Attenuated right ventricular energetics evaluated using C-11-acetate PET in patients with pulmonary hypertension

作者:Yoshinaga Keiichiro*; Ohira Hiroshi; Tsujino Ichizo; Oyama Manabe Noriko; Mielniczuk Lisa; Beanlands Rob S B; Katoh Chietsugu; Kasai Katsuhiko; Manabe Osamu; Sato Takahiro; Fujii Satoshi; Ito Yoichi M; Tomiyama Yuuki; Nishimura Masaharu; Tamaki Nagara
来源:European Journal of Nuclear Medicine and Molecular Imaging, 2014, 41(6): 1240-1250.
DOI:10.1007/s00259-014-2736-4

摘要

The right ventricle (RV) has a high capacity to adapt to pressure or volume overload before failing. However, the mechanisms of RV adaptation, in particular RV energetics, in patients with pulmonary hypertension (PH) are still not well understood. We aimed to evaluate RV energetics including RV oxidative metabolism, power and efficiency to adapt to increasing pressure overload in patients with PH using C-11-acetate PET. %26lt;br%26gt;In this prospective study, 27 patients with WHO functional class II/III PH (mean pulmonary arterial pressure 39.8 +/- 13.5 mmHg) and 9 healthy individuals underwent C-11-acetate PET. C-11-acetate PET was used to simultaneously measure oxidative metabolism (k(mono)) for the left ventricle (LV) and RV. LV and RV efficiency were also calculated. %26lt;br%26gt;The RV ejection fraction in PH patients was lower than in controls (p = 0.0054). There was no statistically significant difference in LV k(mono) (p = 0.09). In contrast, PH patients showed higher RV k (mono) than did controls (0.050 +/- 0.009 min(-1) vs. 0.030 +/- 0.006 min(-1), p %26lt; 0.0001). PH patients exhibited significantly increased RV power (p %26lt; 0.001) and hence increased RV efficiency compared to controls (0.40 +/- 0.14 vs. 0.017 +/- 0.12 mmHg center dot mL center dot min/g, p = 0.001). %26lt;br%26gt;The RV oxidative metabolic rate was increased in patients with PH. Patients with WHO functional class II/III PH also had increased RV power and efficiency. These findings may indicate a myocardial energetics adaptation response to increasing pulmonary arterial pressure.

  • 出版日期2014-6