首页> 美国卫生研究院文献>The Journal of Physiology >Insulin and contraction increase nutritive blood flow in rat muscle in vivo determined by microdialysis of l-14Cglucose
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Insulin and contraction increase nutritive blood flow in rat muscle in vivo determined by microdialysis of l-14Cglucose

机译:通过l- 14C葡萄糖的微透析测定胰岛素和收缩可增加体内大鼠肌肉的营养性血流量

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摘要

In the present study, a mathematical model using the microdialysis outflow: inflow (O/I) ratio of the novel analogue l-[14C]glucose has been developed which allows the calculation of the nutritive (and non-nutritive) flow in muscle as a proportion of total blood flow. Anaesthetized rats had microdialysis probes carrying l-[14C]glucose inserted through a calf muscle group (tibialis/plantaris/gastrocnemius). The nutritive fraction of total blood flow was determined under basal conditions and in response to contraction (electrical field stimulation), insulin (hyperinsulinaemic euglycaemic clamp with 10 mU min−1 kg−1 insulin) or saline control from limb blood flow and the microdialysis O/I ratio of l-[14C]glucose. Both contraction and insulin infusion decreased the O/I ratio of l-[14C]glucose and increased total limb blood flow. Calculations based on mathematical models using l-[14C]glucose O/I and limb blood flow revealed that during basal conditions, the nutritive fraction of total flow was 0.38 ± 0.06, indicating that basal flow was predominantly non-nutritive. Contraction and insulin increased the nutritive fraction to 0.82 ± 0.24 (P < 0.05) and 0.52 ± 0.12 (P < 0.05). Thus the increase in limb blood flow from insulin was fully accommodated by nutritive flow, while contraction increased nutritive flow at the expense of non-nutritive flow. This novel method using microdialysis and the O/I ratio of l-[14C]glucose allows the determination of the nutritive fraction of total flow in muscle as well as the proportion of total flow that may be redistributed in response to contraction and insulin.
机译:在本研究中,已经开发了一种使用新型类似物l-[ 14 C]葡萄糖的微透析流出量:流入量(O / I)比的数学模型,该模型可以计算营养物质(和非营养性)在肌肉中的流动占总血液流动的比例。麻醉的大鼠的微透析探针通过小腿肌肉组(胫骨/ plant肌/腓肠肌)插入带有l-[ 14 C]葡萄糖。在基础条件下并响应于收缩(电场刺激),胰岛素(高胰岛素血症性正常血糖钳夹10 mU min -1 kg -1 胰岛素)或生理盐水控制肢体血流以及l-[ 14 C]葡萄糖的微透析O / I比。收缩和胰岛素输注均可降低l-[ 14 C]葡萄糖的O / I比,并增加肢体总血流量。根据使用l-[ 14 C]葡萄糖O / I和肢体血流量的数学模型进行的计算表明,在基础状态下,总流量的营养分数为0.38±0.06,表明基础流量主要是非营养的。收缩和胰岛素将营养分数提高到0.82±0.24(P <0.05)和0.52±0.12(P <0.05)。因此,来自胰岛素的肢体血流量的增加完全被营养流量所适应,而收缩增加了营养流量,但以非营养流量为代价。这种使用微透析和l-[ 14 C]葡萄糖的O / I比的新方法可以确定肌肉中总流量的营养成分以及可以重新分配的总流量的比例响应收缩和胰岛素。

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