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一项针对髋关节形态和骨关节炎相关单核苷酸多态性的系统综述和跨数据库分析揭示了共同的机制。

A systematic review and cross-database analysis of single nucleotide polymorphisms underlying hip morphology and osteoarthritis reveals shared mechanisms.

机构信息

Department of Human Structure and Repair, Faculty of Medicine and Health Sciences, Ghent University, Ghent, Belgium.

Department of Human Structure and Repair, Faculty of Medicine and Health Sciences, Ghent University, Ghent, Belgium; Department of Orthopedic Surgery and Traumatology, Ghent University Hospital, Ghent, Belgium.

出版信息

Osteoarthritis Cartilage. 2024 Aug;32(8):872-885. doi: 10.1016/j.joca.2024.05.010. Epub 2024 Jun 7.

Abstract

OBJECTIVE

Understanding the mechanisms of hip disease, such as osteoarthritis (OA), is crucial to advance their treatment. Such hip diseases often involve specific morphological changes. Genetic variations, called single nucleotide polymorphisms (SNPs), influence various hip morphological parameters. This study investigated the biological relevance of SNPs correlated to hip morphology in genome-wide association studies (GWAS). The SNP-associated genes were compared to genes associated with OA in other joints, aiming to see if the same genes play a role in both hip development and the risk of OA in other lower limb joints.

METHODOLOGY

A systematic literature review was conducted to identify SNPs correlated with hip morphology, based on the Population, Intervention, Comparison, Outcome, and Study (PICOS) framework. Afterwards, Gene Ontology (GO) analysis was performed, using EnrichR, on the SNP-associated genes and compared with non-hip OA-associated genes, across different databases.

RESULTS

Reviewing 49 GWAS identified 436 SNPs associated with hip joint morphology, encompassing variance in bone size, structure and shape. Among the SNP-associated genes, SOX9 plays a pivotal role in size, GDF5 impacts bone structure, and BMP7 affects shape. Overall, skeletal system development, regulation of cell differentiation, and chondrocyte differentiation emerged as crucial processes influencing hip morphology. Eighteen percent of GWAS-identified genes related to hip morphology were also associated with non-hip OA.

CONCLUSION

Our findings indicate the existence of multiple shared genetic mechanisms across hip morphology and OA, highlighting the necessity for more extensive research in this area, as in contrast to the hip, the genetic background on knee or foot morphology remains largely understudied.

摘要

目的

了解髋关节疾病(如骨关节炎(OA))的发病机制对于推进其治疗至关重要。这些髋关节疾病通常涉及特定的形态变化。遗传变异,称为单核苷酸多态性(SNP),会影响各种髋关节形态参数。本研究旨在探讨与全基因组关联研究(GWAS)中髋关节形态相关的 SNP 的生物学相关性。将与 SNP 相关的基因与其他关节的 OA 相关基因进行比较,以确定在髋关节发育和其他下肢关节 OA 风险中是否存在相同的基因。

方法

根据人群、干预、比较、结局和研究(PICOS)框架,进行了系统的文献综述,以确定与髋关节形态相关的 SNP。随后,使用 EnrichR 在不同数据库中对与 SNP 相关的基因和非髋关节 OA 相关基因进行了基因本体论(GO)分析。

结果

综述了 49 项 GWAS,确定了 436 个与髋关节形态相关的 SNP,涵盖了骨骼大小、结构和形状的变化。在与 SNP 相关的基因中,SOX9 在大小方面发挥着关键作用,GDF5 影响骨骼结构,BMP7 影响形状。总体而言,骨骼系统发育、细胞分化调节和软骨细胞分化是影响髋关节形态的关键过程。18%与髋关节形态相关的 GWAS 鉴定基因也与非髋关节 OA 相关。

结论

我们的研究结果表明,髋关节形态和 OA 之间存在多种共同的遗传机制,这突显了在该领域进行更广泛研究的必要性,因为与髋关节相比,膝关节或足部形态的遗传背景在很大程度上仍未得到充分研究。

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