Fukumori R, Sugino T, Shingu H, Moriya N, Kobayashi H, Yamaji K, El-Sabagh M, Hasegawa Y, Kojima M, Kangawa K, Obitsu T, Nagao Y, Taniguchi K, Kushibiki S
J Anim Sci. 2015 Jun;93(6):2778-84. doi: 10.2527/jas.2015-8868.
The hyperinsulinemic-euglycemic clamp (EGC) technique was used to investigate the effects of calcium salts of long-chain fatty acids (LCFA-Ca) and rumen-protected Met (RPM) on insulin sensitivity in the peripheral tissues of lactating cows. Six multiparous Holstein cows were used in a 3 × 3 Latin square experiment in each 14-d period. Dietary treatments were 0 (RPM0), 20 (RPM20), and 60 (RPM60) g/d of RPM, supplemented with a diet containing 1.5% of LCFA-Ca equal to 110% of the cows' ME requirement. And as a control for the 3 LCFA-Ca-containing diets, a dietary treatment without LCFA-Ca (Con) was also included. After a 10-d adaptation period, milk samples were collected for 4 d, and EGC experiments were performed on d 14 of each treatment period. Insulin solution was infused through a jugular vein catheter at a rate of 0.1, 0.2, 0.3, and 0.4 milliunits·kg BW-1·min-1 for 30 min and then at a rate of 0.5 milliunits·kg BW-1·min-1 for 60 min. Glucose solution was variably infused to maintain plasma glucose at steady state through the same catheter. Blood samples for measurements were taken using the contralateral catheter. Plasma total cholesterol, cholesterol ester, free cholesterol, and phospholipid concentrations in RPM0 and RPM20 were higher than those in Con, whereas the concentrations in RPM60 were low at the same degree of those in RPM0 (P < 0.05). Plasma Met concentration was greatest in RPM60 (P < 0.05). In the EGC experiment, the glucose infusion rate was greater in RPM60 than in RPM0 and RPM20 and an effective concentration of insulin resulting in 50% maximal glucose infusion rate was lower in RPM60 compared with RPM0 (P < 0.05), indicating that insulin sensitivity was intensified in RPM60. Although the insulin sensitivity evaluated from the EGC data in RPM0, RPM20, and RPM60 was not different from Con, a slight decline was observed in RPM0 and insulin sensitivity in RPM60 was higher than Con. Our results from the EGC experiment demonstrated that the feeding RPM lead to increased insulin sensitivity, which suggests that dietary Met affects lipid metabolism via insulin action in lactating dairy cows fed a LCFA-Ca-containing diet.
采用高胰岛素-正血糖钳夹(EGC)技术,研究长链脂肪酸钙盐(LCFA-Ca)和瘤胃保护性蛋氨酸(RPM)对泌乳奶牛外周组织胰岛素敏感性的影响。在每14天的试验期内,选用6头经产荷斯坦奶牛进行3×3拉丁方试验。日粮处理分别为:0(RPM0)、20(RPM20)和60(RPM60)克/天的RPM,并补充含1.5%LCFA-Ca的日粮,该日粮相当于奶牛代谢能需求的110%。作为3种含LCFA-Ca日粮的对照,还设置了一种不含LCFA-Ca的日粮处理(Con)。经过10天的适应期后,连续4天采集牛奶样本,并在每个处理期的第14天进行EGC试验。胰岛素溶液通过颈静脉导管以0.1、0.2、0.3和0.4毫单位·千克体重-1·分钟-1的速率输注30分钟,然后以0.5毫单位·千克体重-1·分钟-1的速率输注60分钟。通过同一导管可变速度输注葡萄糖溶液,以维持血浆葡萄糖处于稳态。使用对侧导管采集用于检测的血样。RPM0和RPM20组的血浆总胆固醇、胆固醇酯、游离胆固醇和磷脂浓度高于Con组,而RPM60组的浓度与RPM0组处于相同程度的低水平(P<0.05)。RPM60组的血浆蛋氨酸浓度最高(P<0.05)。在EGC试验中,RPM60组的葡萄糖输注速率高于RPM0组和RPM20组,且导致50%最大葡萄糖输注速率的有效胰岛素浓度低于RPM0组(P<0.05),表明RPM60组的胰岛素敏感性增强。尽管根据EGC数据评估的RPM0、RPM20和RPM60组的胰岛素敏感性与Con组无差异,但RPM0组略有下降,且RPM60组的胰岛素敏感性高于Con组。我们的EGC试验结果表明,饲喂RPM可提高胰岛素敏感性,这表明在饲喂含LCFA-Ca日粮的泌乳奶牛中,日粮蛋氨酸通过胰岛素作用影响脂质代谢。