Academic Journal

An expedited screening platform for the discovery of anti-ageing compounds in vitro and in vivo

Λεπτομέρειες βιβλιογραφικής εγγραφής
Τίτλος: An expedited screening platform for the discovery of anti-ageing compounds in vitro and in vivo
Συγγραφείς: Lujan, Celia, Tyler, Eleanor Jane, Ecker, Simone, Webster, Amy Philomena, Stead, Eleanor Rachel, Martinez-Miguel, Victoria Eugenia, Milligan, Deborah, Garbe, James Charles, Stampfer, Martha Ruskin, Beck, Stephan, Lowe, Robert, Bishop, Cleo Lucinda, Bjedov, Ivana
Πηγή: http://lobid.org/resources/99370670445306441#!, 16(1):85.
Έτος έκδοσης: 2024
Συλλογή: Publisso (ZB MED-Publikationsportal Lebenswissenschaften)
Θεματικοί όροι: Senescence, Rapamycin, Advances in healthy aging and age-related diseases, DNA Methylation/drug effects [MeSH], Humans [MeSH], CpG methylation, Longevity/drug effects [MeSH], Sirolimus/pharmacology [MeSH], Animals [MeSH], CellPopAge epigenetic Clock, Drosophila [MeSH], Drug Evaluation, Preclinical/methods [MeSH], Research, Cellular Senescence/drug effects [MeSH], Drug discovery, Drug Discovery/methods [MeSH], Cells, Cultured [MeSH], Ageing, Epigenesis, Genetic/drug effects [MeSH], Aging/drug effects [MeSH]
Περιγραφή: Abstract Background Restraining or slowing ageing hallmarks at the cellular level have been proposed as a route to increased organismal lifespan and healthspan. Consequently, there is great interest in anti-ageing drug discovery. However, this currently requires laborious and lengthy longevity analysis. Here, we present a novel screening readout for the expedited discovery of compounds that restrain ageing of cell populations in vitro and enable extension of in vivo lifespan. Methods Using Illumina methylation arrays, we monitored DNA methylation changes accompanying long-term passaging of adult primary human cells in culture. This enabled us to develop, test, and validate the CellPopAge Clock, an epigenetic clock with underlying algorithm, unique among existing epigenetic clocks for its design to detect anti-ageing compounds in vitro. Additionally, we measured markers of senescence and performed longevity experiments in vivo in Drosophila, to further validate our approach to discover novel anti-ageing compounds. Finally, we bench mark our epigenetic clock with other available epigenetic clocks to consolidate its usefulness and specialisation for primary cells in culture. Results We developed a novel epigenetic clock, the CellPopAge Clock, to accurately monitor the age of a population of adult human primary cells. We find that the CellPopAge Clock can detect decelerated passage-based ageing of human primary cells treated with rapamycin or trametinib, well-established longevity drugs. We then utilise the CellPopAge Clock as a screening tool for the identification of compounds which decelerate ageing of cell populations, uncovering novel anti-ageing drugs, torin2 and dactolisib ...
Τύπος εγγράφου: article in journal/newspaper
Γλώσσα: English
Relation: https://repository.publisso.de/resource/frl:6518979; https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11218148/
DOI: 10.1186/s13073-024-01349-w
Διαθεσιμότητα: https://repository.publisso.de/resource/frl:6518979
https://doi.org/10.1186/s13073-024-01349-w
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11218148/
Rights: https://creativecommons.org/licenses/by/4.0/
Αριθμός Καταχώρησης: edsbas.B10522F7
Βάση Δεδομένων: BASE
Περιγραφή
DOI:10.1186/s13073-024-01349-w