Literature DB >> 1192647

The ultrastructure and biomechanical significance of the tidemark of articular cartilage.

I Redler, V C Mow, M L Zimny, J Mansell.   

Abstract

Thirty specimens of human articular cartilage obtained at surgery were examined by scanning electron microscopy to determine the ultrastructure of the tidemark, the junction of the non-calcified and calcified portions of mature articular cartilage. Three distinct variations of the collagen framework of the tidemark were observed: (1) A band of randomly oriented compacted fibrils that appeared to be continuous with those of the non-calcified and calcified zones. (2) A band of flattened fibrils paralleling the undulating surface of the calcified cartilage. (3) A band of perpendicularly oriented fibrils having a distinct continuous transition between the non-calcified and calcified zones, the amount of calcified material applied about the fibrils rapidly increasing as the fibrils entered the calcified zone. The tidemark may serve to provide a tethering mechanism for the relatively flexible and perpendicularly oriented collagen fibrils of the deepest portion of the non-calcified articular cartilage and may prevent them from being sheared at their point of anchorage to the calcified zone. The undulating pattern of the tidemark affords a strong geometric pattern in providing resistance to the shearing action of articulation. Small gaps present in the tidemark may provide pathways for the passage of nutrients into the deep non-calcified zone of articular cartilage from the subchondral bone.

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Year:  1975        PMID: 1192647

Source DB:  PubMed          Journal:  Clin Orthop Relat Res        ISSN: 0009-921X            Impact factor:   4.176


  31 in total

1.  The organisation of collagen fibrils in the superficial zones of articular cartilage.

Authors:  J M Clark
Journal:  J Anat       Date:  1990-08       Impact factor: 2.610

2.  The tidemark of the chondro-osseous junction of the normal human knee joint.

Authors:  T J Lyons; R W Stoddart; S F McClure; J McClure
Journal:  J Mol Histol       Date:  2005-03       Impact factor: 2.611

3.  A functional agarose-hydroxyapatite scaffold for osteochondral interface regeneration.

Authors:  Nora T Khanarian; Nora M Haney; Rachel A Burga; Helen H Lu
Journal:  Biomaterials       Date:  2012-04-22       Impact factor: 12.479

4.  Anisotropy, inhomogeneity, and tension-compression nonlinearity of human glenohumeral cartilage in finite deformation.

Authors:  Chun-Yuh Huang; Anna Stankiewicz; Gerard A Ateshian; Van C Mow
Journal:  J Biomech       Date:  2005-04       Impact factor: 2.712

5.  The collagen fibril organization in human articular cartilage.

Authors:  R J Minns; F S Steven
Journal:  J Anat       Date:  1977-04       Impact factor: 2.610

6.  Thickness of the subchondral mineralised tissue zone (SMZ) in normal male and female and pathological human patellae.

Authors:  F Eckstein; S Milz; H Anetzberger; R Putz
Journal:  J Anat       Date:  1998-01       Impact factor: 2.610

7.  Dual inversion recovery ultrashort echo time (DIR-UTE) imaging and quantification of the zone of calcified cartilage (ZCC).

Authors:  J Du; M Carl; W C Bae; S Statum; E Y Chang; G M Bydder; C B Chung
Journal:  Osteoarthritis Cartilage       Date:  2012-09-28       Impact factor: 6.576

8.  Immunohistochemical distribution of type I, II and III collagens in the rabbit supraspinatus tendon insertion.

Authors:  J Kumagai; K Sarkar; H K Uhthoff; Y Okawara; A Ooshima
Journal:  J Anat       Date:  1994-10       Impact factor: 2.610

9.  Alterations in the collagen framework of osteoarthritic cartilage and subchondral bone.

Authors:  H Inoue
Journal:  Int Orthop       Date:  1981       Impact factor: 3.075

10.  Mechanical evaluation of a tissue-engineered zone of calcification in a bone-hydrogel osteochondral construct.

Authors:  Jérôme Hollenstein; Alexandre Terrier; Esther Cory; Albert C Chen; Robert L Sah; Dominique P Pioletti
Journal:  Comput Methods Biomech Biomed Engin       Date:  2013-05-24       Impact factor: 1.763

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