Rolf Sprengel, Ph.D

Affiliations: 
1996- Molecular Neurobiology Max Planck Institute for Medical Research, Heidelberg, Baden-Württemberg, Germany 
 2014- Research Group of the Max Planck Institute for Medical Research Inst. for Anatomy and Cell Biology, Heidelberg University 
Area:
Glutamate receptor channels
Website:
http://www.mpimf-heidelberg.mpg.de/14073630/gruppesprengel
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"Rolf Sprengel"
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Publications

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Sprengel R, Eltokhi A, Single FN. (2024) Generation of Rare Human NMDA Receptor Variants in Mice. Methods in Molecular Biology (Clifton, N.J.). 2799: 79-105
Carretero-Guillén A, Treviño M, Gómez-Climent MÁ, et al. (2024) Dentate gyrus is needed for memory retrieval. Molecular Psychiatry
Bertocchi I, Cifarelli L, Oberto A, et al. (2024) Radiprodil, a selective GluN2B negative allosteric modulator, rescues audiogenic seizures in mice carrying the GluN2A(N615S) mutation. British Journal of Pharmacology
Eltokhi A, Bertocchi I, Rozov A, et al. (2023) Distinct effects of AMPAR subunit depletion on spatial memory. Iscience. 26: 108116
Bertocchi I, Rocha-Almeida F, Romero-Barragán MT, et al. (2023) Pre- and postsynaptic N-methyl-D-aspartate receptors are required for sequential printing of fear memory engrams. Iscience. 26: 108050
Eltokhi A, Gonzalez-Lozano MA, Oettl LL, et al. (2021) Correction: Imbalanced post- and extrasynaptic SHANK2A functions during development affect social behavior in SHANK2-mediated neuropsychiatric disorders. Molecular Psychiatry
Eltokhi A, Gonzalez-Lozano MA, Oettl LL, et al. (2021) Correction: Imbalanced post- and extrasynaptic SHANK2A functions during development affect social behavior in SHANK2-mediated neuropsychiatric disorders. Molecular Psychiatry
Eltokhi A, Gonzalez-Lozano MA, Oettl LL, et al. (2021) Imbalanced post- and extrasynaptic SHANK2A functions during development affect social behavior in SHANK2-mediated neuropsychiatric disorders. Molecular Psychiatry
Bertocchi I, Eltokhi A, Rozov A, et al. (2021) Author Correction: Voltage-independent GluN2A-type NMDA receptor Ca signaling promotes audiogenic seizures, attentional and cognitive deficits in mice. Communications Biology. 4: 187
Bertocchi I, Eltokhi A, Rozov A, et al. (2021) Voltage-independent GluN2A-type NMDA receptor Ca signaling promotes audiogenic seizures, attentional and cognitive deficits in mice. Communications Biology. 4: 59
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