricular diastolic filling properties measured by tissue Doppler echocardiography (E/e') in patients with stable coronary artery disease (CAD). METHODS AND RESULTS: We determined the PINP, PIIINP, gal-3, and ST2 serum levels and performed LGE CMR and echocardiography on 63 patients with stable CAD without a history of prior myocardial infarction. Myocardial late gadolinium enhancement T1 relaxation time was defined as a specific marker of myocardial fibrosis. ST2, PINP, and PIIINP did not have a significant correlation with the post-LGE T1 relaxation time tertiles (NS for all), but the lowest post-LGE T1 relaxation time tertile had significantly higher gal-3 values than the other two tertiles (p = 0.002 and 0.002) and higher E/é-values (p = 0.009) compared to the highest T1 relaxation time tertile. ST2 (p = 0.025 and 0.029), gal-3 (p = 0.003 and < 0.001) and PIIINP (p = 0.001 and 0.007) levels were also significantly higher in the highest E/é tertile, compared to the other two tertiles. CONCLUSIONS: Elevated serum levels of gal-3 reflect the degree of myocardial fibrosis assessed by LGE CMR. Gal-3, ST2, and PIIINP are also elevated in patients with impaired LV diastolic function, suggesting that these biomarkers are useful surrogates of structural and functional abnormality of the myocardium.

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Cite This Study

Lepojärvi et al. (2015) conducted an observational in stable coronary artery disease (CAD) (n=63). Serum biomarkers (PINP, PIIINP, galectin-3, ST2) was evaluated on Association of serum biomarkers with myocardial fibrosis (LGE CMR T1 relaxation time) and LV diastolic filling properties (E/e'). Serum galectin-3 was significantly higher in the lowest post-LGE T1 relaxation time tertile (p=0.002), reflecting myocardial fibrosis, and along with ST2 and PIIINP, with impaired diastolic function.

synapsesocial.com/papers/6a07b44e44ff8ad339f69abehttps://doi.org/10.3389/fphys.2015.00200
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Also Consider

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