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辐射和衰老相关的骨丢失模型中的骨髓脂肪含量依赖于细胞衰老。

Bone Marrow Adiposity in Models of Radiation- and Aging-Related Bone Loss Is Dependent on Cellular Senescence.

机构信息

Department of Physiology and Biomedical Engineering, Mayo Clinic College of Medicine, Rochester, MN, USA.

Department of Medicine, Mayo Clinic College of Medicine, Rochester, MN, USA.

出版信息

J Bone Miner Res. 2022 May;37(5):997-1011. doi: 10.1002/jbmr.4537. Epub 2022 Mar 29.

Abstract

Oxidative stress-induced reactive oxygen species, DNA damage, apoptosis, and cellular senescence have been associated with reduced osteoprogenitors in a reciprocal fashion to bone marrow adipocyte tissue (BMAT); however, a direct (causal) link between cellular senescence and BMAT is still elusive. Accumulation of senescent cells occur in naturally aged and in focally radiated bone tissue, but despite amelioration of age- and radiation-associated bone loss after senescent cell clearance, molecular events that precede BMAT accrual are largely unknown. Here we show by RNA-Sequencing data that BMAT-related genes were the most upregulated gene subset in radiated bones of C57BL/6 mice. Using focal radiation as a model to understand age-associated changes in bone, we performed a longitudinal assessment of cellular senescence and BMAT. Using real-time quantitative reverse transcription polymerase chain reaction (qRT-PCR), RNA in situ hybridization of p21 transcripts and histological assessment of telomere dysfunction as a marker of senescence, we observed an increase in senescent cell burden of bone cells from day 1 postradiation, without the presence of BMAT. BMAT was significantly elevated in radiated bones at day 7, confirming the qRT-PCR data in which most BMAT-related genes were elevated by day 7, and the trend continued until day 42 postradiation. Similarly, elevation in BMAT-related genes was observed in bones of aged mice. The senolytic cocktail of Dasatinib (D) plus Quercetin (Q) (ie, D + Q), which clears senescent cells, reduced BMAT in aged and radiated bones. MicroRNAs (miRNAs or miRs) linked with senescence marker p21 were downregulated in radiated and aged bones, whereas miR-27a, a miR that is associated with increased BMAT, was elevated both in radiated and aged bones. D + Q downregulated miR-27a in radiated bones at 42 days postradiation. Overall, our study provides evidence that BMAT occurrence in oxidatively stressed bone environments, such as radiation and aging, is induced following a common pathway and is dependent on the presence of senescent cells. © 2022 American Society for Bone and Mineral Research (ASBMR).

摘要

氧化应激诱导的活性氧、DNA 损伤、细胞凋亡和细胞衰老与骨髓脂肪组织(BMAT)中减少的成骨前体细胞呈反式相关;然而,细胞衰老与 BMAT 之间的直接(因果)联系仍然难以捉摸。衰老细胞在自然衰老和局部辐射的骨组织中积累,但尽管衰老细胞清除后改善了年龄和辐射相关的骨丢失,但导致 BMAT 积累的分子事件在很大程度上仍不清楚。在这里,我们通过 RNA 测序数据显示,BMAT 相关基因是 C57BL/6 小鼠辐射骨中上调最明显的基因子集。我们使用局部辐射作为理解与年龄相关的骨变化的模型,对细胞衰老和 BMAT 进行了纵向评估。使用实时定量逆转录聚合酶链反应(qRT-PCR)、p21 转录物的 RNA 原位杂交和端粒功能障碍作为衰老标志物的组织学评估,我们观察到辐射后第 1 天骨细胞衰老细胞负担增加,而没有 BMAT。在辐射骨中,BMAT 在第 7 天显著升高,这证实了 qRT-PCR 数据,其中大多数 BMAT 相关基因在第 7 天升高,并且这种趋势一直持续到辐射后第 42 天。同样,在老年小鼠的骨中观察到 BMAT 相关基因的升高。Dasatinib(D)加 Quercetin(Q)(即 D+Q)的衰老细胞清除剂可减少老年和辐射骨中的 BMAT。与衰老标志物 p21 相关的 microRNAs(miRNAs 或 miRs)下调,而与增加的 BMAT 相关的 miR-27a 在辐射和衰老的骨中均升高。D+Q 在辐射后第 42 天下调了辐射骨中的 miR-27a。总的来说,我们的研究提供了证据表明,在氧化应激骨环境中,如辐射和衰老,BMAT 的发生是通过共同途径诱导的,并且依赖于衰老细胞的存在。2022 年美国骨与矿物研究协会(ASBMR)。

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