The influence of human intervertebral disc tissue on the metabolism of osteoblast-like cells
DOI:
https://doi.org/10.1080/000164700317381216Abstract
Extensive studies have been performed to evaluate different factors that may affect on spinal interbody fusion, but the role of intervertebral disc tissue in the fusion process remains unclear. To study the influence of intervertebral disc tissue on osteoblast metabolism, we harvested disc tissue from patients who had undergone spinal surgery. The nucleus pulposus and annulus fibrosus were separately co-cultured with osteoblast-like cells SaOS-2 by means of culture inserts or organ culture. We assayed alkaline phosphoatase activity, 3 H-thymidine incorporation into the DNA, and production of collagen type I, IL-1^6;, IL-6, IL10, and TNF-^5;. Exposure of the nucleus pulposus (NP) to osteoblastlike cells revealed stimulation of alkaline phosphatase production, 3 H-thymidine incorporation and collagen type I production. Exposure of the annulus fibrosus (AF) stimulated 3 H-thymidine incorporation and collagen type I production, but did not affect ALP activity. IL-6 was detected after application of NP and AF. Interleukin IL-10, IL-1^6; and TNF-^5; were all below detection levels after application of disc tissue. Our findings show that frozen disc tissue stimulates the metabolism of osteoblast-like cells in vitro.Downloads
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Published
2000-01-01
How to Cite
Li, H., Laursen, M., Lind, M., Sun, C., & Bünger, C. (2000). The influence of human intervertebral disc tissue on the metabolism of osteoblast-like cells. Acta Orthopaedica, 71(5), 503–507. https://doi.org/10.1080/000164700317381216
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Acta Orthopaedica (Scandinavica) content is available freely online as from volume 1, 1930. The journal owner owns the copyright for all material published until volume 80, 2009. As of June 2009, the journal has however been published fully Open Access, meaning the authors retain copyright to their work. As of June 2009, articles have been published under CC-BY-NC or CC-BY licenses, unless otherwise specified.
