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后肢去负荷以年龄依赖性方式诱导小鼠长骨的骨微结构和转录组变化。

Hindlimb Unloading Induces Bone Microarchitectural and Transcriptomic Changes in Murine Long Bones in an Age-Dependent Manner.

作者信息

Meas Steven J, Daire Gabriella M, Friedman Michael A, DeNapoli Rachel, Ghosh Preetam, Farr Joshua N, Donahue Henry J

出版信息

bioRxiv. 2023 Oct 11:2023.10.09.561510. doi: 10.1101/2023.10.09.561510.

Abstract

UNLABELLED

Age and disuse-related bone loss both result in decreases in bone mineral density, cortical thickness, and trabecular thickness and connectivity. Disuse induces physiological changes in bone like those seen with aging. Bone microarchitecture and biomechanical properties were compared between 6- and 22-month-old C57BL/6J male control mice and 6-month-old mice that were hindlimb unloaded (HLU) for 3 weeks. Epiphyseal trabecular bone was the compartment most affected by HLU and demonstrated an intermediate bone phenotype between age-matched controls and aged controls. RNA extracted from whole-bone marrow-flushed tibiae was sequenced and analyzed. Differential gene expression analysis additionally included 4-month-old male mice unloaded for 3 weeks compared to age-matched controls. Gene ontology analysis demonstrated that there were age-dependent differences in differentially expressed genes. Genes related to downregulation of cellular processes were most affected in 4-month-old mice after disuse whereas those related to mitochondrial function were most affected in 6- month-old mice. Cell-cycle transition was downregulated with aging. A publicly available dataset (GSE169292) from 3-month female C57BL/6N mice unloaded for 7 days was included in ingenuity pathway analysis with the other datasets. IPA was used to identify the leading canonical pathways and upstream regulators in each HLU age group. IPA identified "Senescence Pathway" as the second leading canonical pathway enriched in mice exposed to HLU. HLU induced activation of the senescence pathway in 3- month and 4-month-old mice but inhibited it in 6-month-old mice. In conclusion, we demonstrate that hindlimb unloading and aging initiate similar changes in bone microarchitecture and gene expression. However, aging is responsible for more significant transcriptome and tissue-level changes compared to hindlimb unloading.

HIGHLIGHTS

Epiphyseal trabecular bone is most susceptible to hindlimb unloading.Hindlimb unloaded limbs resemble an intermediate phenotype between age-matched and aged controls.Hindlimb unloading induces gene expression changes that are age dependent and may lead to inflammation and/or mitochondrial dysfunction depending on context.Younger mice (3-4 months) activate the senescence pathway upon hindlimb unloading, whereas skeletally mature (6 months) mice inhibit it.

摘要

未标记

年龄相关和废用相关的骨质流失都会导致骨矿物质密度、皮质厚度、小梁厚度和连接性降低。废用会引发与衰老相似的骨骼生理变化。对6至22月龄的C57BL/6J雄性对照小鼠和后肢卸载(HLU)3周的6月龄小鼠的骨微结构和生物力学特性进行了比较。骨骺小梁骨是受HLU影响最大的部位,表现出介于年龄匹配对照和老龄对照之间的中间骨表型。对从全骨髓冲洗的胫骨中提取的RNA进行测序和分析。差异基因表达分析还包括与年龄匹配对照相比卸载3周的4月龄雄性小鼠。基因本体分析表明,差异表达基因存在年龄依赖性差异。与细胞过程下调相关的基因在4月龄小鼠废用后受影响最大,而与线粒体功能相关的基因在6月龄小鼠中受影响最大。细胞周期转变随衰老而下调。来自卸载7天的3月龄雌性C57BL/6N小鼠的公开可用数据集(GSE169292)与其他数据集一起纳入了 Ingenuity 通路分析。IPA用于识别每个HLU年龄组中的主要经典通路和上游调节因子。IPA将“衰老通路”确定为在暴露于HLU的小鼠中富集的第二大主要经典通路。HLU在3月龄和4月龄小鼠中诱导衰老通路的激活,但在6月龄小鼠中抑制该通路。总之,我们证明后肢卸载和衰老在骨微结构和基因表达方面引发相似的变化。然而,与后肢卸载相比,衰老导致更显著的转录组和组织水平变化。

要点

骨骺小梁骨对后肢卸载最敏感。后肢卸载的肢体类似于年龄匹配对照和老龄对照之间的中间表型。后肢卸载诱导的基因表达变化具有年龄依赖性,可能根据具体情况导致炎症和/或线粒体功能障碍。年轻小鼠(3至4个月)后肢卸载时激活衰老通路,而骨骼成熟(6个月)的小鼠则抑制该通路。

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