Zoophysiology, Department of Bioscience, Aarhus University, 8000 Aarhus C, Denmark.
Comp Biochem Physiol A Mol Integr Physiol. 2013 May;165(1):46-53. doi: 10.1016/j.cbpa.2013.01.022. Epub 2013 Feb 4.
To investigate the contribution of gastric and intestinal processes to the postprandial rise in metabolism in pythons (Python regius), we measured oxygen consumption after ligation of the pyloric sphincter to prevent the chyme from entering the intestine. Pyloric blockade reduced the postprandial rise in metabolism during the first 18h after ingestion of mice amounting to 18% of the snake's body mass by 60%. In another series of the experiments, we showed that infusion of amino acids directly into the stomach or the intestine elicited similar metabolic responses. This indicates a lower gastric contribution to the SDA response than previously reported. To include an assessment of the gastric contribution to the postprandial cardiovascular response, we also measured blood and heart rate. While heart rate increased during digestion in snakes with pyloric blockade, there was no rise in the double-blocked heart rates compared to fasting controls. Thus, the non-adrenergic-non-cholinergic factor that stimulates heart rate during digestion does not stem from the stomach. Finally, there was no growth of the visceral organs in response to digestion when chyme was prevented from reaching the intestine.
为了研究在蟒蛇(Python regius)中胃和肠道过程对餐后代谢升高的贡献,我们测量了幽门括约肌结扎后氧耗量,以防止食糜进入肠道。幽门阻断减少了 18 小时内进食小鼠后代谢的餐后升高,相当于蛇体重的 60%。在另一系列实验中,我们表明将氨基酸直接注入胃或肠道会引起类似的代谢反应。这表明与之前报道相比,胃对 SDA 反应的贡献较低。为了包括对餐后心血管反应中胃贡献的评估,我们还测量了血液和心率。虽然在幽门阻断的蛇中消化过程中心率增加,但与空腹对照组相比,双重阻断的心率没有升高。因此,刺激消化过程中心率的非肾上腺素能-非胆碱能因子并非来自于胃。最后,当食糜被阻止进入肠道时,内脏器官没有因消化而生长。