PRESS RELEASE: A new research paper was published on the cover of Aging’s Volume 15, Issue 10, entitled, “Stress granules sequester Alzheimer’s disease-associated gene transcripts and regulate disease-related neuronal proteostasis.”
Aging (Aging-US) Authors
PRESS RELEASE: A new research paper was published in Aging’s Volume 15, Issue 9, entitled, “Exogenous exposures shape genetic predisposition to lipids, Alzheimer’s, and coronary heart disease in the MLXIPL gene locus.”
PRESS RELEASE: A new research paper was published in Aging’s Volume 15, Issue 9, entitled, “Highly multiplexed immune profiling throughout adulthood reveals kinetics of lymphocyte infiltration in the aging mouse prostate.”
Impact Journals (Aging’s publisher) is proud to participate at the Society for Scholarly Publishing (SSP) 45th Annual Meeting, which convenes May 31–June 2, 2023, in Portland, Oregon.
PRESS RELEASE: A new research paper was published in Aging’s Volume 15, Issue 9, entitled, “Increased expression of musashi 1 on breast cancer cells has implication to understand dormancy and survival in bone marrow.”
PRESS RELEASE: A new research paper was published on the cover of Aging’s Volume 15, Issue 9, entitled, “In vitro and in vivo effects of zoledronic acid on senescence and senescence-associated secretory phenotype markers.”
PRESS RELEASE: A new editorial paper was published in Aging’s Volume 15, Issue 8, entitled, “The senescence-associated secretory phenotype induces neuroendocrine transdifferentiation.”
PRESS RELEASE: A new review paper was published in Aging’s Volume 15, Issue 8, entitled, “How can we modulate aging through nutrition and physical exercise? An epigenetic approach.”
PRESS RELEASE: A new research paper was published in Aging’s Volume 15, Issue 8, entitled, “Single-cell transcriptomic analysis uncovers diverse and dynamic senescent cell populations.”
PRESS RELEASE: A new research paper was published in Aging’s Volume 15, Issue 8, entitled, “Identification of dual-purpose therapeutic targets implicated in aging and glioblastoma multiforme using PandaOmics – an AI-enabled biological target discovery platform.”