N-type calcium channel blocker-1
98%
- Product Code: 67651
CAS:
241499-17-2
Molecular Weight: | 461.73 g./mol | Molecular Formula: | C₃₁H₄₇N₃ |
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EC Number: | MDL Number: | ||
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Density: | Storage Condition: | 2-8℃ |
Product Description:
N-type calcium channel blockers are primarily used in the field of neuroscience and pain management. They play a crucial role in modulating neurotransmission by inhibiting the influx of calcium ions through N-type voltage-gated calcium channels. This action is particularly significant in the regulation of neurotransmitter release in the nervous system.
One of the key applications of N-type calcium channel blockers is in the treatment of chronic pain conditions. By blocking these channels, they can reduce the release of pain-signaling neurotransmitters, thereby alleviating pain. This makes them valuable in managing neuropathic pain, which is often resistant to conventional painkillers.
Additionally, these blockers are being explored for their potential in treating certain neurological disorders. For instance, they may offer therapeutic benefits in conditions like epilepsy, where abnormal neuronal activity is a concern. By stabilizing neuronal excitability, they can help in controlling seizures.
In cardiovascular research, N-type calcium channel blockers are studied for their effects on heart rate and blood pressure regulation. They can influence sympathetic nervous system activity, which is linked to cardiovascular function.
Overall, N-type calcium channel blockers hold promise in various therapeutic areas, particularly in pain management and neurological disorders, due to their ability to modulate calcium-dependent processes in the nervous system.
Sizes / Availability / Pricing:
Size (g) | Availability | Price | Quantity |
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0.001 | 10-20 days | $5,052.21 |
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0.005 | 10-20 days | $8,083.07 |
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N-type calcium channel blocker-1
N-type calcium channel blockers are primarily used in the field of neuroscience and pain management. They play a crucial role in modulating neurotransmission by inhibiting the influx of calcium ions through N-type voltage-gated calcium channels. This action is particularly significant in the regulation of neurotransmitter release in the nervous system.
One of the key applications of N-type calcium channel blockers is in the treatment of chronic pain conditions. By blocking these channels, they can reduce the release of pain-signaling neurotransmitters, thereby alleviating pain. This makes them valuable in managing neuropathic pain, which is often resistant to conventional painkillers.
Additionally, these blockers are being explored for their potential in treating certain neurological disorders. For instance, they may offer therapeutic benefits in conditions like epilepsy, where abnormal neuronal activity is a concern. By stabilizing neuronal excitability, they can help in controlling seizures.
In cardiovascular research, N-type calcium channel blockers are studied for their effects on heart rate and blood pressure regulation. They can influence sympathetic nervous system activity, which is linked to cardiovascular function.
Overall, N-type calcium channel blockers hold promise in various therapeutic areas, particularly in pain management and neurological disorders, due to their ability to modulate calcium-dependent processes in the nervous system.
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