Functional Coupling Between Voltage-Dependent Sodium Channels and Activation of the Ca<sup>2+</sup> Signaling That Mediates Endothelial Cell Migration. [PDF]
Espinoza H, Figueroa XF.
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The Cardioprotective Potential of Marine Venom and Toxins. [PDF]
Siagian VHM, Nuwarda RF.
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Pharmacological inhibition of NaV1.8 by suzetrigine reveals potent analgesic potential without tolerance development in mice. [PDF]
Ali MY +4 more
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Ripples in Time and Space Regulate Epileptic Firing in the Hippocampus. [PDF]
Stafstrom CE.
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Cost-Effective and Rapid Detection of Tetrodotoxin Using Indium Tin Oxide Electrodes via In Vitro Electrophysiology and Electrochemistry. [PDF]
Pandurangi NAC +6 more
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Survey of Tetrodotoxins (TTXs) in Gastropods, Sea Urchins, and Blue Crabs from the Adriatic Sea: First Report in <i>Paracentrotus lividus</i>. [PDF]
Bacchiocchi S +14 more
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Boron's Double Edge-Antibiotics, Toxins, and the Fine Line Between Them. [PDF]
Dembitsky VM +3 more
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Ambroxol has a long history for the treatment of airway diseases because of its beneficial effects on surfactant synthesis and mucus-modifying properties. Some findings, however, point to an additional effect on neuronal signal transduction: ambroxol can suppress reflexes such as the cough or the corneal reflex.
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Tetrodotoxin (TTX) is a small molecular weight neurotoxin that occludes voltage-gated sodium channels in nerve and muscle tissue, resulting in respiratory paralysis and death. A high affinity antibody that can neutralize the toxicity of TTX is still lacking, so it is very important to prepare an antibody for TTX therapy and detection.
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