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Aging|October 29, 2023
Proteomic quantification of native and ECM-enriched mouse ovaries reveals an age-dependent fibro-inflammatory signatureShweta S Dipali, Christina D King, Jacob P Rose, et al.Proceedings of the National Academy of Sciences of the United States of America|March 16, 2007
p53-dependent integration of telomere and growth factor deprivation signalsAlain Beliveau, Ekaterina Bassett, Alvin T Lo, et al.Aging Cell|July 21, 2023
Rutin is a potent senomorphic agent to target senescent cells and can improve chemotherapeutic efficacyHanxin Liu, Qixia Xu, Halidan Wufuer, et al.Aging|February 12, 2010
MicroRNAs miR-146a/b negatively modulate the senescence-associated inflammatory mediators IL-6 and IL-8Dipa Bhaumik, Gary K Scott, Shiruyeh Schokrpur, et al.Plos One|January 17, 2020
Astrocyte senescence promotes glutamate toxicity in cortical neuronsChandani Limbad, Tal Ronnen Oron, Fatouma Alimirah, et al.Aging|September 28, 2023
Gene expression signatures of human senescent corneal and conjunctival epithelial cellsKoji Kitazawa, Akifumi Matsumoto, Kohsaku Numa, et al.Aging Biology|September 6, 2024
Cellular senescence exacerbates features of aging in the eyesKoji Kitazawa, Kohsaku Numa, Sandip Kumar Patel, et al.Aging Cell|February 18, 2020
Inhibition of USP7 activity selectively eliminates senescent cells in part via restoration of p53 activityYonghan He, Wen Li, Dongwen Lv, et al.Biorxiv : the Preprint Server for Biology|August 12, 2025
A multi-omics analysis of human fibroblasts overexpressing an Alu transposon reveals widespread disruptions in aging-associated pathwaysJuan I Bravo, Eyael Tewelde, Christina D King, et al.Geroscience|December 11, 2025
A multi-omics analysis of human fibroblasts overexpressing an Alu transposon reveals widespread disruptions in aging-associated pathwaysJuan I Bravo, Eyael Tewelde, Christina D King, et al.Pageof 25