Skip to content
Open access · CC-BY via OpenAlex

Pasta, a Versatile Transcriptomic Clock, Maps the Chemical and Genetic Determinants of Aging and Rejuvenation

Jérôme Salignon, Maria Tsiokou, Patricia Marqués, Enriqueta Rodríguez-Diaz, Hazel X. Ang, Federico Pietrocola, Christian G. Riedel

Advanced Science · 2026 · ▲ 1 citations

Abstract

With the growing burden of age-related diseases, understanding and modulating the aging process has become a priority. Transcriptomic aging clocks (TACs) can track biological age but remain limited by platform dependence, tissue specificity, or restricted accessibility. To address this, we developed Pasta, a robust and broadly applicable human TAC, built using a novel 'age-shift' learning framework. Pasta accurately predicted relative age across diverse tissues and data types, including bulk and single-cell RNA-Seq as well as microarray data. Its predictions aligned with senescent and stem-like cellular states and relied on model coefficients enriched for p53 and DNA damage response pathways. Pasta's age scores correlated with tumor grade and patient survival in several cancer types, indicating potential clinical relevance. Applied to over three million transcriptomes from the Connectivity Map L1000 dataset, Pasta identified both established and previously unrecognized age-modulatory compounds and genetic perturbations, highlighting mitochondrial translation and mRNA splicing as key determinants of cellular propensity for aging and rejuvenation, respectively. Experimental validation confirmed pralatrexate as a potent senescence(definition) inducer and piperlongumine as a rejuvenating agent in human cells. Together, these findings establish Pasta as a versatile and accessible tool for aging research and therapeutic discovery.

◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:

Read at source →

Provenance

Source
OpenAlex
DOI
10.1002/advs.76740
Canonical
link ↗
Fetched
2026-07-30 MST

Cite this

APA
Salignon, J., Tsiokou, M., Marqués, P., Rodríguez-Diaz, E., Ang, H.X., Pietrocola, F., &amp; Riedel, C.G. (2026). Pasta, a Versatile Transcriptomic Clock, Maps the Chemical and Genetic Determinants of Aging and Rejuvenation. <em>Advanced Science</em>. https://doi.org/10.1002/advs.76740
Vancouver
Salignon J, Tsiokou M, Marqués P, Rodríguez-Diaz E, Ang HX, Pietrocola F, et al. Pasta, a Versatile Transcriptomic Clock, Maps the Chemical and Genetic Determinants of Aging and Rejuvenation. Advanced Science. 2026. doi:10.1002/advs.76740.
BibTeX
@article{jrme2026Pastaa, title = {Pasta, a Versatile Transcriptomic Clock, Maps the Chemical and Genetic Determinants of Aging and Rejuvenation}, author = {Jérôme Salignon and Maria Tsiokou and Patricia Marqués and Enriqueta Rodríguez-Diaz and Hazel X. Ang and Federico Pietrocola and Christian G. Riedel}, journal = {Advanced Science}, year = {2026}, doi = {10.1002/advs.76740}, }

Research neighborhood

References, citing works, and semantically nearest findings. Click a node to open it.

Related findings