Literature DB >> 20526790

Contribution of postnatal collagen reorientation to depth-dependent mechanical properties of articular cartilage.

Mark C van Turnhout1, Sander Kranenbarg, Johan L van Leeuwen.   

Abstract

The collagen fibril network is an important factor for the depth-dependent mechanical behaviour of adult articular cartilage (AC). Recent studies show that collagen orientation is parallel to the articular surface throughout the tissue depth in perinatal animals, and that the collagen orientations transform to a depth-dependent arcade-like structure in adult animals. Current understanding on the mechanobiology of postnatal AC development is incomplete. In the current paper, we investigate the contribution of collagen fibril orientation changes to the depth-dependent mechanical properties of AC. We use a composition-based finite element model to simulate in a 1-D confined compression geometry the effects of ten different collagen orientation patterns that were measured in developing sheep. In initial postnatal life, AC is mostly subject to growth and we observe only small changes in depth-dependent mechanical behaviour. Functional adaptation of depth-dependent mechanical behaviour of AC takes place in the second half of life before puberty. Changes in fibril orientation alone increase cartilage stiffness during development through the modulation of swelling strains and osmotic pressures. Changes in stiffness are most pronounced for small stresses and for cartilage adjacent to the bone. We hypothesize that postnatal changes in collagen fibril orientation induce mechanical effects that in turn promote these changes. We further hypothesize that a part of the depth-dependent postnatal increase in collagen content in literature is initiated by the depth-dependent postnatal increase in fibril strain due to collagen fibril reorientation.

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Year:  2010        PMID: 20526790     DOI: 10.1007/s10237-010-0233-7

Source DB:  PubMed          Journal:  Biomech Model Mechanobiol        ISSN: 1617-7940


  10 in total

Review 1.  Multiscale mechanics of articular cartilage: potentials and challenges of coupling musculoskeletal, joint, and microscale computational models.

Authors:  J P Halloran; S Sibole; C C van Donkelaar; M C van Turnhout; C W J Oomens; J A Weiss; F Guilak; A Erdemir
Journal:  Ann Biomed Eng       Date:  2012-05-31       Impact factor: 3.934

2.  Stretch-induced network reconfiguration of collagen fibres in the human facet capsular ligament.

Authors:  Sijia Zhang; Danielle S Bassett; Beth A Winkelstein
Journal:  J R Soc Interface       Date:  2016-01       Impact factor: 4.118

3.  Supplementation of exogenous adenosine 5'-triphosphate enhances mechanical properties of 3D cell-agarose constructs for cartilage tissue engineering.

Authors:  Ivana Gadjanski; Supansa Yodmuang; Kara Spiller; Sarindr Bhumiratana; Gordana Vunjak-Novakovic
Journal:  Tissue Eng Part A       Date:  2013-06-25       Impact factor: 3.845

4.  Mechanically induced structural changes during dynamic compression of engineered cartilaginous constructs can potentially explain increases in bulk mechanical properties.

Authors:  Thomas Nagel; Daniel J Kelly
Journal:  J R Soc Interface       Date:  2011-09-07       Impact factor: 4.118

5.  Changes in mechanics and composition of human talar cartilage anlagen during fetal development.

Authors:  R Mahmoodian; J Leasure; P Philip; N Pleshko; F Capaldi; S Siegler
Journal:  Osteoarthritis Cartilage       Date:  2011-07-29       Impact factor: 6.576

6.  Integrating qPLM and biomechanical test data with an anisotropic fiber distribution model and predictions of TGF-β1 and IGF-1 regulation of articular cartilage fiber modulus.

Authors:  Michael E Stender; Christopher B Raub; Kevin A Yamauchi; Reza Shirazi; Pasquale Vena; Robert L Sah; Scott J Hazelwood; Stephen M Klisch
Journal:  Biomech Model Mechanobiol       Date:  2012-12-25

7.  Maturation-Related Changes in T2 Relaxation Times of Cartilage and Meniscus of the Pediatric Knee Joint at 3 T.

Authors:  Jie C Nguyen; Hailey Allen; Fang Liu; Kaitlin M Woo; Zhaoye Zhou; Richard Kijowski
Journal:  AJR Am J Roentgenol       Date:  2018-10-09       Impact factor: 3.959

Review 8.  A review of the combination of experimental measurements and fibril-reinforced modeling for investigation of articular cartilage and chondrocyte response to loading.

Authors:  Petro Julkunen; Wouter Wilson; Hanna Isaksson; Jukka S Jurvelin; Walter Herzog; Rami K Korhonen
Journal:  Comput Math Methods Med       Date:  2013-04-08       Impact factor: 2.238

9.  Postnatal development of depth-dependent collagen density in ovine articular cartilage.

Authors:  Mark C van Turnhout; Henk Schipper; Barend van Lagen; Han Zuilhof; Sander Kranenbarg; Johan L van Leeuwen
Journal:  BMC Dev Biol       Date:  2010-10-22       Impact factor: 1.978

10.  T2 Relaxation Time Changes in the Distal Femoral Condylar Cartilage of Children and Young Adults with Discoid Meniscus.

Authors:  Haesung Yoon; Hyun Ji Lim; Jisoo Kim; Kun-Bo Park; Hyun Woo Kim; Mi-Jung Lee
Journal:  Cartilage       Date:  2022 Jan-Mar       Impact factor: 3.117

  10 in total

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