Nakamura Shota, Yoshimura Michihiro, Nakayama Masafumi, Ito Teruhiko, Mizuno Yuji, Harada Eisaku, Sakamoto Tomohiro, Saito Yoshihiko, Nakao Kazuwa, Yasue Hirofumi, Ogawa Hisao
Department of Cardiovascular Medicine, Graduate School of Medical Sciences, Kumamoto, Japan.
Circulation. 2004 Sep 28;110(13):1787-93. doi: 10.1161/01.CIR.0000143072.36782.51. Epub 2004 Sep 13.
Aldosterone is produced not only in the adrenal gland but also in the extra-adrenal tissues, including failing human heart. This study examined the production of dehydroepiandrosterone (DHEA) in human heart and elucidated the possible physiological significance. Method and Results- Using left ventricular tissues obtained at autopsy, reverse transcription-polymerase chain reaction followed by Southern blot analysis revealed the gene expressions of CYP17. By measuring plasma aldosterone and DHEA levels at the coronary sinuses and aortic roots during cardiac catheterization, we found that DHEA but not aldosterone was secreted from control subjects (P<0.0001 and P=0.74, respectively), whereas aldosterone but not DHEA was secreted from patients with heart failure (P=0.0017 and P=0.67, respectively). To examine the significance of DHEA, we measured myocyte cell sizes and the gene expression of B-type natriuretic peptide (BNP), using a neonatal rat cardiocyte culture system. We found that DHEA (10(-8) mol/L) significantly inhibited the increase in myocyte cell sizes and BNP mRNA levels upregulated by endothelin-1 (P=0.031 and P<0.0001, respectively).
CYP17 gene expression and production of DHEA were demonstrated in human control heart. Also, we found that cardiac production of DHEA was suppressed in failing heart. We postulated that DHEA and/or its metabolites exert a cardioprotective action through antihypertrophic effects.
醛固酮不仅在肾上腺产生,也在肾上腺外组织产生,包括衰竭的人类心脏。本研究检测了人类心脏中脱氢表雄酮(DHEA)的产生,并阐明了其可能的生理意义。方法与结果——利用尸检获取的左心室组织,通过逆转录聚合酶链反应及Southern印迹分析揭示了CYP17的基因表达。通过在心脏导管插入术期间测量冠状窦和主动脉根部的血浆醛固酮和DHEA水平,我们发现对照组分泌DHEA而非醛固酮(分别为P<0.0001和P = 0.74),而心力衰竭患者分泌醛固酮而非DHEA(分别为P = 0.0017和P = 0.67)。为了检测DHEA的意义,我们使用新生大鼠心肌细胞培养系统测量了心肌细胞大小和B型利钠肽(BNP)的基因表达。我们发现DHEA(10^(-8)mol/L)显著抑制了内皮素-1上调的心肌细胞大小增加和BNP mRNA水平(分别为P = 0.031和P<0.0001)。
在人类对照心脏中证实了CYP17基因表达和DHEA的产生。此外,我们发现衰竭心脏中DHEA的心脏产生受到抑制。我们推测DHEA和/或其代谢产物通过抗肥厚作用发挥心脏保护作用。