Physiological Hyperinsulinemia Stimulates p70S6kPhosphorylation in Human Skeletal Muscle1

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COMMENT Physiological Hyperinsulinemia Stimulates p70 Phosphorylation in Human Skeletal Muscle*

Using tracer methods, insulin stimulates muscle protein synthesis in vitro, an effect not seen in vivo with physiological insulin concentrations in adult animals or humans. To examine the action of physiological hyperinsulinemia on protein synthesis using a tracer-independent method in vivo and identify possible explanations for this discrepancy, we measured the phosphorylation of ribosomal pro...

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Effect of acute physiological hyperinsulinemia on gene expression in human skeletal muscle in vivo.

This study was undertaken to test the hypothesis that short-term exposure (4 h) to physiological hyperinsulinemia in normal, healthy subjects without a family history of diabetes would induce a low grade inflammatory response independently of glycemic status. Twelve normal glucose tolerant subjects received a 4-h euglycemic hyperinsulinemic clamp with biopsies of the vastus lateralis muscle. Mi...

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Series elastic component of mammalian skeletal muscle1

BAHLER, ALAN S. Series elastic component of mammalian skeletal muscle. Am. J. Physiol. 213(6): 1560-1564. 1967.-A method of modifying the Wilkie quick-release technique of determining the compliance of the series elastic component of mammalian muscle is described. This modification eliminates the effect of muscle and lever system mass by adding an additional factor related to the shortening of ...

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Physiologic hyperinsulinemia enhances human skeletal muscle perfusion by capillary recruitment.

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Skeletal muscle microvascular recruitment by physiological hyperinsulinemia precedes increases in total blood flow.

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ژورنال

عنوان ژورنال: The Journal of Clinical Endocrinology & Metabolism

سال: 2000

ISSN: 0021-972X,1945-7197

DOI: 10.1210/jcem.85.12.7036