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Molecular Syndromology|August 16, 2014
Invertebrate models for coenzyme q10 deficiencyDaniel J M Fernández-Ayala, Sandra Jiménez-Gancedo, Ignacio Guerra, et al.Frontiers in Cell and Developmental Biology|February 11, 2020
Assaying Chromatin Accessibility Using ATAC-Seq in Invertebrate Chordate EmbryosMarta Silvia Magri, Sandra Jiménez-Gancedo, Stephanie Bertrand, et al.Nucleic Acids Research|February 7, 2024
Rewiring of the epigenome and chromatin architecture by exogenously induced retinoic acid signaling during zebrafish embryonic developmentMarta Moreno-Oñate, Lourdes Gallardo-Fuentes, Pedro M Martínez-García, et al.BMJ Open|March 28, 2013
Survival transcriptome in the coenzyme Q10 deficiency syndrome is acquired by epigenetic modifications: a modelling study for human coenzyme Q10 deficienciesDaniel J M Fernández-Ayala, Ignacio Guerra, Sandra Jiménez-Gancedo, et al.Proceedings of the National Academy of Sciences of the United States of America|March 9, 2022
Gain of gene regulatory network interconnectivity at the origin of vertebratesAlejandro Gil-Gálvez, Sandra Jiménez-Gancedo, Alberto Pérez-Posada, et al.Free Radical Biology & Medicine|January 26, 2025
Modelling the human coenzyme Q deficiency in Drosophila melanogasterDaniel J M Fernández-Ayala, Sandra Jiménez-Gancedo, Ignacio Guerra, et al.Nature Communications|August 9, 2020
Dynamic changes in the epigenomic landscape regulate human organogenesis and link to developmental disordersDave T Gerrard, Andrew A Berry, Rachel E Jennings, et al.Pageof 1