• Title/Summary/Keyword: 뇌나트륨이뇨펩타이드

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Study on the Relationship between Pro-Brain Natriuretic Peptide and Routine Blood Test Factors at a General Hospital in Gyeonggi-do (경기도 일개 종합병원에서 Pro-Brain Natriuretic Peptide와 통상적 혈액검사 인자간의 상관성 조사)

  • Park, Dong Yeop;Kim, Sang-Su;Sung, Hyun Ho;Park, Chang-Eun
    • Korean Journal of Clinical Laboratory Science
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    • v.52 no.3
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    • pp.172-180
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    • 2020
  • This study investigated retrospectively the correlation between the results of the N-terminal pro-brain natriuretic peptide (NT-proBNP) and a routine blood test using a hospital information system. The NT-proBNP is involved in the pathophysiology of heart failure. The results show that the relationship between age and NT-proBNP was significant (P<0.01) with a positive correlation (r=0.163). The peptide concentration showed a negative correlation between the total protein (r=-0.250) and albumin (r=-0.270), and a negative correlation between the erythrocyte count and hemoglobin and hematocrit (P<0.01). NT-proBNP had a positive correlation with neutrophils (r=0.227) and a negative correlation with lymphocytes (r=-0.236), showing significant results (P<0.01). NT-proBNP and creatinine showed a positive correlation (r=0.594, P<0.01), and it was the most influential factor according to multiple regression analysis (B=0.53, t=7.65). P<0.01). The concentrations of NT-proBNP and uric acid showed a positive correlation (r=0.180, P<0.05). Lactate dehydrogenase was observed as a factor affecting the NT-proBNP (B=0.20, t=3.28, P<0.01). This explanatory power had an influence of 43%. Therefore, the accurate test and related factors of the NT-proBNP have significant clinical value.

B-type Natriuretic Peptide (BNP) as a Predictive Marker after Heart Transplantation (심장이식 후 예측인자로서 B-type Natriuretic Peptide (BNP)의 역할)

  • Shin, Hong-Ju;Kim, Hee-Jung;Choo, Suk-Jung;Kim, Jae-Joong;Song, Meong-Gun
    • Journal of Chest Surgery
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    • v.40 no.8
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    • pp.552-557
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    • 2007
  • Background: B-type natriuretic peptide (BNP) is a cardiac hormone that is primarily synthesized by the ventricular cardiac myocytes. Increased plasma BNP levels have been observed in patients suffering with congestive heart failure, ventricular hypertrophy and myocaridits and also during heart transplantation rejection. We investigated the serum BNP level as a predictive marker for rejection after heart transplantation. Material and Method: To test the usefulness of measuring the BNP level in cardiac transplant patients, consecutive blood samplings for BNP, right ventricular endomyocardial biopsies, hemodynamic measurements and transthoracic echocardiogram were all done in 10 such patients between January 2004 and August 2005 at the Department of Thoracic and Cardiovascular Surgery in Asan Medical Center. Two groups were identified with using the median value: the low BNP group (n=28, BNP: ${\le}290$ pg/mL) and the high BNP group (n=29, BNP: >290 pg/mL). We retrospectively analyzed rejection, the ejection fraction, tricuspid regurgitation, left ventricular hypertrophy, the pulmonary capillary wedge pressure and the right atrial pressure between the 2 groups. Result: There were no differences in age, gender, rejection, the ejection fraction, tricuspid regurgitation, left ventricular hypertrophy and the right atrial pressure between the 2 groups (p>0.05). However, a higher pulmonary capillary wedge pressure and a higher mean pulmonary atrial pressure were observed in the high BNP group (p<0.05). Further, BNP has linear correlation with the pulmonary capillary wedge pressure (r=0.590, p<0.001). Using the cut-off value of 620 pg/mL, the BNP predicted a high PCWP (>12 mmHg) with a sensitivity of 83.3% and a specificity of 91.1% (AUC: $0.900{\pm}0.045$, p<0.001). Conclusion: The BNP level after heart transplantation does not show any significant correlation with rejection, yet it might be a predictive marker of ventricular diastolic dysfunction.