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Clinical and Translational Medicine|April 2, 2025
Towards a unified framework for single-cell -omics-based disease prediction through AIMatteo Barberis, Jinkun XieNPJ Systems Biology and Applications|December 14, 2021
Cyclin/Forkhead-mediated coordination of cyclin waves: an autonomous oscillator rationalizing the quantitative model of Cdk control for budding yeastMatteo BarberisThe FEBS Journal|February 24, 2012
Sic1 as a timer of Clb cyclin waves in the yeast cell cycle--design principle of not just an inhibitorMatteo BarberisAdvances in Experimental Medicine and Biology|December 14, 2011
Molecular systems biology of Sic1 in yeast cell cycle regulation through multiscale modelingMatteo BarberisNPJ Systems Biology and Applications|June 12, 2021
Quantitative model of eukaryotic Cdk control through the Forkhead CONTROLLERMatteo BarberisNPJ Systems Biology and Applications|September 26, 2017
Quantitative Systems Biology to decipher design principles of a dynamic cell cycle network: the "Maximum Allowable mammalian Trade-Off-Weight" (MAmTOW)Matteo Barberis, Paul VerbruggenGenome Informatics. International Conference on Genome Informatics|June 12, 2008
Insights into the network controlling the G1/S transition in budding yeastMatteo Barberis, Edda KlippFrontiers in Microbiology|October 27, 2023
Exploring cell cycle-mediated regulations of glycolysis in budding yeastYanfei Zhang, Matteo BarberisClinical and Translational Medicine|March 19, 2024
Metabolic imbalance driving immune cell phenotype switching in autoimmune disorders: Tipping the balance of T- and B-cell interactionsMatteo Barberis, Alejandra Rojas LópezClinical and Translational Medicine|July 29, 2022
T cell phenotype switching in autoimmune disorders: Clinical significance of targeting metabolismMatteo Barberis, Alejandra Rojas LópezPageof 7