Gwangju Institute of Science and Technology
12 imported, source-linked research records. Published in the last five years.
12 matching research records
Topic: Senescence-associated secretory phenotype. Only records linked to Gwangju Institute of Science and Technology are included. Historical ingestion is still running; these are imported records, not a count of all research worldwide.
Showing 1–12 of 12 matching records. Counts update as records arrive.
A cross-species single-cell kidney epigenome atlas reveals epithelial-dominant aging-like states in disease
September 24, 2026 · 0 citations · Open access
Open original record →Transcriptional Profiling at Single‐Cell Resolution Reveals Diversity and Regulatory Networks of Primary and Secondary Senescent Cells
May 1, 2026 · 1 citations · Open access
Open original record →Bst2-targeted senotherapy restores visual function by eliminating senescent retinal cells
March 18, 2026 · 1 citations · Open access
Open original record →The matricellular protein CCN5 (WISP2) inhibits cellular senescence in cardiac myoblasts and fibroblasts
February 20, 2026 · 1 citations · Open access
Open original record →Sarcopenia and Muscle Aging: Updated Insights into Molecular Mechanisms and Translational Therapeutics
February 12, 2026 · 14 citations · Open access
Open original record →Peptide Inhibitors Targeting FOXO4-p53 Interactions and Inducing Senescent Cancer Cell-specific Apoptosis
July 31, 2025 · 5 citations · Open access
Open original record →Exercise alters transcriptional profiles of senescence and gut barrier integrity in intestinal crypts of aging mice
June 13, 2025 · 1 citations · Open access
Open original record →The interplay of cellular senescence and reprogramming shapes the biological landscape of aging and cancer revealing novel therapeutic avenues
April 28, 2025 · 12 citations · Open access
Open original record →Harnessing nutrients and natural products for sustainable drug development against aging
April 28, 2025 · 9 citations · Open access
Open original record →A microbiota-derived metabolite, 3-phenyllactic acid, prolongs healthspan by enhancing mitochondrial function and stress resilience via SKN-1/ATFS-1 in C. elegans
December 30, 2024 · 36 citations · Open access
Open original record →Bi-directional regulation between inflammation and stem cells in the respiratory tract
November 1, 2024 · 7 citations · Open access
Open original record →3-phenyllactic acid promotes healthspan through SKN-1/ATFS-1-mediated mitochondrial activation and stress resilience
November 13, 2023 · 1 citations · Open access
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