TGF-β3: A potential biological therapy for enhancing chondrogenesis

Background: TGF-β has been proposed to stimulate chondrogenesis through intracellular pathways involving small mothers against decapentaplegic proteins (Smads). Objective: To examine the use of exogenous TGF-β3 to promote new hyaline cartilage formation. Methods: An overview of in vitro and in vivo...

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Veröffentlicht in:Expert opinion on biological therapy 2009-06, Vol.9 (6), p.689-701
Hauptverfasser: Tang, Quen Oak, Shakib, Kaveh, Heliotis, Manolis, Tsiridis, Evgenios, Mantalaris, Athanasios, Ripamonti, Ugo, Tsiridis, Eleftherios
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Sprache:eng
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Zusammenfassung:Background: TGF-β has been proposed to stimulate chondrogenesis through intracellular pathways involving small mothers against decapentaplegic proteins (Smads). Objective: To examine the use of exogenous TGF-β3 to promote new hyaline cartilage formation. Methods: An overview of in vitro and in vivo evidence on the effects of TGF-β3 on cartilage regeneration. Results/conclusion: There is robust in vitro evidence suggesting a positive dose- and time-dependant effect of TGF-β3 on anabolic chondrogenic gene markers such as α1-collagen type II and cartilage oligomeric matrix protein in human mesenchymal stem cells. TGF-β3 cultured with silk elastin-like polymer scaffold carrier exhibits significantly increased glycosaminoglycan and collagen content. In vivo data showed that TGF-β3 cultured with ovine mesenchymal stem cells in a chitosan scaffold stimulated the growth of hyaline cartilage that was fully integrated into host cartilage tissue of sheep. We highlight the potential for the clinical enhancement of cartilage formation through the use of TGF-β3 with a suitable dose and scaffold carrier.
ISSN:1471-2598
1744-7682
DOI:10.1517/14712590902936823