Preston E, Ma S, Haas N
Division of Biological Sciences, National Research Council of Canada, Ottawa, Ont.
Neuropharmacology. 1990 Mar;29(3):277-83. doi: 10.1016/0028-3908(90)90013-h.
The anti-obesity drug fenfluramine, promotes loss of weight by reducing food intake; however, there is controversy as to whether the drug can also elevate expenditure of energy. Resting consumption of oxygen (VO2) was measured in conscious rats to determine whether the injection of fenfluramine increased metabolic rate and whether prior fasting, or ambient temperature altered the response. Regardless of whether the rats were fed or had been fasted for 22 hr, in a thermoneutral environment (28 degrees C), the intraperitoneal injection of dl-fenfluramine (20 mg/kg) caused a raised oxygen consumption. This elevation was sustained to the end of the 60-min period of measurement after the injection, at which point the colonic temperature was found to be increased. This metabolic response to fenfluramine was largely attenuated when the drug was administered at 23 degrees C, and the colonic temperature of the rats was decreased by 60 min after the injection. At 4 degrees C, the injection of fenfluramine inhibited thermogenesis against cold, the oxygen consumption fell and the rats exhibited hypothermia. It was concluded that fenfluramine can increase the metabolic rate, but that this effect is not conditional on associated food intake, as has been reported. Rather, the ambient temperature governs whether stimulation or inhibition of thermogenesis will be evoked. These metabolic effects of fenfluramine explain, in part, its divergent effects on body temperature, reported previously.
抗肥胖药物芬氟拉明通过减少食物摄入量来促进体重减轻;然而,关于该药物是否还能提高能量消耗存在争议。在清醒的大鼠中测量静息耗氧量(VO2),以确定注射芬氟拉明是否会增加代谢率,以及预先禁食或环境温度是否会改变这种反应。无论大鼠是进食还是禁食22小时,在热中性环境(28摄氏度)中,腹腔注射dl-芬氟拉明(20毫克/千克)都会导致耗氧量增加。这种增加在注射后的60分钟测量期结束时仍持续存在,此时发现结肠温度升高。当在23摄氏度给药时,对芬氟拉明的这种代谢反应在很大程度上减弱,并且大鼠的结肠温度在注射后60分钟下降。在4摄氏度时,注射芬氟拉明抑制了对寒冷的产热作用,耗氧量下降,大鼠出现体温过低。得出的结论是,芬氟拉明可以提高代谢率,但这种作用并不像所报道的那样取决于相关的食物摄入量。相反,环境温度决定了是诱发产热的刺激还是抑制。芬氟拉明的这些代谢作用部分解释了其先前报道的对体温的不同影响。