article Open AccessTop 1% cited
Somatic Oxidative Bioenergetics Transitions into Pluripotency-Dependent Glycolysis to Facilitate Nuclear Reprogramming
Cell Metabolism · 2011 · Vol. 14(2) · pp. 264–271
Clifford D.L. Folmes✉(Mayo Clinic)Timothy J. Nelson(Mayo Clinic)Almudena Martinez‐Fernandez(Mayo Clinic)D. Kent Arrell(Mayo Clinic)Jelena Zlatkovic Lindor(Mayo Clinic)Petras P. Dzeja(Mayo Clinic)Yasuhiro Ikeda(Mayo Clinic in Arizona)Carmen Pérez-Terzic(Mayo Clinic)André Terzic(Mayo Clinic)
Mitochondrial Function and PathologyPluripotent Stem Cells ResearchCRISPR and Genetic EngineeringBioenergeticsReprogrammingSomatic cellOxidative phosphorylationCell biologyGlycolysisEnergy metabolismBiologyChemistryMetabolism
MeSH terms
AnimalsCell DifferentiationCell LineElectron TransportEnergy MetabolismGlucoseGlycolysisMitochondriaOxidative PhosphorylationOxygen ConsumptionGene Expression Regulation, DevelopmentalPluripotent Stem CellsMiceMetabolomicsCellular Reprogramming
Funding
- Mayo Clinic
Citations
974
FWCI
21.16
field-weighted impact
References
43
Percentile
100%
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Stem Cells · 2010 · 605 citations
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Cell stem cell · 2009 · 761 citations
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Nature Protocols · 2007 · 2,074 citations
Induction of Pluripotent Stem Cells from Mouse Embryonic and Adult Fibroblast Cultures by Defined Factors
Cell · 2006 · 26,294 citations
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