Juan Pedro
Bolaños Hernández
Catedrático de Universidad
University College London
Londres, Reino UnidoPublicaciones en colaboración con investigadores/as de University College London (27)
2018
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Guidelines on experimental methods to assess mitochondrial dysfunction in cellular models of neurodegenerative diseases
Cell Death and Differentiation, Vol. 25, Núm. 3, pp. 542-572
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NF-κB Activity Initiates Human ESC-Derived Neural Progenitor Cell Differentiation by Inducing a Metabolic Maturation Program
Stem Cell Reports, Vol. 10, Núm. 6, pp. 1766-1781
2017
2016
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Inflammation, glucose, and vascular cell damage: The role of the pentose phosphate pathway
Cardiovascular Diabetology, Vol. 15, Núm. 1
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Introduction to Special Issue on Mitochondrial Redox Signaling in Health and Disease
Free Radical Biology and Medicine
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NRF2 Orchestrates the Metabolic Shift during Induced Pluripotent Stem Cell Reprogramming
Cell Reports, Vol. 14, Núm. 8, pp. 1883-1891
2014
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Pentose-phosphate pathway disruption in the pathogenesis of Parkinson's disease
Translational Neuroscience, Vol. 5, Núm. 3, pp. 179-184
2010
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E3 ubiquitin ligase APC/C-Cdh1 accounts for the Warburg effect by linking glycolysis to cell proliferation
Proceedings of the National Academy of Sciences of the United States of America, Vol. 107, Núm. 2, pp. 738-741
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Glycolysis: a bioenergetic or a survival pathway?
Trends in Biochemical Sciences, Vol. 35, Núm. 3, pp. 145-149
2009
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The bioenergetic and antioxidant status of neurons is controlled by continuous degradation of a key glycolytic enzyme by APC/C-Cdh1
Nature Cell Biology, Vol. 11, Núm. 6, pp. 747-752
2007
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Poly(ADP-ribose) polymerase-1 protects neurons against apoptosis induced by oxidative stress
Cell Death and Differentiation, Vol. 14, Núm. 6, pp. 1211-1221
2006
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Nitric oxide, cell bioenergetics and neurodegeneration
Journal of Neurochemistry, Vol. 97, Núm. 6, pp. 1676-1689
2004
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Nitric oxide switches on glycolysis through the AMP protein kinase and 6-phosphofructo-2-kinase pathway
Nature Cell Biology, Vol. 6, Núm. 1, pp. 45-51
2003
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Differential effect of nitric oxide on glutathione metabolism and mitochondrial function in astrocytes and neurones: Implications for neuroprotection/neurodegeneration?
Journal of Neurochemistry, Vol. 86, Núm. 1, pp. 228-237
2002
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Antioxidants, reactive oxygen and nitrogen species, gene induction and mitochondrial function
Molecular Aspects of Medicine, Vol. 23, Núm. 1-3, pp. 209-285
2001
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Different responses of astrocytes and neurons to nitric oxide: The role of glycolytically generated ATP in astrocyte protection
Proceedings of the National Academy of Sciences of the United States of America, Vol. 98, Núm. 26, pp. 15294-15299
1999
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Nitric oxide, mitochondria and neurological disease
Biochimica et Biophysica Acta - Bioenergetics, Vol. 1410, Núm. 2, pp. 215-228
1997
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Impairment of astrocyte and neuronal energy metabolism by nitric oxide
Biochemical Society Transactions, Vol. 25, Núm. 3
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Interrelationships between astrocyte function, oxidative stress and antioxidant status within the central nervous system
Progress in Neurobiology, Vol. 52, Núm. 4, pp. 261-281
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Nitric oxide and neurodegeneration
Biochemical Society Transactions, Vol. 25, Núm. 3