TRIIODOTHYRONINE POTENTIATES BMP9-INDUCED OSTEOGENESIS IN MESENCHYMAL STEM CELLS THROUGH THE ACTIVATION OF AMPK/P38 SIGNALING

Triiodothyronine Potentiates BMP9-Induced Osteogenesis in Mesenchymal Stem Cells Through the Activation of AMPK/p38 Signaling

Thyroid hormone (TH), triiodothyronine (T3), and thyroxine (T4), which are released from the thyroid, control many cellular processes in various cell types.It is worth noting that TH plays a complex role in skeletal metabolic balance, Industrial:Restaurant and few studies have investigated whether TH exerts any effects on osteogenesis in bone mesen

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WD40 domain divergence is important for functional differences between the fission yeast Tup11 and Tup12 co-repressor proteins.

We have previously demonstrated that subsets of Ssn6/Tup target genes have distinct requirements for the Schizosaccharomyces pombe homologs of the Tup1/Groucho/TLE co-repressor proteins, Tup11 and Tup12.The very high level of divergence in the histone interacting repression domains of the two proteins suggested that determinants distinguishing Tup1

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Forming control and the relationship between microstructure and mechanical property in TIG-assisted friction stir welded joint of Ti-6Al-3Nb-2Zr-1Mo titanium alloy

In this paper, T-joints of Ti-6Al-3Nb-2Zr-1Mo titanium alloy were joined with friction stir welding, and microstructure evolution and forming mechanism were studied.The effect of using tungsten inert gas welding to heat additionally the FSW was investigated.Results show a strong effection microstructure of stir zone (SZ) due to the temperature grad

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