Transformation of Mature Osteoblasts into Bone Lining Cells and RNA Sequencing-Based Transcriptome Profiling of Mouse Bone during Mechanical Unloading.

IF 4.2
A Ram Hong, Kwangsoo Kim, Ji Yeon Lee, Jae-Yeon Yang, Jung Hee Kim, Chan Soo Shin, Sang Wan Kim
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Abstract

Background: We investigated RNA sequencing-based transcriptome profiling and the transformation of mature osteoblasts into bone lining cells (BLCs) through a lineage tracing study to better understand the effect of mechanical unloading on bone loss.

Methods: Dmp1-CreERt2(+):Rosa26R mice were injected with 1 mg of 4-hydroxy-tamoxifen three times a week starting at postnatal week 7, and subjected to a combination of botulinum toxin injection with left hindlimb tenotomy starting at postnatal week 8 to 10. The animals were euthanized at postnatal weeks 8, 9, 10, and 12. We quantified the number and thickness of X-gal(+) cells on the periosteum of the right and left femoral bones at each time point.

Results: Two weeks after unloading, a significant decrease in the number and a subtle change in the thickness of X-gal(+) cells were observed in the left hindlimbs compared with the right hindlimbs. At 4 weeks after unloading, the decrease in the thickness was accelerated in the left hindlimbs, although the number of labeled cells was comparable. RNA sequencing analysis showed downregulation of 315 genes in the left hindlimbs at 2 and 4 weeks after unloading. Of these, Xirp2, AMPD1, Mettl11b, NEXN, CYP2E1, Bche, Ppp1r3c, Tceal7, and Gadl1 were upregulated during osteoblastogenic/osteocytic and myogenic differentiation in vitro.

Conclusion: These findings demonstrate that mechanical unloading can accelerate the transformation of mature osteoblasts into BLCs in the early stages of bone loss in vivo. Furthermore, some of the genes involved in this process may have a pleiotropic effect on both bone and muscle.

成熟成骨细胞向骨衬里细胞的转化和基于RNA测序的小鼠骨在机械卸载过程中的转录组谱分析。
背景:我们通过谱系追踪研究,研究了基于RNA测序的转录组分析和成熟成骨细胞向骨内衬细胞(blc)的转化,以更好地了解机械卸载对骨质流失的影响。方法:Dmp1-CreERt2(+):Rosa26R小鼠从出生后第7周开始注射4-羟基他莫昔芬1 mg,每周3次,从出生后第8 ~ 10周开始联合注射肉毒杆菌毒素并左后肢肌腱切断术。这些动物在出生后第8、9、10和12周被安乐死。定量测定各时间点左右股骨骨膜X-gal(+)细胞的数量和厚度。结果:卸荷2周后,左后肢X-gal(+)细胞数量较右后肢明显减少,厚度有细微变化。在卸载后4周,左后肢的厚度下降加速,尽管标记的细胞数量相当。RNA测序分析显示,卸载后2周和4周左后肢315个基因下调。其中,Xirp2、AMPD1、Mettl11b、NEXN、CYP2E1、Bche、Ppp1r3c、tcal7和Gadl1在体外成骨细胞/骨细胞和肌源性分化过程中上调。结论:上述结果表明,在体内骨质流失早期,机械卸载可加速成熟成骨细胞向blc的转化。此外,参与这一过程的一些基因可能对骨骼和肌肉都有多效性作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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