Sultan A M
Department of Medical Sciences, Faculty of Medicine and Medical Sciences, Umm Al-Qura University, Makkah, Saudi Arabia.
Mol Cell Biochem. 1997 Jun;171(1-2):59-64. doi: 10.1023/a:1006865627489.
In this study the effects of propionate, L-valine, L-isoleucine, and DL-methionine on the metabolism of D-3-hydroxybutyrate (D-3-HB) were investigated in the isolated perfused non-working rat heart. Propionate inhibited the utilization (the total removal of D-3-HB by the heart) but stimulated the oxidation of D-3-HB. The degree of D-3-HB inhibition was dependent on the concentrations of propionate and D-3-HB. Furthermore, increasing the concentration of DL-hydroxybutyrate (DL-3-HB) to 16 or 30 mM abolished the inhibitory effect of propionate (4 mM). Whereas increasing the perfusion pressure from 40-80 mmHg stimulated the utilization and the oxidation of D-3-HB; propionate (4 mM) severely inhibited the utilization of D-3-HB at 40 and 80 mmHg, when DL-3-HB was 5 mM. On the other hand insulin (2 mU .ml-1) stimulated the utilization and the oxidation of D-3-HB at perfusion pressure of 40 mmHg, but showed no effect at 80 mmHg. Insulin was unable to overcome the inhibitory effect of propionate. Propionate improved the oxidation but inhibited the utilization of D-3-HB, while L-valine and L-isoleucine showed no effects on the utilization and the oxidation of D-3-HB. DL-methionine increased the utilization of D-3-HB by 14% without noticeable effects on the oxidation of D-3-HB. None of these anaplerotic substrates were suitable to ameliorate the utilization of D-3-HB.
在本研究中,我们在离体灌注的非工作大鼠心脏中研究了丙酸盐、L-缬氨酸、L-异亮氨酸和DL-蛋氨酸对D-3-羟基丁酸(D-3-HB)代谢的影响。丙酸盐抑制了D-3-HB的利用(心脏对D-3-HB的总清除),但刺激了D-3-HB的氧化。D-3-HB的抑制程度取决于丙酸盐和D-3-HB的浓度。此外,将DL-羟基丁酸(DL-3-HB)的浓度增加到16或30 mM可消除丙酸盐(4 mM)的抑制作用。而将灌注压力从40-80 mmHg提高可刺激D-3-HB的利用和氧化;当DL-3-HB为5 mM时,丙酸盐(4 mM)在40和80 mmHg时严重抑制D-3-HB的利用。另一方面,胰岛素(2 mU·ml-1)在40 mmHg的灌注压力下刺激了D-3-HB的利用和氧化,但在80 mmHg时无作用。胰岛素无法克服丙酸盐的抑制作用。丙酸盐改善了D-3-HB的氧化但抑制了其利用,而L-缬氨酸和L-异亮氨酸对D-3-HB的利用和氧化无影响。DL-蛋氨酸使D-3-HB的利用增加了14%,而对D-3-HB的氧化无明显影响。这些回补底物均不适用于改善D-3-HB的利用。