Literature DB >> 7853100

Effect of static load on matrix synthesis rates in the intervertebral disc measured in vitro by a new perfusion technique.

H Ohshima1, J P Urban, D H Bergel.   

Abstract

The effect of static loading on matrix synthesis was measured in intact bovine coccygeal discs. The discs were maintained at 37 degrees C in a humid atmosphere and were perfused across their upper and lower surfaces for as long as 8 hours with media containing radioisotopes (3H-proline and 35S-sulphate) via porous filter disks embedded in Perspex (Plexiglas) holders. Static loads were applied to the disc with use of weights. The activity of free, nonincorporated isotope in the centre of the disc was monitored continuously with a microdialysis probe. Incorporated tracer in different regions of the disc was determined at the end of each experiment from the activity of the nondialysable tracer. Free tracer activity rose steeply over the first 3-4 hours of perfusion, as tracer diffused into the disc, and reached a steady value after 5-6 hours, as expected from diffusion theory. The rate of tracer incorporation estimated from the integrated value of free tracer concentration was constant for as long as 8 hours. Incorporation rates varied across the disc: the highest rates were in the inner layer of the annulus fibrosus, and the lowest rates were in the outer layer of the annulus. The rates for both 35S-sulphate and 3H-proline varied with load. The rates were lowest in the nucleus pulposus and the inner layer of the annulus fibrosus with a 0.5 kg load, and they almost doubled as the load was increased to 5-10 kg. Heavier loads (15 kg) led to a decrease in incorporation.(ABSTRACT TRUNCATED AT 250 WORDS)

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Year:  1995        PMID: 7853100     DOI: 10.1002/jor.1100130106

Source DB:  PubMed          Journal:  J Orthop Res        ISSN: 0736-0266            Impact factor:   3.494


  40 in total

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2.  Hyperosmotically induced volume change and calcium signaling in intervertebral disk cells: the role of the actin cytoskeleton.

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Journal:  Biophys J       Date:  2002-11       Impact factor: 4.033

Review 3.  Can Exercise Positively Influence the Intervertebral Disc?

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4.  Characterization of an in vitro intervertebral disc organ culture system.

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Journal:  Eur Spine J       Date:  2007-02-14       Impact factor: 3.134

5.  Effects of mechanical compression on metabolism and distribution of oxygen and lactate in intervertebral disc.

Authors:  Chun-Yuh Huang; Wei Yong Gu
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Review 6.  The effects of dynamic loading on the intervertebral disc.

Authors:  Samantha C W Chan; Stephen J Ferguson; Benjamin Gantenbein-Ritter
Journal:  Eur Spine J       Date:  2011-05-04       Impact factor: 3.134

7.  Effect of sustained loading on the water content of intervertebral discs: implications for disc metabolism.

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8.  Analyzing the effects of mechanical and osmotic loading on glycosaminoglycan synthesis rate in cartilaginous tissues.

Authors:  Xin Gao; Qiaoqiao Zhu; Weiyong Gu
Journal:  J Biomech       Date:  2015-01-21       Impact factor: 2.712

9.  Cyclic tensile stress exerts a protective effect on intervertebral disc cells.

Authors:  Gwendolyn Sowa; Sudha Agarwal
Journal:  Am J Phys Med Rehabil       Date:  2008-07       Impact factor: 2.159

10.  Osmotic challenge drives rapid and reversible chromatin condensation in chondrocytes.

Authors:  Jerome Irianto; Joe Swift; Rui P Martins; Graham D McPhail; Martin M Knight; Dennis E Discher; David A Lee
Journal:  Biophys J       Date:  2013-02-19       Impact factor: 4.033

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