Literature DB >> 11074426

Mechanical quality of tissue engineered cartilage: results after 6 and 12 weeks in vivo.

G N Duda1, A Haisch, M Endres, C Gebert, D Schroeder, J E Hoffmann, M Sittinger.   

Abstract

Traumatic events are a primary cause for local lesions of articular cartilage. If treated early, restoration of the initial joint geometry and integrity may be achieved. In large defects, sufficient material is not available to bridge the affected area. Heterologeous transplantation is not well accepted due to the risk of infection and immune response. Alternatives are cartilage-like structures, which may be cultured in vitro and transplanted into the defect site. Critical to the success of these new tissues are their mechanical properties. Goals of this study were to generate a hyaline-like cartilage structure, to evaluate its performance in vivo and to verify that its cellular and material properties meet those of native cartilage. Hyaline-like cartilage specimens were generated in vitro and implanted in the backs of nude mice. Specimens were explanted after 6 and 12 weeks, mechanically tested using an indentation test and histologically examined. In mechanical testing, stiffness and failure load significantly increased between weeks 6 and 12. At 12 weeks, mechanical properties of the hyaline-like cartilage were comparable to those of native nasal septal cartilage. Compared to native articular cartilage, the engineered tissue achieved up to 30-50% in strength and mechanical stiffness. In histological examination, specimens showed neocartilage formation. The mechanical testing procedure proved to be sufficiently sensitive to identify differences in properties between cartilage specimens of different origin and at different stages of healing. As an adjunct to histological analysis, mechanical testing may be a valuable tool for judging the utility of engineered cartilage prior to a broad clinical usage. Copyright 2000 John Wiley & Sons, Inc.

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Year:  2000        PMID: 11074426     DOI: 10.1002/1097-4636(2000)53:6<673::aid-jbm9>3.0.co;2-v

Source DB:  PubMed          Journal:  J Biomed Mater Res        ISSN: 0021-9304


  14 in total

1.  Immunomodulation of tissue-engineered transplants: in vivo bone generation from methylprednisolone-stimulated chondrocytes.

Authors:  Andreas Haisch; Frank Wanjura; Cornelia Radke; Korinna Leder-Jöhrens; Andreas Gröger; Michaela Endres; Svea Klaering; Alexander Loch; Michael Sittinger
Journal:  Eur Arch Otorhinolaryngol       Date:  2003-07-25       Impact factor: 2.503

2.  Bridging the gap between traditional cell cultures and bioreactors applied in regenerative medicine: practical experiences with the MINUSHEET perfusion culture system.

Authors:  Will W Minuth; Lucia Denk
Journal:  Cytotechnology       Date:  2015-04-17       Impact factor: 2.058

3.  In vivo implantation of tissue-engineered human nasal septal neocartilage constructs: a pilot study.

Authors:  Angela A Chang; Marsha S Reuther; Kristen K Briggs; Barbara L Schumacher; Gregory M Williams; Maripat Corr; Robert L Sah; Deborah Watson
Journal:  Otolaryngol Head Neck Surg       Date:  2011-10-26       Impact factor: 3.497

Review 4.  Cartilage and bone tissue engineering for reconstructive head and neck surgery.

Authors:  Nicole Rotter; Andreas Haisch; Markus Bücheler
Journal:  Eur Arch Otorhinolaryngol       Date:  2004-12-10       Impact factor: 2.503

5.  Model to Estimate Threshold Mechanical Stability of Lower Lateral Cartilage.

Authors:  James Hakjune Kim; Ashley Hamamoto; Nicole Kiyohara; Brian J F Wong
Journal:  JAMA Facial Plast Surg       Date:  2015 Jul-Aug       Impact factor: 4.611

6.  Marine collagen scaffolds for nasal cartilage repair: prevention of nasal septal perforations in a new orthotopic rat model using tissue engineering techniques.

Authors:  Christian Bermueller; Silke Schwarz; Alexander F Elsaesser; Judith Sewing; Nina Baur; Achim von Bomhard; Marc Scheithauer; Holger Notbohm; Nicole Rotter
Journal:  Tissue Eng Part A       Date:  2013-06-05       Impact factor: 3.845

7.  Model for estimating the threshold mechanical stability of structural cartilage grafts used in rhinoplasty.

Authors:  Allison Zemek; Rohit Garg; Brian J F Wong
Journal:  Laryngoscope       Date:  2010-06       Impact factor: 3.325

8.  Pretreatment of periosteum with TGF-beta1 in situ enhances the quality of osteochondral tissue regenerated from transplanted periosteal grafts in adult rabbits.

Authors:  A Olivos-Meza; J S Fitzsimmons; M E Casper; Q Chen; K-N An; T J Ruesink; S W O'Driscoll; G G Reinholz
Journal:  Osteoarthritis Cartilage       Date:  2010-07-13       Impact factor: 6.576

9.  Flexural properties of native and tissue-engineered human septal cartilage.

Authors:  Jason P Caffrey; Anton M Kushnaryov; Marsha S Reuther; Van W Wong; Kristen K Briggs; Koichi Masuda; Robert L Sah; Deborah Watson
Journal:  Otolaryngol Head Neck Surg       Date:  2013-01-15       Impact factor: 3.497

10.  The morphology and biomechanical characteristics of subcutaneously implanted tissue-engineered human septal cartilage.

Authors:  Andreas Haisch; Georg N Duda; Daniel Schroeder; Andreas Gröger; Christopher Gebert; Korinna Leder; Michael Sittinger
Journal:  Eur Arch Otorhinolaryngol       Date:  2005-06-17       Impact factor: 2.503

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