骨关节炎
软骨
骨细胞
串扰
全基因组关联研究
软骨下骨
关节软骨
医学
病理
生物
解剖
基因
遗传学
单核苷酸多态性
成骨细胞
基因型
物理
体外
替代医学
光学
作者
Serra Kaya,Karsyn N. Bailey,Charles A. Schurman,Daniel S. Evans,Tamara Alliston
出处
期刊:Bone reports
[Elsevier]
日期:2023-06-01
卷期号:18: 101647-101647
被引量:4
标识
DOI:10.1016/j.bonr.2022.101647
摘要
Subchondral bone participates in crosstalk with articular cartilage to maintain joint homeostasis, and disruption of either tissue results in overall joint degeneration. Among the subchondral bone changes observed in osteoarthritis (OA), subchondral bone plate (SBP) thickening has a time-dependent relationship with cartilage degeneration and has recently been shown to be regulated by osteocytes. Here, we evaluate the effect of age on SBP thickness and cartilage degeneration in aging mice. We find that SBP thickness significantly increases by 18-months of age, corresponding temporally with increased cartilage degeneration. To identify factors in subchondral bone that may participate in bone cartilage crosstalk or OA, we leveraged mouse transcriptomic data from one joint tissue compartment - osteocyte-enriched bone - to search for enrichment with human OA in UK Biobank and Arthritis Research UK Osteoarthritis Genetics (arcOGEN) GWAS using the mouse2human (M2H, www.mouse2human.org) strategy. Genes differentially expressed in aging mouse bone are significantly enriched for human OA, showing joint site-specific (knee vs. hip) relationships, exhibit temporal associations with age, and unique gene clusters are implicated in each type of OA. Application of M2H identifies genes with known and unknown functions in osteocytes and OA development that are clinically associated with human OA. Altogether, this work prioritizes genes with a potential role in bone/cartilage crosstalk for further mechanistic study based on their association with human OA in GWAS.
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