30 Results for "

Use-dependent block

" in MedChemExpress (MCE) Product Catalog:
Products (30)

30 Results for "Use-dependent block" in MCE Product Catalog:

Art. -Nr.: HY-B1657AR
CAS. Nr.: 92134-98-0
Forschungsgebiete:  

Neurological Disease

Fosphenytoin (disodium) (Standard) is the analytical standard of Fosphenytoin (disodium). This product is intended for research and analytical applications. Fosphenytoin sodium is a phenytoin proagent with similar anticonvulsant properties. Its main mechanism is to block frequency-dependent, use-dependent and voltage-dependent neuronal sodium channels, and therefore limit repetitive firing of action potentials.
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Art. -Nr.: HY-A0093R
CAS. Nr.: 5370-01-4
Synonyms: KOE-1173 hydrochloride (Standard)
Mexiletine (hydrochloride) (Standard) is the analytical standard of Mexiletine (hydrochloride). This product is intended for research and analytical applications. Mexiletine is an orally effective antiarrhythmic agent which has also been found to be effective for myotonia and neuropathic pain. Mexiletine exerts its efficacy through blocking sodium channels (IC50 : 75±8 μM for tonic block, 23.6±2.8 μM for use-dependent block), therefore can be used for cardiovascular and neurological research .
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Art. -Nr.: HY-119521S
Synonyms: KOE-1173-d3
Mexiletine-d3 (KOE-1173-d3) is deuterium labeled Mexiletine. Mexiletine is an orally effective antiarrhythmic agent which has also been found to be effective for myotonia and neuropathic pain. Mexiletine exerts its efficacy through blocking sodium channels (IC50 : 75±8 μM for tonic block, 23.6±2.8 μM for use-dependent block), therefore can be used for cardiovascular and neurological research .
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Art. -Nr.: HY-119521S1
CAS. Nr.: 1330267-50-9
Synonyms: KOE-1173-d6
Mexiletine-d6 (KOE-1173-d6) is deuterium labeled Mexiletine. Mexiletine is an orally effective antiarrhythmic agent which has also been found to be effective for myotonia and neuropathic pain. Mexiletine exerts its efficacy through blocking sodium channels (IC50 : 75±8 μM for tonic block, 23.6±2.8 μM for use-dependent block), therefore can be used for cardiovascular and neurological research .
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Art. -Nr.: HY-113964
CAS. Nr.: 191217-42-2
Forschungsgebiete:  

Neurological Disease

UK-78282 is a KV1.3 channel inhibitor with an IC50 value of 0.20 μM and a Kd of 0.39 μM. UK-78282 also inhibits the Kv1.4 Potassium Channel. UK-78282 blocks KV1.3 in a use-dependent manner and inhibits human T lymphocyte activation by regulating the cell cycle. UK-78282 can be used in research related to mental disorders, such as depression and schizophrenia .
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Art. -Nr.: HY-12502AR
CAS. Nr.: 111011-76-8
Synonyms: NZ-105 hydrochloride monoethanolate (Standard); (±)-Efonidipine hydrochloride monoethanolate (Standard)
Efonidipine (NZ-105) hydrochloride monoethanolate (Standard) is the analytical standard of Efonidipine hydrochloride monoethanolate (HY-12502AR). This product is intended for research and analytical applications. Efonidipine (NZ-105) hydrochloride monoethanolate is an orally active dual L-type and T-type calcium channel blocker (CCB) with IC50 values of 1.8 and 350 nM, respectively. Efonidipine hydrochloride monoethanolate inhibits SARS-CoV-2 main protease. Efonidipine hydrochloride monoethanolate modulates adrenal steroidogenesis by increasing the expression of steroidogenic acute regulatory protein (StAR), dbcAMP-or angiotensin II-induced StAR mRNA expression and DHEA-S production, while suppressing the biosynthesis of aldosterone and cortisol. Efonidipine hydrochloride monoethanolate reduces plasma aldosterone levels in vivo. Efonidipine hydrochloride monoethanolate improves cardiac function in heart failure models by inhibiting T-type calcium channels (via both tonic and use-dependent blockade), independently of blood pressure reduction. Efonidipine hydrochloride monoethanolate can be used for research in hypertension, heart failure, and disorders involving dysregulated steroid hormone synthesis .
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Art. -Nr.: HY-B0211AR
CAS. Nr.: 850608-87-6
Synonyms: PK 26124 hydrochloride (Standard)
Riluzole hydrochloride (Standard) is the analytical standard of Riluzole hydrochloride. This product is intended for research and analytical applications. Riluzole hydrochloride is an anticonvulsant agent and belongs to the family of use-dependent Na+ channel blocker which can also inhibit GABA uptake with an IC50 of 43 μM.
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Art. -Nr.: HY-136995
CAS. Nr.: 99465-44-8
Target:  

Sodium Channel

Forschungsgebiete:  

Cardiovascular Disease

AFD-21 maleate is a drug with antiarrhythmic activity. AFD-21 maleate inhibits sodium channels by binding to sodium channels in an inactive state, with both use-dependent and voltage-dependent effects. The unbinding rate of AFD-21 maleate is similar to that of Class I antiarrhythmic drugs with moderate kinetics. AFD-21 maleate can cause a slight prolongation of the action potential duration and significantly reduce the maximum rise rate of the action potential at certain concentrations. AFD-21 maleate also showed use-dependent blocking effects as stimulation frequency increased .
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Art. -Nr.: HY-120751A
CAS. Nr.: 2751591-42-9
Forschungsgebiete:  

Neurological Disease

(S)-TROX-1 is the S-enantiomer of TROX-1 (HY-120751). TROX-1 is a selective, orally active and brain-penetrant N-type calcium channel (Cav2.2) inhibitor with an IC50 value of 0.11 μM. TROX-1 exerts state-dependent and use-dependent inhibition, preferentially targets open/inactivated channels, blocks depolarization-associated calcium influx, and fully blocks calcium influx in rat dorsal root ganglion neurons. TROX-1 reverses inflammatory-induced hyperalgesia, nerve injury-induced allodynia. TROX-1 can be used for the research of pain .
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Art. -Nr.: HY-142029
CAS. Nr.: 215996-42-2
Target:  

Sodium Channel

Forschungsgebiete:  

Neurological Disease

(3β)-Allopregnanolone sulfate sodium is a Nav1.3 α-subunit inhibitor (IC50: 75 μM for Nav1.3 + β1; 26 μM for Nav1.3 + β3). (3β)-Allopregnanolone sulfate sodium is involved in the analgesic mechanism of Allopregnanolone. (3β)-Allopregnanolone sulfate (sodium) can be used in the research of neuropathic pain .
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