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Dynamic mechanical loading and growth factors influence chondrogenesis of induced pluripotent mesenchymal progenitor cells in a cartilage-mimetic hydrogel

Biomater Sci.. 2019; 
Aisenbrey EA 1, Bilousova G , Payne K , Bryant SJ .
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Molecular Biology Reagents … The hydrogel precursor solution was comprised of 9% (g/g) 8-arm PEG-norbornene, 1% (g/g)<br> ChS-SH, 0.1 mM CRGDS (<b>Genscript</b>), 2.14% (g/g) PEG dithiol (1 kDa) (Sigma-Aldrich), and 0.5%<br> (g/g) Irgacure 2959 (I2959, BASF) in phosphate buffered saline (PBS, pH 7.4) … Get A Quote

摘要

Human induced pluripotent stem cells (iPSCs) have emerged as a promising alternative to bone-marrow derived mesenchymal stem/stromal cells for cartilage tissue engineering. However, the effect of biochemical and mechanical cues on iPSC chondrogenesis remains understudied. This study evaluated chondrogenesis of induced pluripotent mesenchymal progenitor cells (iPS-MPs) encapsulated in a cartilage-mimetic hydrogel under different culture conditions: free swelling versus dynamic compressive loading and different growth factors (TGFβ3 and/or BMP2). Human iPSCs were differentiated into iPS-MPs and chondrogenesis was evaluated by gene expression (qPCR) and protein expression (immunohistochemistry) after three weeks.... More

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