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Product Category详细介绍
| 品牌 | absin | CAS | 60142-95-2 |
|---|---|---|---|
| 分子式 | C9H17NO2.HCl | 纯度 | 98% |
| 分子量 | 207.7 | 货号 | abs47028354 |
| 规格 | 10mg | 供货周期 | 现货 |
| 主要用途 | used to treat seizures and neuropathic p | 应用领域 | 化工,生物产业,农林牧渔,制药/生物制药,综合 |
Gabapentin HCl 60142-95-2
| 产品描述 | |
| 描述 | Gabapentin HCl is a GABA analogue, used to treat seizures and neuropathic pain. |
| 纯度 | 98% |
| 储存/保存方法 | Store at -20℃ for one year(Powder);Store at 2-4℃ for two weeks;Store at -20℃ for six months after dissolution. |
| 基本信息 | |
| 可溶性/溶解性 | DMSO:<1 mg/mL (<1 mM) |
| 生物活性 | |
| 靶点 | GABA receptor |
| In vitro(体外研究) | Gabapentin suppresses ectopic afferent discharge activity generated from injured peripheral nerves. Gabapentin, in a range of 30 to 90 mg/kg, significantly attenuates allodynia in nerve-injured rats. Gabapentin dose-dependently inhibits the ectopic discharge activity of 15 injured sciatic afferent nerve fibers through an action on impulse generation. Gabapentin inhibits KCl (30 mM)-evoked voltage-dependent Ca(2+) influx. Gabapentin potently inhibits the peak whole-cell Ca(2+) channel current (I(Ba)) in a dose-dependent manner with an estimated IC(50) value of 167 nM. Gabapentin inhibition is voltage-dependent, producing an approximately 7 mV hyperpolarizing shift in current voltage properties and reducing a non-inactivating component of whole-cell current activated at relatively depolarized potentials. Gabapentin selectively activates heterodimeric GABAB1a-B2 receptors, but not GABAB1b-B2 or GABAB1c-B2 receptors. Gabapentin selectively activates presynaptic GABAB heteroreceptors on glutamatergic terminals, but not GABAB autoreceptors on GABAergic terminals. Gabapentin is found to inhibit both the excitatory synaptic transmission in vitro and the neuronal response to noxious electrical and mechanical stimulation in vivo mediated by α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA), but not those mediated by N-methyl-D-asparate (NMDA) receptors. Gabapentin acts as an AMPA-receptor antagonist in the rat spinal cord to exert its spinal antinociceptive effect. Gabapentin depresses, but NMDA enhanced, the presynaptic fiber volley in the CA1 region of rat hippocampal slices. |
| 参考文献 | |
| 参考文献 |
| 研究领域 | |
| 研究领域 | Neuroscience Drug DiscoverySmall Molecule DrugLead Compound Discovery |
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