Hilmar Bading

Affiliations: 
Ruprecht-Karls-University Heidelberg, Heidelberg, Baden-Württemberg, Germany 
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"Hilmar Bading"
Mean distance: 13.81 (cluster 11)
 
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Publications

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Nassrallah WB, Ramandi D, Cheng J, et al. (2023) Activin A targets extrasynaptic NMDA receptors to ameliorate neuronal and behavioral deficits in a mouse model of Huntington disease. Neurobiology of Disease. 189: 106360
Pruunsild P, Bengtson CP, Loss I, et al. (2023) Expression of the primate-specific LINC00473 RNA in mouse neurons promotes excitability and CREB-regulated transcription. The Journal of Biological Chemistry. 104671
Gleitze S, Ramírez OA, Vega-Vásquez I, et al. (2023) Ryanodine Receptor Mediated Calcium Release Contributes to Ferroptosis Induced in Primary Hippocampal Neurons by GPX4 Inhibition. Antioxidants (Basel, Switzerland). 12
Fröhlich A, Olde Heuvel F, Rehman R, et al. (2022) Neuronal nuclear calcium signaling suppression of microglial reactivity is mediated by osteoprotegerin after traumatic brain injury. Journal of Neuroinflammation. 19: 279
Bauersachs HG, Bengtson CP, Weiss U, et al. (2021) N-methyl-d-aspartate Receptor-mediated Preconditioning Mitigates Excitotoxicity in Human Induced Pluripotent Stem Cell-derived Brain Organoids. Neuroscience
Hagenston AM, Yan J, Bas-Orth C, et al. (2021) Disrupted expression of mitochondrial NCLX sensitizes neuroglial networks to excitotoxic stimuli and renders synaptic activity toxic. The Journal of Biological Chemistry. 101508
Fairless R, Bading H, Diem R. (2021) Pathophysiological Ionotropic Glutamate Signalling in Neuroinflammatory Disease as a Therapeutic Target. Frontiers in Neuroscience. 15: 741280
Lissek T, Andrianarivelo A, Saint-Jour E, et al. (2021) Npas4 regulates medium spiny neuron physiology and gates cocaine-induced hyperlocomotion. Embo Reports. e51882
Mozolewski P, Jeziorek M, Schuster CM, et al. (2021) The role of nuclear Ca2+ in maintaining neuronal homeostasis and brain health. Journal of Cell Science. 134
Yan J, Bengtson CP, Buchthal B, et al. (2020) Coupling of NMDA receptors and TRPM4 guides discovery of unconventional neuroprotectants. Science (New York, N.Y.). 370
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