Harmon J S, Eilertson C D, Sheridan M A, Plisetskaya E M
Department of Zoology, North Dakota State University, Fargo 58105.
Am J Physiol. 1991 Sep;261(3 Pt 2):R609-13. doi: 10.1152/ajpregu.1991.261.3.R609.
Rainbow trout, Oncorhynchus mykiss, were used to evaluate the effects of carbohydrate loading on plasma levels of pancreatic hormones and associated changes in metabolic indexes in a carnivorous fish. Glucose (3,000 mg/dl, 10 microliters/g body wt) was injected intraperitoneally into fish (mean wt 54 +/- 5 g) that were killed 0.5-24 h after administration. Glucose injection resulted in hyperglycemia with maximum glucose levels of 306 +/- 13 mg/dl observed 60 min after injection. Glucose administration also resulted in hyperlipidemia. Plasma fatty acids increased twofold in glucose-injected animals. Alterations in plasma metabolites reflected changes in energy stores. Although total lipid concentration was unaffected by glucose injection, lipolytic enzyme activity in the liver was enhanced. Biosynthetic capacity, as indicated by NADPH production from glucose-6-phosphate dehydrogenase, was decreased by glucose injection. Liver glycogen content was reduced in glucose-injected animals 1 h after injection. Glucose injection was attended by increases in the plasma levels of gene II somatostatin-25 (predominant form of pancreatic somatostatin in salmonids) and of glucagon. Insulin levels were initially suppressed after glucose injection. These results indicate that metabolic adjustments caused by glucose administration can be related to the regulatory action of pancreatic hormones. Furthermore, these results suggest that the somatostatin-secreting cells of the trout are sensitive to glucose and that somatostatin-suppressed insulin secretion contributes to the glucose intolerance of trout.
虹鳟(Oncorhynchus mykiss)被用于评估碳水化合物负荷对肉食性鱼类血浆中胰腺激素水平的影响以及代谢指标的相关变化。将葡萄糖(3000毫克/分升,10微升/克体重)腹腔注射到平均体重为54±5克的鱼体内,给药后0.5至24小时处死这些鱼。葡萄糖注射导致血糖升高,注射后60分钟观察到最大血糖水平为306±13毫克/分升。给予葡萄糖还导致血脂升高。注射葡萄糖的动物血浆脂肪酸增加了两倍。血浆代谢物的变化反映了能量储备的变化。虽然总脂质浓度不受葡萄糖注射的影响,但肝脏中的脂解酶活性增强。如葡萄糖-6-磷酸脱氢酶产生的NADPH所示,生物合成能力因葡萄糖注射而降低。注射葡萄糖的动物在注射后1小时肝脏糖原含量降低。葡萄糖注射伴随着基因II生长抑素-25(鲑科鱼类胰腺生长抑素的主要形式)和胰高血糖素血浆水平的升高。葡萄糖注射后胰岛素水平最初受到抑制。这些结果表明,葡萄糖给药引起的代谢调整可能与胰腺激素的调节作用有关。此外,这些结果表明,虹鳟的生长抑素分泌细胞对葡萄糖敏感,生长抑素抑制胰岛素分泌导致虹鳟葡萄糖不耐受。