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首页> 外文期刊>American Journal of Physiology >Growth hormone-induced insulin resistance is associated with increased intramyocellular triglyceride content but unaltered VLDL-triglyceride kinetics.
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Growth hormone-induced insulin resistance is associated with increased intramyocellular triglyceride content but unaltered VLDL-triglyceride kinetics.

机译:生长激素诱导的胰岛素抵抗与肌内甘油三酯含量增加但VLDL-甘油三酯动力学未改变有关。

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The ability of growth hormone (GH) to stimulate lipolysis and cause insulin resistance in skeletal muscle may be causally linked, but the mechanisms remain obscure. We investigated the impact of GH on the turnover of FFA and VLDL-TG, intramuscular triglyceride content (IMTG), and insulin sensitivity (euglycemic clamp) in nine healthy men in a randomized double-blind placebo-controlled crossover study after 8 days treatment with (A) Placebo+Placebo, (B) GH (2 mg daily)+Placebo, and (C) GH (2 mg daily)+Acipimox (250 mgx3 daily). In the basal state, GH (B) increased FFA levels (P<0.05), palmitate turnover (P<0.05), and lipid oxidation (P=0.05), but VLDL-TG kinetics were unaffected. Administration of acipimox (C) suppressed basal lipolysis but did not influence VLDL-TG kinetics. In the basal state, IMTG content increased after GH (B; P=0.03). Insulin resistance was induced by GH irrespective of concomitant acipimox (P<0.001). The turnover of FFA and VLDL-TG was suppressed by hyperinsulinemia during placeboand GH, whereas coadministration of acipimox induced a rebound increase FFA turnover and VLDL-TG clearance. We conclude that these results show that GH-induced insulin resistance is associated with increased IMTG and unaltered VLDL-TG kinetics; we hypothesize that fat oxidation in muscle tissue is an important primary effect of GH and that circulating FFA rather than VLDL-TG constitute the major source for this process; and the role of IMTG in the development of GH-induced insulin resistance merits future research.
机译:生长激素(GH)刺激脂肪分解并引起骨骼肌胰岛素抵抗的能力可能是因果关系,但其机制仍然不清楚。在一项随机双盲安慰剂对照交叉研究中,我们调查了GH对9名健康男性的FFA和VLDL-TG转换,肌内甘油三酸酯含量(IMTG)和胰岛素敏感性(正常血糖钳夹)的影响。 (A)安慰剂+安慰剂,(B)GH(每天2 mg)+安慰剂,和(C)GH(每天2 mg)+ Acipimox(每天250 mgx3)。在基础状态下,GH(B)增加了FFA水平(P <0.05),棕榈酸酯周转率(P <0.05)和脂质氧化(P = 0.05),但VLDL-TG动力学未受影响。 acipimox(C)的给药可抑制基础脂解,但不影响VLDL-TG动力学。在基础状态下,GH后IMTG含量增加(B; P = 0.03)。 GH引起的胰岛素抵抗,与伴随的阿西莫昔无关(P <0.001)。在安慰剂和GH期间,高胰岛素血症抑制了FFA和VLDL-TG的转换,而同时使用acipimox则导致FFA转换和VLDL-TG清除率反弹。我们得出的结论是,这些结果表明,GH诱导的胰岛素抵抗与IMTG增加和VLDL-TG动力学未改变有关。我们假设肌肉组织中的脂肪氧化是GH的重要主要作用,而循环FFA而非VLDL-TG构成了该过程的主要来源;以及IMTG在GH诱导的胰岛素抵抗发展中的作用值得进一步研究。

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