Depletion of collagen IX alpha2 interferes osteochondral homeostasis of the knee joint which ultimately causing osteoarthritis-like articular cartilage damage
Dong, R.; Xu, H.; Wang, P.; Fang, L.; Xiao, L.; Lv, S.; Tong, P.; Jin, H.
Show abstract
As one of the branched chains of Type IX collagen (Col9), Collagen IX alpha2 (Col92) has been reported to be associated with several orthopedic conditions. To probe the relationship between Col92 and knee osteoarthritis (KOA), we performed a systematic analysis of Col92-deficient (Col9-/-) mice using whole-mount skeletal staining, Micro-CT (CT), biomechanics, histomorphometry, immunohistochemistry (IHC), immunofluorescence (IF) and Enzyme-linked immunosorbent (Elisa). Although whole-mount skeletal staining displayed no difference in bone length and ossification between Col9-/- mice and wild-type (Col92+/+) mice at mid-gestation and adult stages, the knee joint exhibited dramatic discrepancies. Specifically, the subchondral bone (SCB) in the knee joint of Col9-/- mice became sparse and deformed in the early stage, with altered bone morphometric parameters, reduced load-bearing capacity, dysfunctional bone homeostasis (decreased osteogenesis capacity and elevated bone resorption capacity), diminished cartilage proteoglycans and disrupted cartilage extracellular matrix (ECM) anabolism and catabolism compared with the Col92+/+ mice. In the late stage, the cartilage degeneration in Col92-/- mice were particularly pronounced compared to Col92+/+ mice, as evidenced by severe cartilage destruction and a marked reduction in cartilage thickness and area. Overall, Col92 is essential for maintaining osteochondral homeostasis in the knee joint of mice, and the absence of this gene is accompanied by distinct sclerosis of the SCB and a reduction in load-bearing capacity; in the late stage, in the lack of SCB stress inhibition, excessive load is consistently exerted on the cartilage, ultimately leading to osteoarthritic-like articular cartilage damage. Hence, Col92 may serve as a potential candidate biomarker associated with KOA.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Metformin regulates bone marrow stromal cells to accelerate bone healing in diabetic mice 98%
- Cbfβ regulates Wnt/β-catenin, Hippo/Yap, and TGFβ signaling pathways in articular cartilage homeostasis and protects from ACLT surgery-induced osteoarthritis 97%
- Bone canonical Wnt signaling is downregulated in type 2 diabetes and associates with higher Advanced Glycation End-products (AGEs) content and reduced bone strength 96%
Similar papers in this journal
Similar papers in this journal
- Joint Instability Causes Catabolic Enzyme Production in Chondrocytes prior to Synovial Cells in Novel Non-Invasive ACL ruptured Mouse Model 97%
- Concurrent Joint Contact in Anterior Cruciate Ligament Injury induces cartilage micro-injury and subchondral bone sclerosis, resulting in knee osteoarthritis 96%
- BMP signaling: A significant player and therapeutic target for osteoarthritis 96%
Similar papers in this journal
- Leptin signaling and the intervertebral disc: Sex dependent effects of leptin receptor deficiency and Western diet on the spine in a type 2 diabetes mouse model 96%
- RORβ modulates a gene program that is protective against articular cartilage damage 95%
- Prrx1-driven LINC complex disruption in vivo reduces osteoid deposition but not bone quality after voluntary wheel running 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.