Literature DB >> 26583804

rAAV-mediated overexpression of sox9, TGF-β and IGF-I in minipig bone marrow aspirates to enhance the chondrogenic processes for cartilage repair.

J Frisch1, A Rey-Rico1, J K Venkatesan1, G Schmitt1, H Madry1,2, M Cucchiarini1.   

Abstract

Administration of therapeutic gene sequences coding for chondrogenic and chondroreparative factors in bone marrow aspirates using the clinically adapted recombinant adeno-associated virus (rAAV) vector may provide convenient, single-step approaches to improve cartilage repair. Here, we tested the ability of distinct rAAV constructs coding for the potent SOX9, transforming growth factor beta (TGF-β) and insulin-like growth factor I (IGF-I) candidate factors to modify marrow aspirates from minipigs to offer a preclinical large animal model system adapted for a translational evaluation of cartilage repair upon transplantation in sites of injury. Our results demonstrate that high, prolonged rAAV gene transfer efficiencies were achieved in the aspirates (up to 100% for at least 21 days) allowing to produce elevated amounts of the transcription factor SOX9 that led to increased levels of matrix synthesis and chondrogenic differentiation and of the growth factors TGF-β and IGF-I that both increased cell proliferation, matrix synthesis and chondrogenic differentiation (although to a lower level than SOX9) compared with control (lacZ) condition. Remarkably, application of the candidate SOX9 vector also led to reduced levels of hypertrophic differentiation in the aspirates, possibly by modulating the β-catenin, Indian hedgehog and PTHrP pathways. The present findings show the benefits of modifying minipig marrow concentrates via rAAV gene transfer as a future means to develop practical strategies to promote cartilage repair in a large animal model.

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Year:  2015        PMID: 26583804     DOI: 10.1038/gt.2015.106

Source DB:  PubMed          Journal:  Gene Ther        ISSN: 0969-7128            Impact factor:   5.250


  58 in total

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2.  A recombinant plasmid from which an infectious adeno-associated virus genome can be excised in vitro and its use to study viral replication.

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Journal:  J Virol       Date:  1987-10       Impact factor: 5.103

3.  Cartilage repair and subchondral bone remodeling in response to focal lesions in a mini-pig model: implications for tissue engineering.

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Journal:  Tissue Eng Part A       Date:  2014-12-11       Impact factor: 3.845

Review 4.  The control of chondrogenesis.

Authors:  Mary B Goldring; Kaneyuki Tsuchimochi; Kosei Ijiri
Journal:  J Cell Biochem       Date:  2006-01-01       Impact factor: 4.429

5.  Direct rAAV SOX9 administration for durable articular cartilage repair with delayed terminal differentiation and hypertrophy in vivo.

Authors:  Magali Cucchiarini; Patrick Orth; Henning Madry
Journal:  J Mol Med (Berl)       Date:  2012-11-13       Impact factor: 4.599

6.  Enhanced in vitro chondrogenesis of primary mesenchymal stem cells by combined gene transfer.

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Journal:  Tissue Eng Part A       Date:  2009-05       Impact factor: 3.845

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8.  Sox9 family members negatively regulate maturation and calcification of chondrocytes through up-regulation of parathyroid hormone-related protein.

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Journal:  Mol Biol Cell       Date:  2009-09-16       Impact factor: 4.138

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Journal:  Nat Genet       Date:  1999-05       Impact factor: 38.330

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Authors:  K D Osborn; S B Trippel; H J Mankin
Journal:  J Orthop Res       Date:  1989       Impact factor: 3.494

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  12 in total

Review 1.  Recent tissue engineering-based advances for effective rAAV-mediated gene transfer in the musculoskeletal system.

Authors:  Ana Rey-Rico; Magali Cucchiarini
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2.  Regulation of decellularized tissue remodeling via scaffold-mediated lentiviral delivery in anatomically-shaped osteochondral constructs.

Authors:  Christopher R Rowland; Katherine A Glass; Adarsh R Ettyreddy; Catherine C Gloss; Jared R L Matthews; Nguyen P T Huynh; Farshid Guilak
Journal:  Biomaterials       Date:  2018-05-30       Impact factor: 12.479

Review 3.  Delivery of transcription factors as modulators of cell differentiation.

Authors:  Héctor Rilo-Alvarez; Adriana M Ledo; Anxo Vidal; Marcos Garcia-Fuentes
Journal:  Drug Deliv Transl Res       Date:  2021-02-20       Impact factor: 4.617

Review 4.  Tissue Engineering Strategies to Increase Osteochondral Regeneration of Stem Cells; a Close Look at Different Modalities.

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5.  Adipose-Derived Stem Cells Cocultured with Chondrocytes Promote the Proliferation of Chondrocytes.

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Journal:  Stem Cells Int       Date:  2017-01-04       Impact factor: 5.443

Review 6.  Bone Marrow Aspirate Concentrate-Enhanced Marrow Stimulation of Chondral Defects.

Authors:  Henning Madry; Liang Gao; Hermann Eichler; Patrick Orth; Magali Cucchiarini
Journal:  Stem Cells Int       Date:  2017-05-14       Impact factor: 5.443

7.  Impact of mechanical stimulation on the chondrogenic processes in human bone marrow aspirates modified to overexpress sox9 via rAAV vectors.

Authors:  Jagadeesh K Venkatesan; Janina Frisch; Ana Rey-Rico; Gertrud Schmitt; Henning Madry; Magali Cucchiarini
Journal:  J Exp Orthop       Date:  2017-06-21

8.  Rescued Chondrogenesis of Mesenchymal Stem Cells under Interleukin 1 Challenge by Foamyviral Interleukin 1 Receptor Antagonist Gene Transfer.

Authors:  Nicole Armbruster; Jennifer Krieg; Manuel Weißenberger; Carsten Scheller; Andre F Steinert
Journal:  Front Pharmacol       Date:  2017-05-09       Impact factor: 5.810

9.  IGF-1 polymorphisms modulate the susceptibility to osteonecrosis of the femoral head among Chinese Han population.

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Journal:  Medicine (Baltimore)       Date:  2019-06       Impact factor: 1.817

10.  Cytokine-induced interleukin-1 receptor antagonist protein expression in genetically engineered equine mesenchymal stem cells for osteoarthritis treatment.

Authors:  Simone Gabner; Reinhard Ertl; Karsten Velde; Matthias Renner; Florien Jenner; Monika Egerbacher; Juraj Hlavaty
Journal:  J Gene Med       Date:  2018-04-22       Impact factor: 4.565

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