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Wnt/β-catenin

Zeb2/Axin2-Enriched BMSC-Derived Exosomes Promote Post-Stroke Functional Recovery by Enhancing Neurogenesis and Neural Plasticity

[Journal of Molecular Neuroscience] After stimulation with Zeb2/Axin2-enriched BMSC exosomes, the spatial memory and nerve function of MCAO rats showed marked recovery. The number of neurons was increased in the subventricular zone, hippocampus, and cortex area, while the expression of nerve growth factors was upregulated.

Circular RNA circRNA_0082835 Promotes Progression and Lymphatic Metastasis of Primary Melanoma by Sponging microRNA miRNA-429

[Bioengineered] To identify how circular RNA circRNA_0082835 impacts melanoma cells and lymphatic metastasis to observe whether it exerts effects through its action mechanism of sponging microRNA miR-429.

Triple-Negative Breast Cancer: Understanding Wnt Signaling in Drug Resistance

[Cancer Cell International] Investigators summarize mechanisms of Wnt/β-catenin signaling for resistance development in TNBC, the complex interaction between Wnt/β-catenin signaling, and the transactivated receptor tyrosine kinase signaling pathways, lymphocytic infiltration, epithelial-mesenchymal transition, and induction of metastasis.

Non-thermal Atmospheric Pressure Plasma Activates Wnt/β-Catenin Signaling in Dermal Papilla Cells

[Scientific Reports] The human dermal papilla (DP) cells, isolated fresh hair follicles, and mouse back skin were exposed with the non-thermal atmospheric pressure plasma.

Non-Thermal Atmospheric Pressure Plasma Activates Wnt/β-Catenin Signaling in Dermal Papilla Cells

[Scientific Reports] Human dermal papilla cells, isolated fresh hair follicles, and mouse back skin were exposed with the non-thermal atmospheric pressure plasma. Biological outcomes were measured using RNA-sequencing, RT-PCR, Western blots, and immunostaining.

O-GlcNAc Transferase Ogt Regulates Embryonic Neuronal Development through Modulating Wnt/β-Catenin Signaling

[Human Molecular Genetics] Scientists showed that Ogt was highly expressed in embryonic brain, and Ogt depletion reduced the proliferation of embryonic neural stem cells and migration of new born neurons.

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