Gene expression profile in bone of diabetes-prone BB/OK rats fed a high-fat diet

被引:0
作者
Jörn Lange
Thomas Barz
Axel Ekkernkamp
Ingrid Klöting
Niels Follak
机构
[1] University of Greifswald,Department of Trauma and Reconstructive Surgery, Medical Faculty
[2] Asklepios Klinikum Uckermark,Department of Orthopaedic Surgery
[3] University of Greifswald,Department of Laboratory Animal Science, Medical Faculty
[4] Pfeiffersche Stiftungen,Orthopedic Clinic
来源
Genes & Nutrition | 2013年 / 8卷
关键词
Weight gain; Obesity; Osteoporosis; Gene expression; Bone;
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学科分类号
摘要
A high-fat diet (HFD) has been recognized as a risk factor for diseases such as dyslipidemia, atherosclerosis, obesity, and osteoporosis. However, studies analyzing gene expression after HFD in bone are rare. That prompted us to analyze the expression of selected genes in bone of 4-week-old diabetes-prone B(io)B(reeding) rats. Two breeding pairs were fed a HFD (+10 % tallow) or were fed a normal diet (ND; Ssniff R-Z) before mating and afterward during pregnancy. After the birth of progeny, parents continued to be given HFD or ND until the progeny was weaned (3 weeks). Thereafter, offspring were weaned and were fed the same food as their parents up to an age of 4 weeks. Body weight was measured at an age of 4 weeks, and subsequently 13 HFD rats and 13 ND rats were killed and the tibial bone was harvested to analyze the expression of 53 genes in bone. All rats fed HFD were significantly heavier than rats fed ND after 3 and 4 weeks. The diet also influenced the expression of genes in bone. There were significant differences in 20 out of 53 genes studied between rats fed HFD compared with rats fed ND. Four out of 20 had a lower and 17 out of 20 genes a higher expression in HFD rats, but differences in gene expression showed obvious differences between males and females. There were only two genes that were similarly different between males and females: Bmp4 and Atf4. Two genes, Foxg1 and Npy, were inversely expressed in males and females. It seems that the gene expression is differently regulated by diet during pregnancy and later in life between males and females. Nevertheless, it cannot be excluded that HFD also acts as an epigenetic factor in the development of offspring in utero.
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页码:99 / 104
页数:5
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