Literature DB >> 20190387

Structural changes in the ageing periosteum using collagen III immuno-staining and chromium labelling as indicators.

A Al-Qtaitat1, R C Shore, J E Aaron.   

Abstract

The periosteum and Sharpey's fibre extensions occupy the musculoskeletal interface and may be strategic in age-related deterioration. Because of its exceptionally powerful insertions the porcine mandible is an ideal model and its periosteal system was compared in 4 separate regions of adult young (1 year) and older (3 year) animals. These were examined by undecalcified histology, collagen immunohistochemistry and mineral histochemistry using polarization, epifluorescence and laser confocal microscopy; mineral ultrastructure was facilitated by chromium labelling with EDX microanalysis. Birefringent Sharpey's fibres were coarse (>8 microm) or fine and classified as horizontal (more common with age), oblique (most common in youth) or vertical (least common); in addition they were designated "superficial", "transcortical" and "intertrabecular" (the latter being deep, coarse and vertical). Their specific affinity for collagen type III FITC-labelled antibody demonstrated 3-dimensional arrays of bone-permeating fibres. With age at each region the cortical thickness rose (e.g. 4.9 mm to 9.3 mm), the periosteum thinned (e.g. 180-/+7 microm to 129-/+8 microm; p<0.001), and the periosteum: bone ratio diminished (e.g. 3.65-/+0.36 to 1.40-/+0.14; p<0.001) while Sharpey's fibres became fewer, fragmented, superficial and shortened (e.g. 226-/+27 microm to 55-/+6 microm; p<0.001). Accompanying was the sporadic encroachment of calcified particles, 1 microm diameter, in irregular periosteal aggregates or interlinked around Sharpey bundles (resembling calcifying turkey leg tendon). EDX microanalysis confirmed prominent chromium spectral peaks in the older periosteum only, coincident with chromium-labelled mineral "ghosts". It was concluded that the periosteum and Sharpey's fibres, deep-penetrating and complex in youth, partially hardens and regresses with age with implications for its functional properties.

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Year:  2010        PMID: 20190387

Source DB:  PubMed          Journal:  J Musculoskelet Neuronal Interact        ISSN: 1108-7161            Impact factor:   2.041


  10 in total

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2.  Bioinspired Collagen/Gelatin Nanopillared Films as a Potential Implant Coating Material.

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4.  Myoconductive and osteoinductive free-standing polysaccharide membranes.

Authors:  Sofia G Caridade; Claire Monge; Jorge Almodóvar; Raphael Guillot; Jonathan Lavaud; Véronique Josserand; Jean-Luc Coll; João F Mano; Catherine Picart
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5.  Anchoring structure of the calvarial periosteum revealed by focused ion beam/scanning electron microscope tomography.

Authors:  Shingo Hirashima; Keisuke Ohta; Tomonoshin Kanazawa; Kei-ichiro Uemura; Akinobu Togo; Munetake Yoshitomi; Satoko Okayama; Jingo Kusukawa; Kei-ichiro Nakamura
Journal:  Sci Rep       Date:  2015-12-02       Impact factor: 4.379

6.  Inflammation, ageing, and bone regeneration.

Authors:  Emmanuel Gibon; Laura Y Lu; Karthik Nathan; Stuart B Goodman
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7.  Scale-up of nature's tissue weaving algorithms to engineer advanced functional materials.

Authors:  Joanna L Ng; Lillian E Knothe; Renee M Whan; Ulf Knothe; Melissa L Knothe Tate
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8.  Ischaemia, healing and outcomes in proximal humeral fractures.

Authors:  Simon M Lambert
Journal:  EFORT Open Rev       Date:  2018-05-21

9.  Periosteal Sharpey's fibers: a novel bone matrix regulatory system?

Authors:  Jean E Aaron
Journal:  Front Endocrinol (Lausanne)       Date:  2012-08-09       Impact factor: 5.555

Review 10.  Distinct characteristics of mandibular bone collagen relative to long bone collagen: relevance to clinical dentistry.

Authors:  Takashi Matsuura; Kentaro Tokutomi; Michiko Sasaki; Michitsuna Katafuchi; Emiri Mizumachi; Hironobu Sato
Journal:  Biomed Res Int       Date:  2014-04-10       Impact factor: 3.411

  10 in total

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