Epilepsy Research

Epilepsy is a group of neurological conditions consisting of recurrent, usually unprovoked epileptic seizures. Epileptic seizures have recently been defined as "a transient occurrence of signs and/or symptoms due to abnormal, excessive or synchronous neuronal activity in the brain". Epilepsy is one of the most common disorders of the brain, with one in 10 people suffering at least one seizure in their lifetime. There are over 40 different types of epilepsy, each of which presents with its own unique combination of seizure type, typical age of onset, EEG findings, treatment, and prognosis.

Epilepsy Research Products Targets

Products for Epilepsy Research - Page 15

  1. Cat.No. Product Name Information/Activity
  2. BCC7471 U 93631 U93631 is a GABAA receptor ligand of novel chemical structure with IC50 of 100 nM,and has been shown to induce a rapid, time-dependent decay of GABA-induced whole-cell Cl-currents in recombinant GABAA receptors. U 93631 chemical structure
  3. BCC5521 Emapunil Emapunil(AC-5216;XBD-173) is a translocator protein [TSPO (18 kDa)] ligand. Emapunil chemical structure
  4. BCC7711 Bretazenil 84379-13-5 Bretazenil chemical structure
  5. BCC6635 β-CCB 84454-35-3 β-CCB chemical structure
  6. BCC7162 CL 218872 66548-69-4 CL 218872 chemical structure
  7. BCC6671 Dihydroergotoxine mesylate Dihydroergotoxine mesylate is a complex of closely related alkaloid salts; Binds with high affinity to the GABAA receptor Cl- channel, producing an allosteric interaction with the benzodiazepine site. Dihydroergotoxine mesylate chemical structure
  8. BCC7560 DMCM hydrochloride DMCM hydrochloride is a nonselective full inverse agonist of benzodiazepine. DMCM shows bnding afinity at human recombinant GABAA αxβ3γ2 receptor subtypes with Kis of 10 nM, 13 nM, 7.5 nM, 2.2 nM for α1, α2, α3, and α5 receptors, respectively. DMCM hydrochloride chemical structure
  9. BCC6694 FG 7142 FG 7142 (ZK 39106; LSU-65), a non-selectively benzodiazepine inverse agonist, has high affinity for the α1 subunit-containing GABAA receptor (Ki=91 nM). FG 7142 (ZK 39106; LSU-65) also modulates GABA-induced chloride flux at GABAA receptors expressing the α1 subunit (EC50= 137 nM). FG 7142 (ZK 39106; LSU-65) can increase tyrosine hydroxylation and cause upregulation of β-adrenoceptors in mouse cerebral cortex. FG 7142 chemical structure
  10. BCC6738 FGIN-1-27 142720-24-9 FGIN-1-27 chemical structure
  11. BCC6739 FGIN-1-43 145040-29-5 FGIN-1-43 chemical structure

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