6 citations
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February 2022 in “The journal of neuroscience/The Journal of neuroscience” This study observed that deleting PTEN in mouse facial motoneurons enhanced peripheral axon regeneration but also led to physiological changes and potential hyperplasia in older mice.
This study found that stress-related hair loss may be driven by CRH-mediated mechanisms that inhibit autophagy and increase apoptosis in dermal papilla cells, suggesting potential therapeutic targets like PTEN activation or rapamycin to enhance autophagy.
In this study using mouse models, researchers found that stress-related hair loss may occur due to CRH-induced PTEN loss and inhibition of autophagy via the PI3K/AKT/mTOR pathway in dermal papilla cells, suggesting potential treatments through PTEN activation or autophagy enhancement.
In this study with mice, simultaneous inactivation of Smad4 and PTEN genes led to rapid development of invasive forestomach squamous cell carcinomas, mirroring human esophageal SCCs.
In this study, the deletion of Smad4 and PTEN genes in mice was associated with rapid and invasive squamous cell carcinoma formation in the forestomach, modeling human esophageal cancer progression.