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生脂基因spot 14在骨骼中因废用而被激活,但不受对骨骼具有合成代谢作用的机械信号的影响。

The lipogenic gene spot 14 is activated in bone by disuse yet remains unaffected by a mechanical signal anabolic to the skeleton.

作者信息

Zhi Jizu, Xu Gang, Rubin Clinton T, Hadjiargyrou Michael

机构信息

Department of Biomedical Engineering, Stony Brook University, Stony Brook, NY 11794-2580, USA.

出版信息

Calcif Tissue Int. 2008 Feb;82(2):148-54. doi: 10.1007/s00223-007-9100-7. Epub 2008 Jan 25.

Abstract

There is increasing evidence of the interaction of fat and bone metabolism and the role mechanical signals may have in regulating the adaptation of these tissues. The rat hindlimb suspension model of disuse osteoporosis was used to identify genes differentially expressed relative to normal weight-bearing bones and whether the relative expression of these genes is sensitive to anabolic mechanical stimuli. Ten days of hindlimb suspension suppressed percent labeled surface and bone volume/trabecular volume of the proximal tibia by 46% and 69%, respectively, compared to controls. Differential display polymerase chain reaction (DD-PCR) and Northern blot analysis identified and verified, respectively, that expression of Spot 14 (S14), an important gene in lipogenesis, was upregulated fourfold in tibiae of tail-suspended animals compared to long-term controls. Anabolic mechanical stimulation (45 Hz, 10 min/day at 0.25 g) did not show a statistically significant effect on S14 expression. These results indicate a potential role for lipogenic genes during bone loss caused by disuse, further supporting a link between bone and fat tissue, and, considering the insensitivity of these genes to mechanical signals which promote bone formation in the skeleton, the independence of resorptive and formative processes in bone.

摘要

越来越多的证据表明脂肪与骨代谢之间存在相互作用,以及机械信号在调节这些组织适应性方面可能发挥的作用。采用大鼠后肢悬吊废用性骨质疏松模型,以鉴定相对于正常负重骨骼差异表达的基因,以及这些基因的相对表达是否对合成代谢机械刺激敏感。与对照组相比,后肢悬吊10天使近端胫骨的标记表面百分比和骨体积/小梁体积分别降低了46%和69%。差异显示聚合酶链反应(DD-PCR)和Northern印迹分析分别鉴定并证实,脂肪生成中的重要基因Spot 14(S14)在尾部悬吊动物胫骨中的表达相对于长期对照组上调了四倍。合成代谢机械刺激(45 Hz,每天10分钟,0.25 g)对S14表达未显示出统计学上的显著影响。这些结果表明脂肪生成基因在废用性骨质流失过程中具有潜在作用,进一步支持了骨组织与脂肪组织之间的联系,并且考虑到这些基因对促进骨骼骨形成的机械信号不敏感,提示骨吸收和骨形成过程具有独立性。

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