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1.
Asian Spine Journal ; : 407-413, 2016.
Article in English | WPRIM | ID: wpr-131721

ABSTRACT

STUDY DESIGN: Level 1 randomized controlled study. PURPOSE: To investigate the effects of systemic and local interferon-beta-1a (IFN-β-1a) on prevention of epidural fibrosis using histopathological parameters. OVERVIEW OF LITERATURE: Epidural fibrosis involves fibroblastic invasion of nerve roots into the epidural space. Formation of dense fibrous tissue causes lumbar and radicular pain. Many surgical techniques and several materials have been proposed in the literature, but no study has assessed the effect of IFN-β-1a on prevention of epidural fibrosis. METHODS: Forty-eight adult female Sprague-Dawley rats were divided into six groups of eight: sham group, control group, systemic 44 μg IFN-β-1a group and 22 μg IFN-β-1a group (after laminectomy and discectomy, 0.28 mL and 0.14 mL IFN-β-1a applied subcutaneously three times for a week, respectively), local 44 μg IFN-β-1a group (laminectomy and discectomy, followed by 0.28 mL IFN-β-1a on the surgical area), and local 22 μg IFN-β-1a group (laminectomy and discectomy, followed by 0.14 mL IFN-β-1a on the surgical area). All rats were sacrificed after 4 weeks and groups were evaluated histopathologically. RESULTS: Compared with sham and control groups, significantly less epidural fibrosis, dural adhesion, and fibroblast cell density were observed in the local and systemic 44 μg IFN-β-1a groups. No other differences were evident between the local and systemic groups. CONCLUSIONS: IFN-β-1a is effective in preventing epidural fibrosis with systemic and local application.


Subject(s)
Adult , Animals , Female , Humans , Rats , Cell Count , Control Groups , Diskectomy , Epidural Space , Fibroblasts , Fibrosis , Interferon beta-1a , Interferons , Laminectomy , Rats, Sprague-Dawley
2.
Asian Spine Journal ; : 407-413, 2016.
Article in English | WPRIM | ID: wpr-131720

ABSTRACT

STUDY DESIGN: Level 1 randomized controlled study. PURPOSE: To investigate the effects of systemic and local interferon-beta-1a (IFN-β-1a) on prevention of epidural fibrosis using histopathological parameters. OVERVIEW OF LITERATURE: Epidural fibrosis involves fibroblastic invasion of nerve roots into the epidural space. Formation of dense fibrous tissue causes lumbar and radicular pain. Many surgical techniques and several materials have been proposed in the literature, but no study has assessed the effect of IFN-β-1a on prevention of epidural fibrosis. METHODS: Forty-eight adult female Sprague-Dawley rats were divided into six groups of eight: sham group, control group, systemic 44 μg IFN-β-1a group and 22 μg IFN-β-1a group (after laminectomy and discectomy, 0.28 mL and 0.14 mL IFN-β-1a applied subcutaneously three times for a week, respectively), local 44 μg IFN-β-1a group (laminectomy and discectomy, followed by 0.28 mL IFN-β-1a on the surgical area), and local 22 μg IFN-β-1a group (laminectomy and discectomy, followed by 0.14 mL IFN-β-1a on the surgical area). All rats were sacrificed after 4 weeks and groups were evaluated histopathologically. RESULTS: Compared with sham and control groups, significantly less epidural fibrosis, dural adhesion, and fibroblast cell density were observed in the local and systemic 44 μg IFN-β-1a groups. No other differences were evident between the local and systemic groups. CONCLUSIONS: IFN-β-1a is effective in preventing epidural fibrosis with systemic and local application.


Subject(s)
Adult , Animals , Female , Humans , Rats , Cell Count , Control Groups , Diskectomy , Epidural Space , Fibroblasts , Fibrosis , Interferon beta-1a , Interferons , Laminectomy , Rats, Sprague-Dawley
3.
Journal of Veterinary Science ; : 193-196, 2008.
Article in English | WPRIM | ID: wpr-75536

ABSTRACT

We performed biomechanical comparison of a xenograft bone plate-screw (XBPS) system for achieving cadaveric lumbar transpedicular stabilization (TS) in dogs. Twenty dogs' cadaveric L2-4 lumbar specimens were harvested and their muscles were removed, but the discs and ligaments were left intact. These specimens were separated to four groups: the L2-4 intact group as control (group I, n = 5), the L3 laminectomy and bilateral facetectomy group (LBF) (group II, n = 5), the LBF plus TS with metal plate-screw group (group III, n = 5) and the LBF plus TS with XBPS group (group IV, n = 5). Five kinds of biomechanical tests were applied to the specimens: flexion, extension, left-right bending and rotation. The averages of the 16 stiffness values were calculated and then these were statistically analyzed. The statistical results show that the XBPS system contributes spinal stability and this system can be a good choice for achieving TS.


Subject(s)
Animals , Dogs , Biomechanical Phenomena , Bone Plates/veterinary , Bone Screws/veterinary , Cadaver , Lumbar Vertebrae/physiology , Range of Motion, Articular/physiology , Spinal Fusion/instrumentation , Transplantation, Heterologous/instrumentation
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