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Assessment of post-trauma microstructural alterations in the rabbit knee cartilage and subchondral bone.
Singh, Amanveer; Mantebea, Hannah; Badar, Farid; Batool, Syeda; Tetmeyer, Austin; Abdelmessih, Gabrielle; Sebastian, Talia; Newton, Michael; Baker, Kevin; Salem, Sarah; Xia, Yang.
Afiliação
  • Singh A; Department of Physics and Center for Biomedical Research, Oakland University, Rochester, Michigan, USA.
  • Mantebea H; Department of Physics and Center for Biomedical Research, Oakland University, Rochester, Michigan, USA.
  • Badar F; Department of Physics and Center for Biomedical Research, Oakland University, Rochester, Michigan, USA.
  • Batool S; Department of Physics and Center for Biomedical Research, Oakland University, Rochester, Michigan, USA.
  • Tetmeyer A; Department of Physics and Center for Biomedical Research, Oakland University, Rochester, Michigan, USA.
  • Abdelmessih G; Department of Chemistry, Oakland University, Rochester, Michigan, USA.
  • Sebastian T; Department of Chemistry, Oakland University, Rochester, Michigan, USA.
  • Newton M; Orthopedic Research Laboratories, Beaumont Hospital, Royal Oak, Michigan, USA.
  • Baker K; Department of Orthopedic Surgery, University of Michigan, Ann Arbor, Michigan, USA.
  • Salem S; Orthopedic Research Laboratories, Beaumont Hospital, Royal Oak, Michigan, USA.
  • Xia Y; Bone & Joint Center, Henry Ford Hospital, Detroit, Michigan, USA.
J Anat ; 2024 Jun 24.
Article em En | MEDLINE | ID: mdl-38924533
ABSTRACT
Early diagnosis of post-traumatic osteoarthritis (PTOA) is critical for designing better treatments before the degradation becomes irreversible. We utilized multimodal high-resolution imaging to investigate early-stage deterioration in articular cartilage and the subchondral bone plate from a sub-critical impact to the knee joint, which initiates PTOA. The knee joints of 12 adult rabbits were mechanically impacted once on the femoral articular surface to initiate deterioration. At 2- and 14-week post-impact surgery, cartilage-bone blocks were harvested from the impact region in the animals (N = 6 each). These blocks were assessed for deterioration using polarized light microscopy (PLM), microcomputed tomography (µCT), and biochemical analysis. Statistically significant changes were noted in the impact tissues across the calcified zone (CZ) at 14 weeks post-impact the optical retardation values in the CZ of impact cartilage had a drop of 29.0% at 14 weeks, while the calcium concentration in the CZ of impact cartilage also had a significant drop at 14 weeks. A significant reduction of 6.3% in bone mineral density (BMD) was noted in the subchondral bone plate of the impact samples at 14 weeks. At 2 weeks post-impact, only minor, non-significant changes were measured. Furthermore, the impact knees after 14 weeks had greater structural changes compared with the 2-week impact knees, indicating progressive degradation over time. The findings of this study facilitated a connection between mineralization alterations and the early deterioration of knee cartilage after a mechanical injury. In a broader context, these findings can be beneficial in improving clinical strategies to manage joint injuries.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article