Literature DB >> 20800280

Bioreactor based engineering of large-scale human cartilage grafts for joint resurfacing.

Rosaria Santoro1, Andy L Olivares, Gerben Brans, Dieter Wirz, Cristina Longinotti, Damien Lacroix, Ivan Martin, David Wendt.   

Abstract

Apart from partial or total joint replacement, no surgical procedure is currently available to treat large and deep cartilage defects associated with advanced diseases such as osteoarthritis. In this work, we developed a perfusion bioreactor system to engineer human cartilage grafts in a size with clinical relevance for unicompartmental resurfacing of human knee joints (50 mm diameter × 3 mm thick). Computational fluid dynamics models were developed to optimize the flow profile when designing the perfusion chamber. Using the developed system, human chondrocytes could be seeded throughout large 50 mm diameter scaffolds with a uniform distribution. Following two weeks culture, tissues grown in the bioreactor were viable and homogeneously cartilaginous, with biomechanical properties approaching those of native cartilage. In contrast, tissues generated by conventional manual production procedures were highly inhomogeneous and contained large necrotic regions. The unprecedented engineering of human cartilage tissues in this large-scale opens the practical perspective of grafting functional biological substitutes for the clinical treatment for extensive cartilage defects, possibly in combination with surgical or pharmacological therapies to support durability of the implant. Ongoing efforts are aimed at integrating the up-scaled bioreactor based processes within a fully automated and closed manufacturing system for safe, standardized, and GMP compliant production of large-scale cartilage grafts.
Copyright © 2010 Elsevier Ltd. All rights reserved.

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Year:  2010        PMID: 20800280     DOI: 10.1016/j.biomaterials.2010.08.009

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  18 in total

1.  Simulation of cell seeding within a three-dimensional porous scaffold: a fluid-particle analysis.

Authors:  Andy L Olivares; Damien Lacroix
Journal:  Tissue Eng Part C Methods       Date:  2012-04-02       Impact factor: 3.056

2.  Effects of perfusion and dynamic loading on human neocartilage formation in alginate hydrogels.

Authors:  Shawn P Grogan; Sujata Sovani; Chantal Pauli; Jianfen Chen; Andreas Hartmann; Clifford W Colwell; Martin K Lotz; Darryl D D'Lima
Journal:  Tissue Eng Part A       Date:  2012-06-12       Impact factor: 3.845

3.  Enhanced depth-independent chondrocyte proliferation and phenotype maintenance in an ultrasound bioreactor and an assessment of ultrasound dampening in the scaffold.

Authors:  Sanjukta Guha Thakurta; Mikail Kraft; Hendrik J Viljoen; Anuradha Subramanian
Journal:  Acta Biomater       Date:  2014-07-25       Impact factor: 8.947

4.  Rethinking clinical delivery of adult stem cell therapies.

Authors:  Nuala Trainor; Alexis Pietak; Tim Smith
Journal:  Nat Biotechnol       Date:  2014-08       Impact factor: 54.908

Review 5.  Applications of Computer Modeling and Simulation in Cartilage Tissue Engineering.

Authors:  Daniel Pearce; Sarah Fischer; Fatama Huda; Ali Vahdati
Journal:  Tissue Eng Regen Med       Date:  2019-10-05       Impact factor: 4.169

6.  Ex-vivo assessment of drug response on breast cancer primary tissue with preserved microenvironments.

Authors:  Manuele G Muraro; Simone Muenst; Valentina Mele; Luca Quagliata; Giandomenica Iezzi; Alexandar Tzankov; Walter P Weber; Giulio C Spagnoli; Savas D Soysal
Journal:  Oncoimmunology       Date:  2017-05-30       Impact factor: 8.110

7.  Infrapatellar fat pad-derived stem cells maintain their chondrogenic capacity in disease and can be used to engineer cartilaginous grafts of clinically relevant dimensions.

Authors:  Yurong Liu; Conor Timothy Buckley; Henrique V Almeida; Kevin J Mulhall; Daniel John Kelly
Journal:  Tissue Eng Part A       Date:  2014-07-08       Impact factor: 3.845

Review 8.  Cell-based tissue engineering strategies used in the clinical repair of articular cartilage.

Authors:  Brian J Huang; Jerry C Hu; Kyriacos A Athanasiou
Journal:  Biomaterials       Date:  2016-04-26       Impact factor: 12.479

9.  Combined effects of oscillating hydrostatic pressure, perfusion and encapsulation in a novel bioreactor for enhancing extracellular matrix synthesis by bovine chondrocytes.

Authors:  Arshan Nazempour; Chrystal R Quisenberry; Nehal I Abu-Lail; Bernard J Van Wie
Journal:  Cell Tissue Res       Date:  2017-07-07       Impact factor: 5.249

10.  A differential pressure laminar flow reactor supports osteogenic differentiation and extracellular matrix formation from adipose mesenchymal stem cells in a macroporous ceramic scaffold.

Authors:  Birgit Weyand; Cornelia Kasper; Meir Israelowitz; Christoph Gille; Herbert P von Schroeder; Kerstin Reimers; Peter M Vogt
Journal:  Biores Open Access       Date:  2012-06
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