Objective: To compare biological characteristics between nucleus pulposus and annulus fibrosus cells in vitro model.
Methods: Five New Zealand white rabbits (2 to 3 kg, either gender) were isolated nucleus pulposus and annulus fibrosus under sterilized condition, then cultured in nutrient solution with 15% FBS and DMEM/F12 (1:1) by enzyme digestion combined with tissue block method. When 90% cells fused, subcultring were performed. Cell morphology were observed by inverted phase contrast microscope, cell viability were detected by trypan blue staining, histological were observed by a toluidine blue and HE staining, cell proliferation were tested by MTT method, then the cell morphology, viability, proliferation between nucleus pulposus and annulus fibrosus were compared.
Results: There were no obviously differences between nucleus pulposus and annulus fibrosus in original and the first strain. Physalides were appeared in annulus fibrosus on the second generation. The strapping time was later, and activity was lower in nucleus pulposus than annulus fibrosus. The growth of cell proliferation in nucleus pulposus was lower than annulus fibrosus from the ninth day.
Conclusion: The cell activity in annulus fibrosus is higher than nucleus pulposus. Digenerative disc disease may caused by recession of nucleus pulposus,local biomechnical changes, furether caused structure change and function loss of annulus fibrosus.
Download full-text PDF |
Source |
---|
Clin Biomech (Bristol)
December 2024
Department of Kinesiology and Physical Education, Wilfrid Laurier University, Waterloo, Ontario, Canada; Department of Health Sciences, Wilfrid Laurier University, Waterloo, Ontario, Canada. Electronic address:
Background: Vertebral fractures in young populations are associated with intervertebral disc disorders later in life. However, damage to the annulus fibrosus has been observed in rapidly loaded spines even without the subsequent occurrence of a fracture. Therefore, it may not be the fracture event that compromises the disc, but rather the manner in which the disc is loaded.
View Article and Find Full Text PDFBiochem Pharmacol
December 2024
Department of Orthopedics, The First Affiliated Hospital of Soochow University, Suzhou 215006, Jiangsu, China. Electronic address:
As an important pathological process, annulus fibrosus (AF) degeneration contributes greatly to intervertebral disc degeneration (IVDD). Moreover, extracellular matrix (ECM) degradation and AF cell (AFC) autophagy are of utmost importance. The involvement of cannabinoid receptor type 2 (CB2) in the pathological mechanisms underlying different diseases has been demonstrated dueto its capacity toregulateautophagy.
View Article and Find Full Text PDFQuant Imaging Med Surg
December 2024
Department of Radiology, The Affiliated Hospital of Hangzhou Normal University, Hangzhou, China.
Background: Lumbar spine injuries and lumbar disc degeneration are common spinal health problems that seriously affect people's quality of life and efficiency at work. Marathon running enhances skeletal muscle strength and endurance, and promotes increased bone mineral density. This study aimed to investigate the effects of marathon running on the lumbar spine and surrounding tissue components.
View Article and Find Full Text PDFInt J Mol Sci
November 2024
Department of Physiology and Pharmacology, School of Medicine, Faculty of Health Sciences, Aristotle University of Thessaloniki (A.U.Th.), 54124 Thessaloniki, Greece.
The ovine cervical spine model has been established as a representative model of the human cervical spine in the current literature, and is the most commonly used large animal model in studies investigating pathogenesis and treatment strategies for intervertebral disc (IVD) degeneration. However, existing data regarding morphometry, biomechanical profiles and the microscopic features of a physiological ovine cervical IVD remain scarce. Hence, the aim of this study was to perform a multimodal morphometric, biomechanical and histologic evaluation of a normal ovine cervical IVD.
View Article and Find Full Text PDFJ Biomech Eng
December 2024
Wilfrid Laurier University, 75 University Ave W, Waterloo, ON N2L 3C5.
The interlamellar matrix (ILM), located between the annular layers of the intervertebral disc, is an adhesive component which acts to resist delamination. Investigating the mechanical properties of the ILM can provide us with valuable information regarding risk of disc injury; however given its viscoelastic nature, it may be necessary to conduct preconditioning on tissue samples before measuring these ILM properties. Therefore, the aim of this study was to optimize mechanical testing protocols of the ILM by examining the effect of preconditioning on stiffness and strength of this adhesive matrix.
View Article and Find Full Text PDFEnter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!