Yeungnam University College
10 imported, source-linked research records. Published in the last five years.
10 matching research records
Topic: Senescence-associated secretory phenotype. Only records linked to Yeungnam University College are included. Historical ingestion is still running; these are imported records, not a count of all research worldwide.
Showing 1–10 of 10 matching records. Counts update as records arrive.
Homoharringtonine exhibits senotherapeutic activity that mitigates diet- and age-associated obesity and insulin resistance and extends lifespan in mice
March 31, 2026 · 1 citations · Open access
Open original record →AMPK activation by PPARγ agonist ameliorates VSMC transdifferentiation and atheroinflammation via the STAT3 signaling pathway
January 1, 2026 · 0 citations · Open access
Open original record →Foretinib Alleviates Osteoblast Senescence and Protects Against Bone Loss in Ovariectomized Mice by Promoting Osteoblast Differentiation
December 8, 2025 · 0 citations · Open access
Open original record →Cabozantinib, an Anti-Aging Agent, Prevents Bone Loss in Estrogen-Deficient Mice by Suppressing Senescence-Associated Secretory Phenotype Factors
July 24, 2025 · 4 citations · Open access
Open original record →Lanatoside C, a Novel Senolytic, Ameliorates Atherosclerosis in Mice
January 1, 2025 · 2 citations · Open access
Open original record →Telomere stabilization by metformin mitigates the progression of atherosclerosis via the AMPK-dependent p-PGC-1α pathway
September 2, 2024 · 20 citations · Open access
Open original record →FLRT2 prevents endothelial cell senescence and vascular aging by regulating the ITGB4/mTORC2/p53 signaling pathway
April 7, 2024 · 11 citations · Open access
Open original record →Drug repositioning for a potential drug to prevent muscle wasting in aged mice
October 23, 2022 · 0 citations · Open access
Open original record →Nintedanib induces senolytic effect via STAT3 inhibition
September 2, 2022 · 53 citations · Open access
Open original record →Metformin mitigates stress-induced premature senescence by upregulating AMPKα at Ser485 phosphorylation induced SIRT3 expression and inactivating mitochondrial oxidants
July 18, 2022 · 26 citations
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