在2、4和6月龄时,反复进行微计算机断层扫描,不会对雄性和雌性CD-1小鼠的胫骨微结构造成损伤。

BoneKEy reports Pub Date : 2017-01-13 eCollection Date: 2017-01-01 DOI:10.1038/bonekey.2016.87
Sandra M Sacco, Caitlin Saint, Amanda B Longo, Charles B Wakefield, Phil L Salmon, Paul J LeBlanc, Wendy E Ward
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引用次数: 21

摘要

在生长和骨骼发育的关键阶段(2、4和6个月)反复进行体内微计算机断层扫描(μCT)对骨小梁和骨皮质结构以及发育模式的长期影响尚未研究。我们测定了2、4、6月龄时重复μCT扫描对雌雄CD-1小鼠胫骨骨结构的影响,并描述了发育变化。在2、4和6个月大时,使用体内μCT (Skyscan 1176)扫描右胫骨,每次扫描的辐射剂量为222、261或460 mGy。6个月时对同一只小鼠的左胫骨进行扫描,作为非辐照对照,以确定反复辐照是否会改变胫骨近端骨小梁和皮质骨结构。男性偏心率较低(P
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Repeated irradiation from micro-computed tomography scanning at 2, 4 and 6 months of age does not induce damage to tibial bone microstructure in male and female CD-1 mice.

Long-term effects of repeated in vivo micro-computed tomography (μCT) scanning at key stages of growth and bone development (ages 2, 4 and 6 months) on trabecular and cortical bone structure, as well as developmental patterns, have not been studied. We determined the effect of repetitive μCT scanning at age 2, 4 and 6 months on tibia bone structure of male and female CD-1 mice and characterized developmental changes. At 2, 4 and 6 months of age, right tibias were scanned using in vivo μCT (Skyscan 1176) at one of three doses of radiation per scan: 222, 261 or 460 mGy. Left tibias of the same mice were scanned only at 6 months to serve as non-irradiated controls to determine whether recurrent radiation exposure alters trabecular and cortical bone structure at the proximal tibia. In males, eccentricity was lower (P<0.05) in irradiated compared with non-irradiated tibias (222 mGy group). Within each sex, all other structural outcomes were similar between irradiated and non-irradiated tibias regardless of dose. Trabecular bone loss occurred in all mice due to age while cortical development continued to age 6 months. In conclusion, repetitive μCT scans at various radiation doses did not damage trabecular or cortical bone structure of proximal tibia in male and female CD-1 mice. Moreover, scanning at 2, 4 and 6 months of age highlight the different developmental time course between trabecular and cortical bone. These scanning protocols can be used to investigate longitudinal responses of bone structures to an intervention.

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