89 research outputs found
DHEA inhibits vascular remodeling following arterial injury: a possible role in suppression of inflammation and oxidative stress derived from vascular smooth muscle cells
WNT7B promotes bone formation in part through mTORC1
WNT signaling has been implicated in both embryonic and postnatal bone formation. However, the pertinent WNT ligands and their downstream signaling mechanisms are not well understood. To investigate the osteogenic capacity of WNT7B and WNT5A, both normally expressed in the developing bone, we engineered mouse strains to express either protein in a Cre-dependent manner. Targeted induction of WNT7B, but not WNT5A, in the osteoblast lineage dramatically enhanced bone mass due to increased osteoblast number and activity; this phenotype began in the late-stage embryo and intensified postnatally. Similarly, postnatal induction of WNT7B in Runx2-lineage cells greatly stimulated bone formation. WNT7B activated mTORC1 through PI3K-AKT signaling. Genetic disruption of mTORC1 signaling by deleting Raptor in the osteoblast lineage alleviated the WNT7B-induced high-bone-mass phenotype. Thus, WNT7B promotes bone formation in part through mTORC1 activation
The changes in growth, survival, food intake and body composition of Pseudogrus fulvidraco larvae and juveniles fed with Artemia nauplii
The effects of carvedilol on cardiac structural remodeling: The role of endogenous nitric oxide in the activity of carvedilol
Ferroelectric control of band structures in the two-dimensional Janus WSSe/In2Se3 van der Waals heterostructures
Tunable solid-state fluorescent materials self-assembled by a cationic dye acridine orange and an anionic biosurfactant sodium deoxycholate
The method of sinus node-like pacemaker cells from human induced pluripotent stem cells by BMP and Wnt signaling
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