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C57BL/6N小鼠和C57BL/6J小鼠之间的骨结构差异以及卸载诱导的骨质流失

Differences in bone structure and unloading-induced bone loss between C57BL/6N and C57BL/6J mice.

作者信息

Sankaran Jeyantt S, Varshney Manasvi, Judex Stefan

机构信息

Department of Biomedical Engineering, Stony Brook University, Stony Brook, NY, 11794-5281, USA.

出版信息

Mamm Genome. 2017 Dec;28(11-12):476-486. doi: 10.1007/s00335-017-9717-4. Epub 2017 Sep 14.

Abstract

The C57BL/6 mouse, the most frequently utilized animal model in biomedical research, is in use as several substrains, all of which differ by a small array of genomic differences. Two of these substrains, C57BL/6J (B6J) and C57BL/6N (B6N), are commonly used but it is unclear how phenotypically similar or different they are. Here, we tested whether adolescent B6N mice have a bone phenotype and respond to the loss of weightbearing differently than B6J. At 9 weeks of age, normally ambulating B6N had lower trabecular bone volume fraction but greater bone formation rates and osteoblast surfaces than corresponding B6J. At 11 weeks of age, differences in trabecular indices persisted between the substrains but differences in cellular activity had ceased. Cortical bone indices were largely similar between the two substrains. Hindlimb unloading (HLU) induced similar degeneration of trabecular architecture and cellular activity in both substrains when comparing 11-week-old HLU mice to 11-week-old controls. However, unloaded B6N mice had smaller cortices than B6J. When comparing HLU to 9 weeks baseline control mice, deterioration in trabecular separation, osteoblast indices, and endocortical variables was significantly greater in B6N than B6J. These data indicate specific developmental differences in bone formation and morphology between B6N and B6J mice, giving rise to a differential response to mechanical unloading that may be modulated, in part, by the genes Herc2, Myo18b, and Acan. Our results emphasize that these substrains cannot be used interchangeably at least for investigations in which the phenotypic makeup and its response to extraneous stimuli are of interest.

摘要

C57BL/6小鼠是生物医学研究中最常用的动物模型,存在多个亚系,所有亚系之间仅有少量基因组差异。其中两个亚系,C57BL/6J(B6J)和C57BL/6N(B6N)较为常用,但它们在表型上的相似程度或差异尚不清楚。在此,我们测试了青春期B6N小鼠是否具有骨表型,以及其对失重的反应是否与B6J不同。9周龄时,正常活动的B6N小鼠的骨小梁体积分数较低,但骨形成率和成骨细胞表面比相应的B6J小鼠更高。11周龄时,亚系之间骨小梁指数的差异仍然存在,但细胞活性的差异已经消失。两个亚系的皮质骨指数在很大程度上相似。当将11周龄的后肢卸载(HLU)小鼠与11周龄的对照小鼠进行比较时,HLU在两个亚系中均诱导了相似的骨小梁结构退化和细胞活性。然而,卸载后的B6N小鼠的皮质比B6J小鼠更小。当将HLU小鼠与9周龄的基线对照小鼠进行比较时,B6N小鼠的骨小梁间距、成骨细胞指数和骨内膜变量的恶化程度明显大于B6J小鼠。这些数据表明B6N和B6J小鼠在骨形成和形态方面存在特定的发育差异,导致对机械卸载的反应不同,这可能部分受到Herc2、Myo18b和Acan基因的调节。我们的结果强调,至少在对表型构成及其对外界刺激的反应感兴趣的研究中,这些亚系不能互换使用。

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