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Engineering contribution for cartilage cultivation in bioreactor

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Konferencja
Third International Tribology Conference ITC 2004
Języki publikacji
EN
Abstrakty
EN
Diseases of human joints, in which the cartilage is the sensitive link, appear a serious issue of still growing social and economical importance in EU countries. Surgical transplantation of the human cartilage tissue into human joints can be successfully performed many times, on the contrary to the transplantation of artificial joints or only artificial acetabulum. Artificial joint transplantation is applicable three times in human life, at the most. Therefore cultivation of natural human tissues in bioreactor is really very important problem.
Twórcy
  • Gdynia Maritime University, Faculty of Marine Engineering Gdynia, 81225, POLAND
Bibliografia
  • [1] Aigner J., Tegeler J., Hutzler P., Pavesio A., Hammer C., Kastenbauer E. and Naumann A. (1998): Cartilage tissueengineering with novel structured biomaterial based on the hyaluronic acid benzylester. - J. Biomed. Mater. Res., vol.42, pp.172-181.
  • [2] Caplan A.I., Elyaderani M., Mochizuki Y., Wakitani S. and Goldberg V.M. (1997): Principles of cartilage repair and regeneration. - Clin. Orthop., vol.342, pp.254-269.
  • [3] Carvel S.E. and Heath C.A. (1999): Increasing extracellular matrix production in regenerating cartilage with intermittent physiological pressure. - Biotechnol. Bioeng., vol.62, pp. 166-174.
  • [4] Czermak P., Nehring D. and Gokorsch S. (2002): A new bioreactor system to produce three-dimensional cartilage implants. - AIChE, Annual Meeting, Indianapolis, USA, 6.11.2002, paper 330i.
  • [5] Fung Y.C. (1993): The Meaning of Constitutive Equations in Biomechanics, Mechanical Properties of Living Tissues. - Berlin: Springer Verlag.
  • [6] Hyc A., Osiecka-Iwan A., Jóźwiak J. and Moskalewski S. (2001): The morphology and selected biological properties of articular cartilage. - Ortopedia Traumatología Rehabilitacja, vol.3, No.2, pp. 151-162.
  • [7] Lin J.R. (2000): Squeeze fil characteristics between a sphere and a flat plate: couple stress fluid model. - Computers and Structures, vol.75, pp.73-80.
  • [8] Lin J.R. (2001): The effects of couple stresses un the squeeze film behaviour between isotropic rough rectangular plates. - J. of Applied Mechanic and Engineering, vol.6, No.4, pp. 1007-1024.
  • [9] Obradovic B., Martin I., Freed L.E. and Vunjak-Novakovic G. (2001): Bioreactor studies of natural and tissue engineered cartilage. - Ortopedia Traumatología Rehabilitacja, vol.3, No.2, pp. 181-189.
  • [10] Peterson D. (2001): Articular cartilage injuries treated with autologous chondrocyte transplantation in the human knee. - Acta Orthop. Belg., vol.62, Suppl. 1, pp. 196-200.
  • [11] Raimondi M.T., Boschetti Falcone L., Fiore G.B., Remuzzi A., Marinonni E., Marazzi M. and Pietrabissa R. (2002): Mechanobiology of engineered cartilage cultured under a quantified fluid-dynamic environment. - Biomechanics and Modeling in Mechanobiology, vol.l, pp.69-82.
  • [12] Steinhagen J., Kurtz B., Niggemeyer O. and Bruns J. (2001): Thepathophysiology of cartilage diseases. - Ortopedia Traumatología Rehabilitacja, vol.3, Nr.2, pp.163-168.
  • [13] Strzelczyk P., Benke G. and Górecki A. (2001): Methods for isolation and culture of human articular chondrocytes. - Ortopedia Traumatología Rehabilitacja, vol.3, No.2, pp.213-215.
  • [14] Truckenbrodt E. (1986): Strômungsmechanik. - Berlin, New York: Springer Verlag.
  • [15] Trzeciak T., Kruczyński J., Lubiatowski P., Piontek T. and Jaroszewski J. (2001): The reconstruction of defects in articular cartilage using autologus chondrocytes. - Ortopedia Traumatología Rehabilitacja, vol.3, No.2, pp.200-204.
  • [16] Wierzcholski K.(2003): Nutrient Flow Problems in Bioreactor for Tissue Engineering. - New Tendencies in Mechanics. Modelling in Applied Mechanics, Scientific Fascicles of Applied Mechanics Department of University of Gliwice, vol.20, pp.529-535.
  • [17] Wierzcholski K. and Franke R. (2003): Flow parameters of nutrient fluid in bioreactor. - Modelling in Applied Mechanics, Scientific Fascicles of Applied Mechanics Department, Technical University of Gliwice, vol.20, pp.418-423.
  • [18] Wierzcholski K. (2003): Optimization of tissue growth cultivated in bioreactor. - Russian Journal of Biomechanics, Perm, vol.7, No.4, pp.44-70 (in English).
  • [19] Wierzcholski K. (2004a): Computational Studies of Friction Forces for Hard Tissue Cultivation in Bioreactor. - Exploitation Problems of Machines, Polish Academy of Sci., vol.39, No.2(138), pp.7-34.
  • [20] Wierzcholski K. (2004b): Tribologie fur instabil belastete menschliche Gelenke im magnetischen Feld. - 14th International Colloquium Tribology, Proceedings of Technische Akademie Esslingen, vol.3, pp.1717-1724 (in German).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ2-0008-0044
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