4.6 Article

The expression of chondrogenesis-related and arthritis-related genes in human ONFH cartilage with different Ficat stages

Journal

PEERJ
Volume 7, Issue -, Pages -

Publisher

PEERJ INC
DOI: 10.7717/peerj.6306

Keywords

Cartilage; ONFH; Gene expression; Different ficat stages

Funding

  1. National Natural Science Foundation of China [81702195]
  2. Project of Application Demonstration Center of Precision Medicine for Molecular Diagnosis in Jilin Province
  3. Department of Science and Technology of Jilin Province, China [20180520125JH]
  4. Project of Education Department of Jilin Province, China [JJKH20170853KJ]
  5. Project of Bethune Youth Foundation of Jilin University, China [2015409]
  6. Project of Health Management Department of Jilin Province, China [20132003]

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Background. It has been well known that the degeneration of hip articular cartilage with osteonecrosis of the femoral head (ONFH) increases the instability of hip and accelerates the development process of ONFH. A better understanding of the expression of chondrogenesis-related and arthritis-related genes of cartilage along with the progression of ONFH seems to be essential for further insight into the molecular mechanisms of ONFH pathogenesis. Methods. We analyzed the differentially expressed gene profile (GSE74089) of human hip articular cartilage with ONFH. The functions and pathway enrichments of differentially expressed genes (DEGs) were analyzed via GO and KEGG analysis. The expression of six selected critical chondrogenesis-related and four arthritis-related genes in eight human hip articular cartilage with femoral neck fracture (FNF) and 26 human hip articular cartilage with different stages ONFH (6 cases of Ficat stage II, 10 cases of Ficat stage III and 10 cases of Ficat stage IV) were detected. Results. A total of 2,174 DEGs, including 1,482 up-regulated and 692 down-regulated ones, were obtained in the ONFH cartilage specimens compared to the control group. The GO and KEGG enrichment analysis indicated that the function of these DEGs mainly enriched in extracellular matrix, angiogenesis, antigen processing and presentation. The results showed a significant stepwise up-expression of chondrogenesis-related genes, including MMP13, ASPN, COL1A1, OGN, COL2A1 and BMP2, along with the progression of ONFH. The arthritis-related genes IL1 beta, IL6 and TNF alpha were only found up-expressed in Ficat IV stage which indicated that the arthritis-related molecular changes were not significant in the progression of ONFH before Ficat III stage. However, the arthritis-related gene PTGS2 was significant stepwise up-expression along with the progression of ONFH which makes it to be a sensitive arthritis-related biomarker of ONFH. Conclusion. Expression changes of six chondrogenesis-related and four arthritis-related genes were found in hip articular cartilage specimens with different ONFH Ficat stages. These findings are expected to a get a further insight into the molecular mechanisms of ONFH progression.

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