| Literature DB >> 31324014 |
Giusi Taormina1, Federica Ferrante1, Salvatore Vieni1, Nello Grassi1, Antonio Russo1, Mario G Mirisola2.
Abstract
Research on longevity and healthy aging promises to increase our lifespan and decrease the burden of degenerative diseases with important social and economic effects. Many aging theories have been proposed, and important aging pathways have been discovered. Model organisms have had a crucial role in this process because of their short lifespan, cheap maintenance, and manipulation possibilities. Yeasts, worms, fruit flies, or mammalian models such as mice, monkeys, and recently, dogs, have helped shed light on aging processes. Genes and molecular mechanisms that were found to be critical in simple eukaryotic cells and species have been confirmed in humans mainly by the functional analysis of mammalian orthologues. Here, we review conserved aging mechanisms discovered in different model systems that are implicated in human longevity as well and that could be the target of anti-aging interventions in human.Entities:
Keywords: aging; model systems; molecular senescence; signal transduction
Year: 2019 PMID: 31324014 PMCID: PMC6678192 DOI: 10.3390/genes10070518
Source DB: PubMed Journal: Genes (Basel) ISSN: 2073-4425 Impact factor: 4.096
Figure 1Comparative analysis of the most used model systems in aging research. Genome informations are from NCBI.