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Beatriz G Perez-Nievas

Showing results (1-10 of 12) with videos related to

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Frontiers in Aging Neuroscience|June 21, 2018
Deciphering the Astrocyte Reaction in Alzheimer's DiseaseBeatriz G Perez-Nievas, Alberto Serrano-Pozo
Journal of Neurochemistry|November 4, 2010
Restraint stress increases neuroinflammation independently of amyloid β levels in amyloid precursor protein/PS1 transgenic miceBeatriz G Perez Nievas, Thea Hammerschmidt, Markus P Kummer, et al.
Essays in Biochemistry|November 30, 2022
Astrocyte adaptation in Alzheimer's disease: a focus on astrocytic P2X7RPaula Beltran-Lobo, Matthew J Reid, Maria Jimenez-Sanchez, et al.
Anesthesia and Analgesia|July 29, 2015
Stress Increases the Negative Effects of Chronic Pain on Hippocampal NeurogenesisCarmen Romero-Grimaldi, Esther Berrocoso, Cristina Alba-Delgado, et al.
Brain Communications|June 6, 2020
Bridging Integrator-1 protein loss in Alzheimer's disease promotes synaptic tau accumulation and disrupts tau releaseElizabeth B Glennon, Dawn H-W Lau, Rebecca M C Gabriele, et al.
Acta Neuropathologica Communications|April 3, 2016
Upregulation of calpain activity precedes tau phosphorylation and loss of synaptic proteins in Alzheimer's disease brainKsenia Kurbatskaya, Emma C Phillips, Cara L Croft, et al.
Journal of Neuroinflammation|December 29, 2021
Astrocytic C-X-C motif chemokine ligand-1 mediates β-amyloid-induced synaptotoxicityBeatriz G Perez-Nievas, Louisa Johnson, Paula Beltran-Lobo, et al.
Science Advances|March 20, 2024
Reactive astrocytes secrete the chaperone HSPB1 to mediate neuroprotectionFangjia Yang, Paula Beltran-Lobo, Katherine Sung, et al.
Brain, Behavior, and Immunity|September 16, 2023
P2X<sub>7</sub>R influences tau aggregate burden in human tauopathies and shows distinct signalling in microglia and astrocytesPaula Beltran-Lobo, Martina M Hughes, Claire Troakes, et al.
Iscience|February 8, 2021
Isoform-selective decrease of glycogen synthase kinase-3-beta (GSK-3β) reduces synaptic tau phosphorylation, transcellular spreading, and aggregationAna Claudia Amaral, Beatriz G Perez-Nievas, Michael Siao Tick Chong, et al.
Pageof 2

Showing results (1-10 of 12) with videos related to

Sort By:
Pageof 2
Frontiers in Aging Neuroscience|June 21, 2018
Deciphering the Astrocyte Reaction in Alzheimer's DiseaseBeatriz G Perez-Nievas, Alberto Serrano-Pozo
Journal of Neurochemistry|November 4, 2010
Restraint stress increases neuroinflammation independently of amyloid β levels in amyloid precursor protein/PS1 transgenic miceBeatriz G Perez Nievas, Thea Hammerschmidt, Markus P Kummer, et al.
Essays in Biochemistry|November 30, 2022
Astrocyte adaptation in Alzheimer's disease: a focus on astrocytic P2X7RPaula Beltran-Lobo, Matthew J Reid, Maria Jimenez-Sanchez, et al.
Anesthesia and Analgesia|July 29, 2015
Stress Increases the Negative Effects of Chronic Pain on Hippocampal NeurogenesisCarmen Romero-Grimaldi, Esther Berrocoso, Cristina Alba-Delgado, et al.
Brain Communications|June 6, 2020
Bridging Integrator-1 protein loss in Alzheimer's disease promotes synaptic tau accumulation and disrupts tau releaseElizabeth B Glennon, Dawn H-W Lau, Rebecca M C Gabriele, et al.
Acta Neuropathologica Communications|April 3, 2016
Upregulation of calpain activity precedes tau phosphorylation and loss of synaptic proteins in Alzheimer's disease brainKsenia Kurbatskaya, Emma C Phillips, Cara L Croft, et al.
Journal of Neuroinflammation|December 29, 2021
Astrocytic C-X-C motif chemokine ligand-1 mediates β-amyloid-induced synaptotoxicityBeatriz G Perez-Nievas, Louisa Johnson, Paula Beltran-Lobo, et al.
Science Advances|March 20, 2024
Reactive astrocytes secrete the chaperone HSPB1 to mediate neuroprotectionFangjia Yang, Paula Beltran-Lobo, Katherine Sung, et al.
Brain, Behavior, and Immunity|September 16, 2023
P2X<sub>7</sub>R influences tau aggregate burden in human tauopathies and shows distinct signalling in microglia and astrocytesPaula Beltran-Lobo, Martina M Hughes, Claire Troakes, et al.
Iscience|February 8, 2021
Isoform-selective decrease of glycogen synthase kinase-3-beta (GSK-3β) reduces synaptic tau phosphorylation, transcellular spreading, and aggregationAna Claudia Amaral, Beatriz G Perez-Nievas, Michael Siao Tick Chong, et al.
Pageof 2