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The Interplay of Biomechanical and Biological Changes Following Meniscus Injury.

Patrick X BradleyKarl N ThomasAvery L KratzerAllison C RobinsonJocelyn R WittsteinLouis E DeFrateAmy L McNulty
Published in: Current rheumatology reports (2022)
Following meniscus injury, both biomechanical and biological alterations frequently occur in multiple tissues in the joint. Biomechanically, meniscus tears compromise the ability of the meniscus to transfer load in the joint, making the cartilage more vulnerable to increased strain. Biologically, the post-injury environment is often characterized by an increase in pro-inflammatory cytokines, catabolic enzymes, and immune cells. These multi-faceted changes have a significant interplay and result in an environment that opposes tissue repair and contributes to PTOA development. Additionally, degenerative changes associated with OA may cause a feedback cycle, negatively impacting the healing capacity of the meniscus. Strides have been made towards understanding post-injury biological and biomechanical changes in the joint, their interplay, and how they affect healing and PTOA development. However, in order to improve clinical treatments to promote meniscus healing and prevent PTOA development, there is an urgent need to understand the physiologic changes in the joint following injury. In particular, work is needed on the in vivo characterization of the temporal biomechanical and biological changes that occur in patients following meniscus injury and how these changes contribute to PTOA development.
Keyphrases
  • anterior cruciate ligament
  • anterior cruciate ligament reconstruction
  • end stage renal disease
  • gene expression
  • ejection fraction
  • prognostic factors
  • peritoneal dialysis
  • patient reported outcomes