Literature DB >> 8423522

Proteoglycans in the compressed region of human tibialis posterior tendon and in ligaments.

K G Vogel1, A Ordög, G Pogány, J Oláh.   

Abstract

Proteoglycan content and tissue morphology were examined in tendons and ligaments from 24 cadavers, ranging in age at the time of death from 1.5 months to 83 years. The region of the human tibialis posterior tendon that passes under the medial malleolus was characterized by cells having a rounded shape, positive staining with alcian blue, and higher glycosaminoglycanuronic acid content than in the more proximal region of the same tendon. Analysis of proteoglycans by sodium dodecyl sulfate/polyacrylamide gel electrophoresis indicated that the predominant small proteoglycan of the proximal/tensional region was decorin, whereas two types of small proteoglycans (decorin and biglycan) and large proteoglycans were present in the region passing under the medial malleolus and presumably subjected to compressive and shear forces in addition to tension. The pattern of proteoglycan accumulation in the compressed region of tendon was basically similar for all individuals and showed no distinctive trends related to age after puberty. In terms of type and amount of proteoglycan, the patellar tendon was like the tensional region of the tibialis posterior. Glycosaminoglycan content in the lateral collateral ligament and anterior cruciate ligament, however, was twofold higher than in the tendons. The ligaments contained large as well as small proteoglycans, just as in the compressed region of tendon.

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Year:  1993        PMID: 8423522     DOI: 10.1002/jor.1100110109

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


  46 in total

Review 1.  Fibrocartilage in tendons and ligaments--an adaptation to compressive load.

Authors:  M Benjamin; J R Ralphs
Journal:  J Anat       Date:  1998-11       Impact factor: 2.610

2.  Catabolism of aggrecan, decorin and biglycan in tendon.

Authors:  S G Rees; C R Flannery; C B Little; C E Hughes; B Caterson; C M Dent
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3.  The functional anatomy of the human anterior talofibular ligament in relation to ankle sprains.

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4.  Fibrocartilage tissue engineering: the role of the stress environment on cell morphology and matrix expression.

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5.  Ectopic induction of tendon and ligament in rats by growth and differentiation factors 5, 6, and 7, members of the TGF-beta gene family.

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Review 6.  Biomechanics and pathophysiology of overuse tendon injuries: ideas on insertional tendinopathy.

Authors:  Constantinos N Maganaris; Marco V Narici; Louis C Almekinders; Nicola Maffulli
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7.  Glycosaminoglycans of human rotator cuff tendons: changes with age and in chronic rotator cuff tendinitis.

Authors:  G P Riley; R L Harrall; C R Constant; M D Chard; T E Cawston; B L Hazleman
Journal:  Ann Rheum Dis       Date:  1994-06       Impact factor: 19.103

8.  Proteoglycans and catabolic products of proteoglycans present in ligament.

Authors:  Mirna Z Ilic; Phillip Carter; Alicia Tyndall; Jayesh Dudhia; Christopher J Handley
Journal:  Biochem J       Date:  2005-01-15       Impact factor: 3.857

9.  Vaginal degeneration following implantation of synthetic mesh with increased stiffness.

Authors:  R Liang; S Abramowitch; K Knight; S Palcsey; A Nolfi; A Feola; S Stein; P A Moalli
Journal:  BJOG       Date:  2013-01       Impact factor: 6.531

10.  Role of biomechanics in the understanding of normal, injured, and healing ligaments and tendons.

Authors:  Ho-Joong Jung; Matthew B Fisher; Savio L-Y Woo
Journal:  Sports Med Arthrosc Rehabil Ther Technol       Date:  2009-05-20
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