Jörg Striessnig, Ph.D.
Affiliations: | University of Innsbruck, Innsbruck, Tirol, Austria |
Area:
Calcium ChannelsGoogle:
"Jörg Striessnig"Mean distance: 15.51 (cluster 32) | S | N | B | C | P |
Parents
Sign in to add mentorWilliam A. Catterall | post-doc | University of Washington | |
Hartmut Glossmann | research scientist | University of Innsbruck |
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Publications
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Török F, Salamon S, Ortner NJ, et al. (2024) Inactivation induced by pathogenic Ca1.3 L-type Ca-channel variants enhances sensitivity for dihydropyridine Ca channel blockers. British Journal of Pharmacology |
Theiner T, Ortner NJ, Oberacher H, et al. (2024) Novel protocol for multiple-dose oral administration of the L-type Ca channel blocker isradipine in mice: A dose-finding pharmacokinetic study. Channels (Austin, Tex.). 18: 2335469 |
Alexander SPH, Mathie AA, Peters JA, et al. (2023) The Concise Guide to PHARMACOLOGY 2023/24: Ion channels. British Journal of Pharmacology. S145-S222 |
Ortner NJ, Sah A, Paradiso E, et al. (2023) The human channel gating-modifying A749G CACNA1D (Cav1.3) variant induces a neurodevelopmental syndrome-like phenotype in mice. Jci Insight. 8 |
Filippini L, Ortner NJ, Kaserer T, et al. (2023) Ca 1.3-selective inhibitors of voltage-gated L-type Ca channels: Fact or (still) fiction? British Journal of Pharmacology |
Török F, Tezcan K, Filippini L, et al. (2022) Germline de novo variant F747S extends the phenotypic spectrum of CACNA1D Ca2+ channelopathies. Human Molecular Genetics |
Siller A, Hofer NT, Tomagra G, et al. (2022) rβ2-subunit alternative splicing stabilizes Cav2.3 Ca channel activity during continuous midbrain dopamine neuron-like activity. Elife. 11 |
Shin J, Kovacheva L, Thomas D, et al. (2022) Ca1.3 calcium channels are full-range linear amplifiers of firing frequencies in lateral DA SN neurons. Science Advances. 8: eabm4560 |
Alexander SP, Mathie A, Peters JA, et al. (2021) THE CONCISE GUIDE TO PHARMACOLOGY 2021/22: Ion channels. British Journal of Pharmacology. 178: S157-S245 |
Striessnig J. (2021) Voltage-Gated Ca-Channel α1-Subunit Missense Mutations: Gain or Loss of Function - Implications for Potential Therapies. Frontiers in Synaptic Neuroscience. 13: 634760 |