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Chondrogenic Pellet Formation from Cord Blood-derived Induced Pluripotent Stem Cells
Published on: June 19, 2017
In Vitro Chondrogenic Differentiation is Improved by the BMP7-Derived Peptide p[63-82]
Mingzheng Zhang1, Laura C W Peeters1, Pieter J Emans2
1Laboratory for Experimental Orthopedics, Department of Orthopedic Surgery, CAPHRI School for Public Health and Primary Care, Maastricht University, Universiteitssingel 50, 6229 ER Maastricht, the Netherlands.
Abstract:
The BMP7-derived peptide p[63-82] improves a healthy chondrocyte phenotype and attenuates chondrocyte hypertrophy in human osteoarthritic chondrocytes. In cartilage regeneration strategies, chondrogenic differentiation of progenitor cells is often hampered by hypertrophic differentiation of the newly formed cartilaginous tissue. In this study, we explored the pro-chondrogenic and anti-hypertrophic effects of peptide p[63-82] in different progenitor-based chondrogenic differentiation models. Chondrogenic differentiation was induced in ATDC5 cells, human bone marrow-derived stem cells (hBMSCs), and rabbit periosteal progenitor cells (rPCs) in the absence or presence of peptide p[63-82]. In all models, increased gene expression of Sox9, Nkx3.2, Col2a1, Acan and GAG content was observed in the peptide p[63-82] condition, indicative of a pro-chondrogenic effect. Expression of hypertrophic genes Runx2, Col10a1, Alpl and Rmrp and ALP enzyme activity were prevented by the p[63-82] peptide-exposed cultures. Nkx3.2 signaling is, partly, responsible for the observed p[63-82] effects. The peptide p[63-82] was thus able to promote a chondrogenic phenotype, whilst preventing the development of chondrocyte hypertrophy in ATDC5 cells, hBMSCs and rPCs. The p[63-82] peptide could be a promising candidate for optimizing cell-based cartilage repair strategies after validation in in vivo models.

