2023Unpublished venueRequires access

STIMULATION OF HUMAN DERMAL FIBROBLASTS CHONDROGENIC DIFFERENTIATION FOR TISSUE ENGINEERING OF HYALINE CARTILAGE

Д. М. Марченко, M. S. Bozhokin, Elena Mikhailova, Julia V. Sopova, Mikhail Khotin

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Abstract

This work is devoted to the possibility of human dermal fibroblasts chondrogenic differentiation using the TGF-β3 and SOX9 recombinant proteins and lentiviral vectors carrying sequences of the Tgf-β3 and Sox9 genes. It has been shown that the use of the TGF-β3 protein and vector with the Sox9 gene makes it possible to increase the expression of associated with chondrogenesis genes in fibroblasts.

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What this paper is about

This work is devoted to the possibility of human dermal fibroblasts chondrogenic differentiation using the TGF-β3 and SOX9 recombinant proteins and lentiviral vectors carrying sequences of the Tgf-β3 and Sox9 genes. It has been shown that the use of the TGF-β3 protein and vector with the Sox9 gene makes it possible to increase the expression of associated with chondrogenesis genes in fibroblasts.

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Available abstract

This work is devoted to the possibility of human dermal fibroblasts chondrogenic differentiation using the TGF-β3 and SOX9 recombinant proteins and lentiviral vectors carrying sequences of the Tgf-β3 and Sox9 genes. It has been shown that the use of the TGF-β3 protein and vector with the Sox9 gene makes it possible to increase the expression of associated with chondrogenesis genes in fibroblasts.

Key concepts: SOX9, Chondrogenesis, Cell biology, Recombinant DNA, Cartilage, Tissue engineering, Transforming growth factor, Hyaline cartilage

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STIMULATION OF HUMAN DERMAL FIBROBLASTS CHONDROGENIC DIFFERENTIATION FOR TISSUE ENGINEERING OF HYALINE CARTILAGE — Research Paper | ScholarLens