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Growth Hormone Regulates the Balance Between Bone Formation and Bone Marrow Adiposity

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Date 2009 Oct 14
PMID 19821771
Citations 76
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Abstract

Cancellous bone decreases and bone marrow fat content increases with age. Osteoblasts and adipocytes are derived from a common precursor, and growth hormone (GH), a key hormone in integration of energy metabolism, regulates the differentiation and function of both cell lineages. Since an age-related decline in GH is associated with bone loss, we investigated the relationship between GH and bone marrow adiposity in hypophysectomized (HYPOX) rats and in mice with defects in GH signaling. HYPOX dramatically reduced body weight gain, bone growth and mineralizing perimeter, serum insulin-like growth factor 1 (IGF-1) levels, and mRNA levels for IGF-1 in liver and bone. Despite reduced body mass and adipocyte precursor pool size, HYPOX resulted in a dramatic increase in bone lipid levels, as reflected by increased bone marrow adiposity and bone triglyceride and cholesterol content. GH replacement normalized bone marrow adiposity and precursor pool size, as well as mineralizing perimeter in HYPOX rats. In contrast, 17beta -estradiol, IGF-1, thyroxine, and cortisone were ineffective. Parathyroid hormone (PTH) reversed the inhibitory effects of HYPOX on mineralizing perimeter but had no effect on adiposity. Finally, bone marrow adiposity was increased in mice deficient in GH and IGF-1 but not in mice deficient in serum IGF-1. Taken together, our findings indicate that the reciprocal changes in bone and fat mass in GH signaling-deficient rodents are not directly coupled with one another. Rather, GH enhances adipocyte as well as osteoblast precursor pool size. However, GH increases osteoblast differentiation while suppressing bone marrow lipid accumulation.

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References
1.
Kasukawa Y, Miyakoshi N, Mohan S . The anabolic effects of GH/IGF system on bone. Curr Pharm Des. 2004; 10(21):2577-92. DOI: 10.2174/1381612043383764. View

2.
Gimble J, Zvonic S, Floyd Z, Kassem M, Nuttall M . Playing with bone and fat. J Cell Biochem. 2006; 98(2):251-66. DOI: 10.1002/jcb.20777. View

3.
Bikle D, Sakata T, Leary C, Elalieh H, Ginzinger D, Rosen C . Insulin-like growth factor I is required for the anabolic actions of parathyroid hormone on mouse bone. J Bone Miner Res. 2002; 17(9):1570-8. DOI: 10.1359/jbmr.2002.17.9.1570. View

4.
Moller N, Jorgensen J . Effects of growth hormone on glucose, lipid, and protein metabolism in human subjects. Endocr Rev. 2009; 30(2):152-77. DOI: 10.1210/er.2008-0027. View

5.
Beswick N, Kennelly J . Influence of bovine growth hormone and growth hormone-releasing factor on messenger RNA abundance of lipoprotein lipase and stearoyl-CoA desaturase in the bovine mammary gland and adipose tissue. J Anim Sci. 2000; 78(2):412-9. DOI: 10.2527/2000.782412x. View