scholarly article | Q13442814 |
P50 | author | Yuko Cho | Q59393016 |
Minoru Wakamori | Q77696685 | ||
Keiichi Konoki | Q86446496 | ||
Mari Yotsu-Yamashita | Q87677978 | ||
Toshio Nishikawa | Q87851860 | ||
Tadaaki Tsukamoto | Q88833323 | ||
Masaatsu Adachi | Q88833325 | ||
P2093 | author name string | Shouta Tokoro | |
Yoshiki Satake | |||
Ryo Sakakibara | |||
Takuya Imazu | |||
Yukie Chiba | |||
Shunsuke Tsunogae | |||
Tomoshi Yamada | |||
P2860 | cites work | Fibroblast growth factor 14 is an intracellular modulator of voltage-gated sodium channels | Q24544162 |
TETRODOTOXIN BLOCKAGE OF SODIUM CONDUCTANCE INCREASE IN LOBSTER GIANT AXONS | Q24672060 | ||
High-efficiency transformation of mammalian cells by plasmid DNA | Q27860469 | ||
Selective blocking effects of 4,9-anhydrotetrodotoxin, purified from a crude mixture of tetrodotoxin analogues, on NaV1.6 channels and its chemical aspects | Q28084324 | ||
A sodium-channel mutation causes isolated cardiac conduction disease | Q28203120 | ||
Recent progress in sodium channel modulators for pain | Q28244676 | ||
International Union of Pharmacology. XLVII. Nomenclature and structure-function relationships of voltage-gated sodium channels | Q28289125 | ||
Cardiac sodium channels (hH1) are intrinsically more sensitive to block by lidocaine than are skeletal muscle (mu 1) channels | Q28379079 | ||
The IUPHAR/BPS Guide to PHARMACOLOGY in 2016: towards curated quantitative interactions between 1300 protein targets and 6000 ligands | Q28603128 | ||
G*Power 3: a flexible statistical power analysis program for the social, behavioral, and biomedical sciences | Q29547562 | ||
Evidence for a role of Nav1.6 in facilitating increases in neuronal hyperexcitability during epileptogenesis | Q30411051 | ||
The Concise Guide to PHARMACOLOGY 2015/16: Voltage-gated ion channels. | Q30488645 | ||
Voltage-gated ion channels and gating modifier toxins. | Q34161355 | ||
Tonic and phasic tetrodotoxin block of sodium channels with point mutations in the outer pore region | Q34170820 | ||
Interactions of the C-11 hydroxyl of tetrodotoxin with the sodium channel outer vestibule | Q34180126 | ||
First asymmetric total synthesis of tetrodotoxin | Q34214527 | ||
An efficient total synthesis of optically active tetrodotoxin | Q34348138 | ||
Brugada syndrome: report of the second consensus conference: endorsed by the Heart Rhythm Society and the European Heart Rhythm Association. | Q34385271 | ||
Sodium channel mutations in epilepsy and other neurological disorders | Q36216288 | ||
Marked difference in saxitoxin and tetrodotoxin affinity for the human nociceptive voltage-gated sodium channel (Nav1.7) [corrected] | Q36397948 | ||
Actions of chiriquitoxin on frog skeletal muscle fibers and implications for the tetrodotoxin/saxitoxin receptor | Q36434992 | ||
The role of sodium channels in chronic inflammatory and neuropathic pain | Q36456961 | ||
Characterization of Endogenous Sodium Channels in the ND7-23 Neuroblastoma Cell Line: Implications for Use as a Heterologous Ion Channel Expression System Suitable for Automated Patch Clamp Screening | Q36707638 | ||
First Identification of 5,11-Dideoxytetrodotoxin in Marine Animals, and Characterization of Major Fragment Ions of Tetrodotoxin and Its Analogs by High Resolution ESI-MS/MS | Q37155580 | ||
The voltage-gated sodium ion channel inhibitory activities of a new tetrodotoxin analogue, 4,4a-anhydrotetrodotoxin, and three other analogues evaluated by colorimetric cell-based assay | Q38769215 | ||
A structural model of the tetrodotoxin and saxitoxin binding site of the Na+ channel | Q39452849 | ||
Modeling P-loops domain of sodium channel: homology with potassium channels and interaction with ligands | Q40311449 | ||
Sodium channel mutation leading to saxitoxin resistance in clams increases risk of PSP. | Q40437850 | ||
A quantitative and comparative study of the effects of a synthetic ciguatoxin CTX3C on the kinetic properties of voltage-dependent sodium channels | Q40545361 | ||
Biological activity of 8,11-dideoxytetrodotoxin: lethality to mice and the inhibitory activity to cytotoxicity of ouabain and veratridine in mouse neuroblastoma cells, Neuro-2a | Q40628727 | ||
Chiriquitoxin, a new tool for mapping ionic channels | Q41550686 | ||
Experimental design and analysis and their reporting: new guidance for publication in BJP. | Q42356330 | ||
Synthesis of 5- and 8-deoxytetrodotoxin | Q47866203 | ||
Isolation of 6-deoxytetrodotoxin from the pufferfish, Takifugu pardalis, and a comparison of the effects of the C-6 and C-11 hydroxy groups of tetrodotoxin on its activity | Q47895256 | ||
Total synthesis of chiriquitoxin, an analogue of tetrodotoxin isolated from the skin of a dart frog | Q47920539 | ||
Resurgent-like currents in mouse vas deferens myocytes are mediated by NaV1.6 voltage-gated sodium channels | Q48130212 | ||
Effects of specific modifications of several hydroxyls of tetrodotoxin on its affinity to rat brain membrane | Q48205069 | ||
A mutant of TTX-resistant cardiac sodium channels with TTX-sensitive properties | Q48479782 | ||
The TTX metabolite 4,9-anhydro-TTX is a highly specific blocker of the Na(v1.6) voltage-dependent sodium channel | Q48595392 | ||
An efficient total synthesis of optically active tetrodotoxin from levoglucosenone | Q48605656 | ||
Mapping the site of block by tetrodotoxin and saxitoxin of sodium channel II. | Q50796508 | ||
Geographutoxin II, a novel peptide inhibitor of Na channels of skeletal muscles and autonomic nerves | Q51803246 | ||
Saxitoxin and Tetrodotoxin: Comparison of Nerve Blocking Mechanism | Q52755804 | ||
Stereocontrolled Synthesis of (-)-5,11-Dideoxytetrodotoxin | Q73129520 | ||
P433 | issue | 21 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 3881-3892 | |
P577 | publication date | 2017-09-20 | |
P1433 | published in | British Journal of Pharmacology | Q919631 |
P1476 | title | Differential binding of tetrodotoxin and its derivatives to voltage-sensitive sodium channel subtypes (Nav 1.1 to Nav 1.7) | |
P478 | volume | 174 |
Search more.