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废用性小梁骨结构衰退。

Disuse-related decline in trabecular bone structure.

机构信息

ORC, Creighton University, Suite 4820, 610 N, 30th Street, Omaha, NE 68131, USA.

出版信息

Biomech Model Mechanobiol. 2011 Jun;10(3):423-9. doi: 10.1007/s10237-010-0244-4. Epub 2010 Aug 4.

Abstract

Sedentary life style may degrade bone mass and microstructure resulting in osteoporosis. We characterized trabecular bone structural properties to determine if the LRP5 G171V mutation will protect against disuse-related bone loss. Forty-eight adult male mice representing three genotypes (WT = wild type, KO = LRP5-knockout +/-, HBM = High bone with the LRP5 G171V mutation) were each randomly divided between control and disuse (4 week hindlimb suspension) groups. Trabecular bone volume fraction (BV/TV) declined in all the three genotypes. Trabecular thickness was lower in the HBM and LRP5 (+/-) KO disuse groups when compared to their respective controls. While the remaining measures of bone structure (Trabecular number, connectivity density, apparent and tissue density) were lower, the trabecular separation increased in the LRP5 (+/-) with disuse. Although the absolute loss in BV/TV was similar, the relative loss due to disuse was far greater in the LRP5 (+/-) mice (67%) than in the HBM mice (14%). The disuse caused 20% decrease in trabecular number and thickness for LRP5 (+/-), while the decline was between 6 and 11% for the HBM and WT mice.

摘要

sedentary 生活方式可能会降低骨量和微观结构,导致骨质疏松症。我们对小梁骨结构特性进行了表征,以确定 LRP5 G171V 突变是否会防止与废用相关的骨质流失。代表三种基因型(WT = 野生型,KO = LRP5 敲除 +/-,HBM = 具有 LRP5 G171V 突变的高骨量)的 48 只成年雄性小鼠被随机分为对照组和废用组(4 周后肢悬吊)。所有三种基因型的小梁骨体积分数(BV/TV)均下降。与相应的对照组相比,HBM 和 LRP5 (+/-) KO 废用组的小梁厚度较低。虽然其他骨结构测量值(小梁数量、连接密度、表观和组织密度)较低,但小梁分离度在 LRP5 (+/-) 废用组中增加。尽管绝对 BV/TV 损失相似,但 LRP5 (+/-) 小鼠的相对废用损失(67%)远高于 HBM 小鼠(14%)。废用导致 LRP5 (+/-) 小鼠的小梁数量和厚度减少 20%,而 HBM 和 WT 小鼠的下降幅度在 6%至 11%之间。

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