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Metabolites|September 26, 2021
Substantively Lowered Levels of Pantothenic Acid (Vitamin B5) in Several Regions of the Human Brain in Parkinson's Disease DementiaMelissa Scholefield, Stephanie J Church, Jingshu Xu, et al.Neurobiology of Disease|March 14, 2009
Phosphodiesterase 10 inhibition reduces striatal excitotoxicity in the quinolinic acid model of Huntington's diseaseCarmela Giampà, Stefano Patassini, Antonella Borreca, et al.Journal of Breath Research|April 10, 2019
Targeted breath analysis: exogenous volatile organic compounds (EVOC) as metabolic pathway-specific probesEdoardo Gaude, Morad K Nakhleh, Stefano Patassini, et al.Biochemical and Biophysical Research Communications|November 25, 2019
Vitamin B5 (d-pantothenic acid) localizes in myelinated structures of the rat brain: Potential role for cerebral vitamin B5 stores in local myelin homeostasisNashwah Ismail, Nina Kureishy, Stephanie J Church, et al.The European Journal of Neuroscience|March 18, 2009
Phosphodiesterase type IV inhibition prevents sequestration of CREB binding protein, protects striatal parvalbumin interneurons and rescues motor deficits in the R6/2 mouse model of Huntington's diseaseCarmela Giampà, Silvia Middei, Stefano Patassini, et al.Frontiers in Molecular Neuroscience|July 31, 2023
Extensive multiregional urea elevations in a case-control study of vascular dementia point toward a novel shared mechanism of disease amongst the age-related dementiasSasha A Philbert, Jingshu Xu, Melissa Scholefield, et al.Biochemical and Biophysical Research Communications|May 18, 2020
Cerebral deficiency of vitamin B5 (d-pantothenic acid; pantothenate) as a potentially-reversible cause of neurodegeneration and dementia in sporadic Alzheimer's diseaseJingshu Xu, Stefano Patassini, Paul Begley, et al.Frontiers in Aging Neuroscience|March 22, 2021
Widespread Decreases in Cerebral Copper Are Common to Parkinson's Disease Dementia and Alzheimer's Disease DementiaMelissa Scholefield, Stephanie J Church, Jingshu Xu, et al.Frontiers in Molecular Neuroscience|November 9, 2021
Severe and Regionally Widespread Increases in Tissue Urea in the Human Brain Represent a Novel Finding of Pathogenic Potential in Parkinson's Disease DementiaMelissa Scholefield, Stephanie J Church, Jingshu Xu, et al.Neuropsychopharmacology : Official Publication of the American College of Neuropsychopharmacology|March 5, 2010
TrkB/BDNF-dependent striatal plasticity and behavior in a genetic model of epilepsy: modulation by valproic acidVeronica Ghiglieri, Carmelo Sgobio, Stefano Patassini, et al.Pageof 4