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The effects of simulated microgravity on intervertebral disc degeneration
Authors:Li Jin  Gang Feng  Davis L. Reames  Adam L. Shimer  Francis H. Shen  Xudong Li
Affiliation:1. Affordable Pain Management, 5600 N Sheridan Rd, #104, Chicago, IL 60660, USA;2. Anesthesiology, Critical Care and Pain Medicine Service, VA Boston Healthcare System, 150 S. Huntington Avenue, Boston, MA 02130, USA;3. Department of Anesthesiology, Pain Medicine Division, Penn State College of Medicine, 500 University Drive, PO Box 850, Hershey, PA 17033-0850, USA;4. Southern Rehabilitation Institute, 29 Byron Street, PO Box 7549, Sydenham, Christchurch 8240, New Zealand
Abstract:Background contextAstronauts experience back pain, particularly low back pain, during and after spaceflight. Recent studies have described histologic and biochemical changes in rat intervertebral discs after space travel, but there is still no in vitro model to investigate the effects of microgravity on disc metabolism.PurposeTo study the effects of microgravity on disc degeneration and establish an in vitro simulated microgravity study model.Study designDiscs were cultured in static and rotating conditions in bioreactor, and the characteristics of disc degeneration were evaluated.MethodsThe mice discs were cultured in a rotating wall vessel bioreactor where the microgravity condition was simulated. Intervertebral discs were cultured in static and microgravity condition. Histology, biochemistry, and immunohistochemical assays were performed to evaluate the characteristics of the discs in microgravity condition.ResultsIntervertebral discs cultured in rotating bioreactors were found to develop changes of disc degeneration manifested by reduced red Safranin-O staining within the annulus fibrosus, downregulated glycosaminoglycan (GAG) content and GAG/hydroxyproline ratio, increased matrix metalloproteinase 3 expression, and upregulated apoptosis.ConclusionsWe conclude that simulated microgravity induces the molecular changes of disc degeneration. The rotating bioreactor model will provide a foundation to investigate the effects of microgravity on disc metabolism.
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