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27 results on '"Philanthotoxin"'

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1. Spontaneous neurotransmission at evocable synapses predicts their responsiveness to action potentials

2. Cerebellar Kainate Receptor-Mediated Facilitation of Glutamate Release Requires Ca2+-Calmodulin and PKA

3. Neuroprotection Against NMDA-Induced Retinal Damage by Philanthotoxin-343 Involves Reduced Nitrosative Stress.

4. Cerebellar Kainate Receptor-Mediated Facilitation of Glutamate Release Requires Ca2+-Calmodulin and PKA.

5. Use of tetraethylammonium (TEA) and Tris loading for blocking TRPM7 channels in intact cells.

6. Inhibition of nicotinic acetylcholine receptors by oligoarginine peptides and polyamine-related compounds.

7. Role of α2δ-3 in regulating calcium channel localization at presynaptic active zones during homeostatic plasticity.

8. Spontaneous neurotransmission at evocable synapses predicts their responsiveness to action potentials.

10. GluA2-lacking AMPA receptors in hippocampal CA1 cell synapses: evidence from gene-targeted mice

12. Anti-Inflammatory and Anti-asthmatic Effects of TMDCT Decoction in Eosinophilic Asthma Through Treg/Th17 Balance.

15. Screening for Activity Against AMPA Receptors Among Anticonvulsants—Focus on Phenytoin.

17. Synaptic Properties and Plasticity Mechanisms of Invertebrate Tonic and Phasic Neurons.

18. Synaptic Plasticity in Cortical Inhibitory Neurons: What Mechanisms May Help to Balance Synaptic Weight Changes?

20. Regulation of Hippocampal Synaptic Function by the Metabolic Hormone, Leptin: Implications for Health and Neurodegenerative Disease.

22. Non-canonical Mechanisms of Presynaptic Kainate Receptors Controlling Glutamate Release.

23. SPARC and GluA1-Containing AMPA Receptors Promote Neuronal Health Following CNS Injury.

24. Inhibition of Spinal Ca2+-Permeable AMPA Receptors with Dicationic Compounds Alleviates Persistent Inflammatory Pain without Adverse Effects.

26. A single-cross, RNA interference-based genetic tool for examining the long-term maintenance of homeostatic plasticity.

27. Sensory gating of an embryonic zebrafish interneuron during spontaneous motor behaviors.

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