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Diffusivity of Human Cartilage Endplates in Healthy and Degenerated Intervertebral Disks

  • Pengling Ren
  • , Peng Chen
  • , Russell A. Reeves
  • , Nathan Buchweitz
  • , Haijun Niu
  • , He Gong
  • , Jeremy Mercuri
  • , Charles A. Reitman
  • , Hai Yao
  • , Yongren Wu*
  • *此作品的通讯作者
  • Clemson University
  • Medical University of South Carolina
  • Capital Medical University
  • Beihang University
  • Thomas Jefferson University

科研成果: 期刊稿件文章同行评审

摘要

The cartilage endplates (CEPs) on the superior and inferior surfaces of the intervertebral disk (IVD), are the primary nutrient transport pathways between the disk and the vertebral body. Passive diffusion is responsible for transporting small nutrient and metabolite molecules through the avascular CEPs. The baseline solute diffusivities in healthy CEPs have been previously studied, however alterations in CEP diffusion associated with IVD degeneration remain unclear. This study aimed to quantitatively compare the solute diffusion in healthy and degenerated human CEPs using a fluorescence recovery after photobleaching (FRAP) approach. Seven healthy CEPs and 22 degenerated CEPs were collected from five fresh-frozen human cadaveric spines and 17 patients undergoing spine fusion surgery, respectively. The sodium fluorescein diffusivities in CEP radial and vertical directions were measured using the FRAP method. The CEP calcification level was evaluated by measuring the average X-ray attenuation. No difference was found in solute diffusivities between radial and axial directions in healthy and degenerated CEPs. Compared to healthy CEPs, the average solute diffusivity was 44% lower in degenerated CEPs (Healthy: 29.07 μm2/s (CI: 23.96-33.62 μm2/s); degenerated: 16.32 μm2/s (CI: 13.84-18.84 μm2/s), p < 0.001). The average solute diffusivity had an inverse relationship with the degree of CEP calcification as determined by the normalized X-ray attenuation values (ß = -22.19, R2 = 0.633; p < 0.001). This study suggests that solute diffusion through the disk and vertebral body interface is significantly hindered by CEP calcification, providing clues to help further understand the mechanism of IVD degeneration.

源语言英语
文章编号071006
期刊Journal of Biomechanical Engineering
145
7
DOI
出版状态已出版 - 1 7月 2023

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  1. 可持续发展目标 3 - 良好健康与福祉
    可持续发展目标 3 良好健康与福祉

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