4.5 Article

Level dependent alterations in human facet cartilage mechanics and bone morphometry with spine degeneration

期刊

JOURNAL OF ORTHOPAEDIC RESEARCH
卷 41, 期 3, 页码 674-683

出版社

WILEY
DOI: 10.1002/jor.25407

关键词

biomechanics; indentation; intervertebral disc degeneration; osteoarthritis; zygapophyseal joint

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This study characterizes alterations to human facet cartilage and subchondral bone across a spectrum of degeneration and investigates correlations between disc and facet degeneration. The findings suggest that the mechanical properties of facet cartilage and the structural properties of facet subchondral bone change with increasing degenerative grade and are correlated with aspects of disc degeneration.
The zygapophyseal joints of the spine, also known as the facet joints, are paired diarthrodial joints posterior to the intervertebral disc and neural elements. The pathophysiology of facet osteoarthritis (OA), as well as crosstalk between the disc and facets, remains largely understudied compared to disc degeneration. The purpose of this study was to characterize alterations to human facet cartilage and subchondral bone across a spectrum of degeneration and to investigate correlations between disc and facet degeneration. Human lumbar facet articular surfaces from six independent donors were subject to creep indentation mechanical testing to quantify cartilage mechanical properties, followed by microcomputed tomography (mu CT) analyses for subchondral bone morphometry. The degenerative state of each articular surface was assessed via macroscopic scoring and via Osteoarthritis Research Society International histopathology scoring. Our data suggest reduced facet cartilage compressive and tensile moduli and increased permeability with increasing degenerative grade, particularly at the lower levels of the spine. mu CT analyses revealed spinal level-dependent alterations to the subchondral bone, with an increase in trabecular bone at the L4-L5 level, but a decrease at the upper levels of the lumbar spine with increasing degenerative grade. Cortical bone volume fraction was generally decreased with increasing degenerative grade across spinal levels. Correlation analysis revealed several associations between quantitative measures of disc degeneration and facet OA. This study showed that alterations in the mechanical properties of facet cartilage and in the structural properties of facet subchondral bone correlated with aspects of disc degeneration and were highly dependent on spinal level.

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