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Osteochondral Interface Stiffening in Mandibular Condylar Osteoarthritis

  • J. Zhang
  • , L. Liao
  • , J. Zhu
  • , X. Wan
  • , M. Xie
  • , H. Zhang
  • , M. Zhang
  • , L. Lu
  • , H. Yang
  • , D. Jing
  • , X. Liu
  • , S. Yu
  • , X. L. Lu
  • , C. Chen
  • , Z. Shan
  • , M. Wang
  • Air Force Medical University
  • Xi'an Jiaotong University
  • University of Delaware

Research output: Contribution to journalArticlepeer-review

62 Scopus citations

Abstract

Osteoarthritis (OA) of the temporomandibular joint (TMJ) is associated with dental biomechanics. A major change during OA progression is the ossification of the osteochondral interface. This study investigated the formation, radiological detectability, and mechanical property of the osteochondral interface at an early stage, the pathogenesis significance of which in OA progression is of clinical interest and remains elusive for the TMJ. Unilateral anterior crossbite (UAC) was performed on 6-wk-old rats as we previously reported. TMJs were harvested at 4, 12, and 20 wk. The progression of TMJ OA was evaluated using a modified Osteoarthritis Research Society International (OARSI) score system. Osteochondral interface was investigated by quantifying the thickness via von Kossa staining of histological slices and in vivo calcium deposition by calcein injection. Tissue ossification was imaged by micro–computed tomography (CT). Mechanical properties were measured at nanoscale using dynamic indentation. Time-dependent TMJ cartilage lesions were elicited by UAC treatment. Geometric change of the condyle head and increased value of the OARSI score were evident in UAC TMJs. At the osteochondral interface, there was not only enhanced deep-zone cartilage calcification but also calcium deposition at the osseous boundary. The thickness, density, and stiffness of the osteochondral interface were all significantly increased. The enhanced ossification of the osteochondral interface is a joint outcome of the aberrant deeper cartilage calcification at the superior region and promoted formation of subchondral cortical bone at the inferior region. The micro-CT detectable ossification from an early stage thus is of diagnostic significance. Although the environment of the cartilage and subchondral bone could be changed due to the stiffness of the interface, whether or not the stiffened interface would accelerate OA progress remains to be confirmed. With that evidence, the osteochondral interface could be a new diagnostic and therapeutic target of the mechanically initiated OA in the TMJ.

Original languageEnglish
Pages (from-to)563-570
Number of pages8
JournalJournal of Dental Research
Volume97
Issue number5
DOIs
StatePublished - 1 May 2018

Keywords

  • calcification
  • cartilage
  • dental occlusion
  • experimental animal models
  • osteogenesis
  • temporomandibular joint

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