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强直刺激期间大鼠骨骼肌对内源性三酰甘油的利用

Endogenous triacylglycerol utilization by rat skeletal muscle during tetanic stimulation.

作者信息

Spriet L L, Heigenhauser G J, Jones N L

出版信息

J Appl Physiol (1985). 1986 Feb;60(2):410-5. doi: 10.1152/jappl.1986.60.2.410.

Abstract

An isolated perfused rat hindquarter preparation was used to examine the utilization of endogenous triacylglycerol (TG) during 20 min of electrical stimulation. The sciatic nerve was stimulated with maximal tetanic trains at 0.5 Hz. The isometric tension generated by the gastrocnemius-plantaris-soleus muscle group was recorded, and muscle samples were taken pre- and poststimulation. Twenty minutes of stimulation significantly reduced endogenous TG from 6.78 +/- 0.84 to 4.64 +/- 0.64 mumol X g dry wt-1 (32%) in the red gastrocnemius muscle and from 7.70 +/- 0.61 to 6.66 +/- 0.80 mumol X g dry wt-1 (13.5%) in the plantaris muscle. Although TG content decreased by 16% in the soleus (28.2 +/- 5.0 to 23.8 +/- 4.4 mumol X g-1), the change was not significant. Stimulation had no effect on white gastrocnemius TG concentration (6.84 +/- 1.22 to 6.25 +/- 1.41 mumol X g-1). Thus oxidation of TG occurred primarily in muscles with a large proportion of fast-twitch oxidative-glycolytic fibers. Calculations from measurements of muscle energy stores and fuel uptake indicated that up to 62% of the aerobic energy was provided by endogenous TG. Carbohydrate oxidation contributed up to 28% and the remaining 10% may be accounted for by the oxidation of exogenous free fatty acids originating in the perfusate or from hindquarter adipose tissue. The magnitude of the fall in TG concentration in a given muscle was inversely related to the fall in glycogen concentration.

摘要

采用离体灌注大鼠后肢标本,研究电刺激20分钟期间内源性三酰甘油(TG)的利用情况。以0.5Hz的最大强直刺激串刺激坐骨神经。记录腓肠肌-比目鱼肌-跖肌组产生的等长张力,并在刺激前后采集肌肉样本。20分钟的刺激使红色腓肠肌中的内源性TG从6.78±0.84显著降至4.64±0.64μmol·g干重-1(32%),跖肌中的内源性TG从7.70±0.61降至6.66±0.80μmol·g干重-(13.5%)。虽然比目鱼肌中的TG含量下降了16%(从28.2±5.0降至23.8±4.4μmol·g-1),但变化不显著。刺激对比目鱼肌TG浓度无影响(从6.84±1.22降至6.25±1.41μmol·g-1)。因此,TG的氧化主要发生在快肌纤维比例较大的肌肉中。根据肌肉能量储备和燃料摄取量的测量计算表明,高达62%的有氧能量由内源性TG提供。碳水化合物氧化贡献高达28%,其余10%可能由灌注液或后肢脂肪组织中产生的外源性游离脂肪酸氧化所致。给定肌肉中TG浓度下降的幅度与糖原浓度的下降呈负相关。

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