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首页> 外文期刊>Pesquisa Veterinaria Brasileira >Insulin binding characteristics in canine muscle tissue: effects of the estrous cycle phases
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Insulin binding characteristics in canine muscle tissue: effects of the estrous cycle phases

机译:犬肌肉组织中的胰岛素结合特性:动情周期阶段的影响

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Hormonal fluctuations during the different estrous cycle are a well-recognized cause of insulin resistance in bitches, and little is known about insulin receptor binding or post-binding defects associated with insulin resistance in dogs. To evaluate insulin binding characteristics in muscle tissue of bitches during the estrous cycle, 17 owned bitches were used in the study (six in anestrus, five in estrus, and six in diestrus). An intravenous glucose tolerance test (IVGTT) was performed in all patients by means of injection of 1mL/kg of a glucose 50% solution (500mg/kg), with blood sample collection for glucose determination at 0, 3, 5, 7, 15, 30, 45 and 60 minutes after glucose infusion. Muscle samples, taken after spaying surgery, were immediately frozen in liquid nitrogen and then stored at -80 degrees C until the membranes were prepared by sequential centrifugation after being homogenized. For binding studies, membranes were incubated in the presence of 20,000cpm of human 125I-insulin and in increasing concentrations of unlabeled human regular insulin for cold saturation. The IVGTT showed no differences among bitches during the estrous cycle regarding baseline glycemia or glycemic response after glucose infusion. Two insulin binding sites -high-affinity and low-affinity ones - were detected by Scatchard analysis, and significant statistical differences were observed in the dissociation constant (Kd1) and maximum binding capacity (Bmax1) of the high-affinity binding sites. The Kd1 for the anestrus group (6.54 +/- 2.77nM/mg of protein) was smaller (P< 0.001) than for the estrus (28.54 +/- 6.94nM/mg of protein) and diestrus (15.56 +/- 3.88nM/mg of protein) groups. Bmax1 in the estrus (0.83 +/- 0.42nM/mg of protein) and diestrus (1.24 +/- 0.24nM/mg of protein) groups were also higher (P< 0.001) than the values observed in anestrus (0.35 +/- 0.06nM/mg of protein). These results indicate modulation of insulin binding characteristics during different phases of the estrous cycle in dogs, showing that muscle insulin binding affinity for its receptor is reduced during estrus and diestrus. However, this poor hormone-receptor affinity is compensated for by a greater total binding capacity, once there is no difference in patients' glycemic response after an intravenous glucose load.
机译:在不同的发情周期内的激素波动是母犬中胰岛素抵抗的公认原因,对犬中胰岛素受体结合或与胰岛素抵抗相关的结合后缺陷知之甚少。为了评估发情周期母犬肌肉组织中的胰岛素结合特性,在研究中使用了17个拥有的母犬(六个在发情期,五个在发情期和六个在发情期)。通过注射1mL / kg的50%葡萄糖溶液(500mg / kg)对所有患者进行静脉葡萄糖耐量试验(IVGTT),并在0、3、5、7、15时采集血样以测定葡萄糖输注葡萄糖后30、45和60分钟。将小腿手术后采集的肌肉样品立即冷冻在液氮中,然后保存在-80摄氏度下,直至均质后通过连续离心制备膜。为了进行结合研究,将膜在20,000cpm的人125I胰岛素存在下,并在浓度递增的未标记人常规胰岛素中进行冷饱和孵育。 IVGTT在发情周期内的母犬之间没有显示关于基线血糖或输注葡萄糖后血糖反应的差异。通过Scatchard分析检测到两个胰岛素结合位点-高亲和力和低亲和力,并且在高亲和力结合位点的解离常数(Kd1)和最大结合能力(Bmax1)上观察到显着的统计学差异。发情组(6.54 +/- 2.77nM / mg的蛋白质)的Kd1小于发情期(28.54 +/- 6.94nM / mg的蛋白质)和发情期(15.56 +/- 3.88nM的)(P <0.001) / mg的蛋白质)组。发情期(0.83 +/- 0.42nM / mg的蛋白质)和二头肌(1.24 +/- 0.24nM / mg的蛋白质)组中的Bmax1也比发情期(0.35 +/-)中的值更高(P <0.001) 0.06nM / mg蛋白质)。这些结果表明在狗的发情周期的不同阶段中胰岛素结合特性的调节,表明在发情期和发情期中肌肉对其受体的胰岛素结合亲和力降低。然而,一旦在静脉内葡萄糖负荷后患者的血糖反应没有差异,这种较差的激素-受体亲和力将被更大的总结合能力所补偿。

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