Key result
Adult-onset isolated GH deficiency in starved female mice did not impair glucose level maintenance or lean mass preservation, but blunted fat mass loss and the rise in free fatty acids and ketones.
Why the study?
Does the rise in GH during starvation maintain glucose levels or lean mass in female mice?
Does the rise in GH during starvation maintain glucose levels or lean mass in female mice?
In female mice, the rise in growth hormone during starvation is not required to maintain glucose levels or lean mass, but is important for fat mobilization.
Does not inform GH management in human starvation; leaves open GH's role in fat mobilization across species.
In mice, GH levels rise in response to short-term fasting or starvation (food restriction to 40% of ad libitum intake), similar to that which occurs in humans in response to fasting or anorexia. Recent studies using acyl-ghrelin knockout mice have suggested that the rise in GH during food restriction is essential to support glucose levels. To directly test this hypothesis, adult-onset isolated GH deficient (AOiGHD) mice and their GH-replete littermate controls were provided 40% of ad libitum food intake for 11 d. As previously shown, food restriction increased GH levels in controls, and this response was not observed in AOiGHD mice. In both controls and AOiGHD, food restriction resulted in an initial decline in glucose, which stabilized to 82-85% of ad libitum-fed values by d 2. In addition, loss of lean mass in response to food restriction was not altered by GH status. However, the loss of fat mass and the associated rise in circulating free fatty acids and ketones was blunted in starved AOiGHD mice compared with controls. Taken together, these results suggest a rise of GH during starvation is not required to support glucose levels and muscle mass but may be important in supporting fat mobilization.
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Gahete et al. (2012) studied Starvation (food restriction). Adult-onset isolated GH deficiency (AOiGHD) vs. GH-replete littermate controls was evaluated on Glucose levels, lean mass, and fat mass. Adult-onset isolated GH deficiency in starved female mice did not impair glucose level maintenance or lean mass preservation, but blunted fat mass loss and the rise in free fatty acids and ketones.
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