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Published on: June 11, 2019
Stem cell library screen identified ruxolitinib as regulator of osteoblastic differentiation of human skeletal stem
Nihal AlMuraikhi1, Dalia Ali1,2, Aliah Alshanwani3
1Stem Cell Unit, Department of Anatomy, College of Medicine, King Saud University, Riyadh, 11461, Kingdom of Saudi Arabia.
Background:
Better understanding of the signaling pathways that regulate human bone marrow stromal stem cell (hBMSC) differentiation into bone-forming osteoblasts is crucial for their clinical use in regenerative medicine. Chemical biology approaches using small molecules targeting specific signaling pathways are increasingly employed to manipulate stem cell differentiation fate.
Methods:
We employed alkaline phosphatase activity and staining assays to assess osteoblast differentiation and Alizarin R staining to assess mineralized matrix formation of cultured hBMSCs. Changes in gene expression were assessed using an Agilent microarray platform, and data normalization and bioinformatics were performed using GeneSpring software. For in vivo ectopic bone formation experiments, hMSCs were mixed with hydroxyapatite-tricalcium phosphate granules and implanted subcutaneously into the dorsal surface of 8-week-old female nude mice. Hematoxylin and eosin staining and Sirius Red staining were used to detect bone formation in vivo.
Results:
We identified several compounds which inhibited osteoblastic differentiation of hMSCs. In particular, we identified ruxolitinib (INCB018424) (3 μM), an inhibitor of JAK-STAT signaling that inhibited osteoblastic differentiation and matrix mineralization of hMSCs in vitro and reduced ectopic bone formation in vivo. Global gene expression profiling of ruxolitinib-treated cells identified 847 upregulated and 822 downregulated mRNA transcripts, compared to vehicle-treated control cells. Bioinformatic analysis revealed differential regulation of multiple genetic pathways, including TGFβ and insulin signaling, endochondral ossification, and focal adhesion.
Conclusions:
We identified ruxolitinib as an important regulator of osteoblast differentiation of hMSCs. It is plausible that inhibition of osteoblast differentiation by ruxolitinib may represent a novel therapeutic strategy for the treatment of pathological conditions caused by accelerated osteoblast differentiation and mineralization.
Insights
Ruxolitinib, a JAK-STAT signaling inhibitor, was found to inhibit human bone marrow stromal stem cell differentiation into osteoblasts. This discovery offers potential therapeutic strategies for conditions involving excessive bone formation.
Area of Science:
- Stem cell biology
- Regenerative medicine
- Chemical biology
Background:
- Understanding human bone marrow stromal stem cell (hBMSC) differentiation into osteoblasts is vital for regenerative medicine.
- Small molecules targeting signaling pathways are key tools for manipulating stem cell fate.
Purpose of the Study:
- To identify small molecules that regulate hBMSC differentiation into osteoblasts.
- To investigate the effects of identified compounds on osteogenic differentiation and ectopic bone formation.
Main Methods:
- Assessed osteoblast differentiation using alkaline phosphatase activity and staining.
- Evaluated matrix mineralization with Alizarin Red staining.
- Analyzed gene expression changes via microarray and bioinformatics; assessed in vivo bone formation in mice.
Main Results:
- Identified ruxolitinib (3 μM), a JAK-STAT signaling inhibitor, that suppressed hBMSC osteoblastic differentiation and matrix mineralization in vitro.
- Ruxolitinib reduced ectopic bone formation in vivo.
- Gene expression profiling revealed significant upregulation and downregulation of transcripts, impacting pathways like TGFβ and insulin signaling.
Conclusions:
- Ruxolitinib is identified as a key regulator of hBMSC osteoblast differentiation.
- Inhibiting osteoblast differentiation with ruxolitinib presents a potential therapeutic approach for diseases characterized by accelerated bone formation.
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