55 Results for "

KCNQ

" in MedChemExpress (MCE) Product Catalog:
Products (55)

55 Results for "KCNQ" in MCE Product Catalog:

3
3 Cited Publications
Cat. No.: HY-108577
CAS No.: 122955-13-9
Purity:  99.63%
Target:  

Potassium Channel

Research Areas:  

Neurological Disease

XE991 dihydrochloride, a Kv7 (KCNQ) channels blocker, potently inhibits Kv7.1 (KCNQ1), Kv7.2 (KCNQ2), Kv7.2 + Kv7.3 (KCNQ3) channel, and M-current with IC50s of 0.75 μM, 0.71 μM, 0.6 μM, and 0.98 μM, respectively .
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3
3 Cited Publications
Cat. No.: HY-108577A
CAS No.: 122955-42-4
Purity:  99.62%
Target:  

Potassium Channel

Research Areas:  

Neurological Disease

XE 991 dihydrochloride, a Kv7 (KCNQ) channels blocker, potently inhibits Kv7.1 (KCNQ1), Kv7.2 (KCNQ2), Kv7.2 + Kv7.3 (KCNQ3) channel, and M-current with IC50s of 0.75 μM, 0.71 μM, 0.6 μM, and 0.98 μM, respectively .
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3
3 Cited Publications
Cat. No.: HY-101396
CAS No.: 582323-16-8
Purity:  99.20%
Target:  

Potassium Channel

Research Areas:  

Neurological Disease

ICA-069673 is a KCNQ2/Q3 potassium channel activator. ICA-069673 demonstrates greater selectivity for KV7.2/7.3 over KV7.3/KV7.5, with EC50s of 0.69 μM and 14.3 μM, respectively. ICA-069673 inhibits spontaneous phasic and nerve-evoked contractions in guinea pig detrusor smooth muscle (DSM). ICA-069673 also decreases the global intracellular Ca(2+) concentration in DSM cells .
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2
2 Cited Publications
Cat. No.: HY-122114
CAS No.: 325457-89-4
Purity:  99.27%
Target:  

Potassium Channel

Research Areas:  

Neurological Disease

ICA-27243 is a selective, potent and orally active KCNQ2/Q3 potassium channel opener with an EC50 of 0.38 μM. ICA-27243 is less effective at activating KCNQ4 and KCNQ3/Q5. ICA-27243 has antiepileptic and anticonvulsant effects .
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2
2 Cited Publications
Cat. No.: HY-W020468
CAS No.: 105431-72-9
Synonyms: DuP 996
Research Areas:  

Neurological Disease

Linopirdine (DuP 996) is an orally active, selective M-type K + current (IM; Kv7; KCNQ Channels) inhibitor with an IC50 of 2.4 μM. Linopirdine is a TRPV1 agonist. Linopirdine, a putative cognition enhancing agent, increases acetylcholine release in rat brain tissue .
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1
1 Cited Publications
Cat. No.: HY-12343
CAS No.: 1401242-74-7
Purity:  98.46%
Synonyms: CID-53347902
Target:  

Potassium Channel

Research Areas:  

Cardiovascular Disease

ML277 (CID-53347902) is a potent and selective activator of K(v)7.1 (KCNQ1) potassium channel activator (EC50=270 nM), rescues function of pathophysiologically important mutant channel complexes in human induced pluripotent stem cell-derived cardiomyocytes .
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Cat. No.: HY-18063
CAS No.: 1392494-64-2
Research Areas:  

Neurological Disease

ML252 is a selective inhibitor of KCNQ2 (Kv7.2) channel with an IC50s of 69 nM, 2.92 μM, 0.12 μM and 0.20 μM for KCNQ2, KCNQ1 (Kv7.1), KCNQ2/Q3 and KCNQ4, respectively. ML252 also inhibits Cytochrome P450 with IC50s of 6.1 nM (CYP1A2), 18.9 nM (CYP2C9), 3.9 nM (CYP3A4), 19.9 nM (CYP2D6), respectively. ML252 shows highly brain penetrant .
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Cat. No.: HY-108587
CAS No.: 325457-99-6
Purity:  99.85%
Target:  

Potassium Channel

Research Areas:  

Neurological Disease

ICA 110381 is an orally active Kv7.2/Kv7.3 (KCNQ2/3) potassium channel activator with anticonvulsive properties. ICA 110381 is a KCNQ2/Q3 activator (EC50=0.38 μM) as well as KCNQ1 antagonist (IC50=15 μM) .
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Cat. No.: HY-157485
CAS No.: 339287-36-4
Purity:  99.99%
Target:  

Potassium Channel

Research Areas:  

Others

Ebio1 is a selective voltage-gated potassium channel KCNQ2 activator. Ebio1 activates KCNQ2 by generating an extended channel gate with greater conductance at a saturation voltage (+50 mV) .
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Cat. No.: HY-108591
CAS No.: 103342-82-1
Purity:  99.67%
Synonyms: R-L3
Target:  

Potassium Channel

Research Areas:  

Cardiovascular Disease

L-364,373 (R-L3) is a voltage-gated Kv7.1 (KCNQ1)/mink channels activator. L-364,373 activates Iks (slow delayed rectifier potassium current) and shortens action potential duration in guinea pig cardiac myocytes, and suppresses early afterdepolarizations in rabbit ventricular myocytes .
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Cat. No.: HY-145016
CAS No.: 1821222-10-9
Purity:  99.53%
Target:  

Potassium Channel

Research Areas:  

Neurological Disease

HN37 as a potent and chemically stable antiepileptic agent candidate, with an EC50 of 37 nM for KCNQ2 . HN37 is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
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Cat. No.: HY-123264
CAS No.: 1919050-87-5
Purity:  99.20%
Target:  

Potassium Channel

Research Areas:  

Neurological Disease

RL648_81 is a specific KQT-like subfamily 2/3 (KCNQ2/3) activator with an EC50 of 190 nM. RL648_81 robustly shifts the V1/2 of KCNQ2/3 channels towards hyperpolarized potentials.RL648_81 does not shift the V1/2 of either KCNQ4 or KCNQ5.RL648_81 has?the?potential?for?neurologic disorders associated with neuronal hyperexcitability research .
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Cat. No.: HY-108592
CAS No.: 918311-87-2
Purity:  98.91%
UCL 2077 is a potassium channel and slow afterhyperpolarization (sAHP) inhibitor. UCL 2077 selectively blocks sAHP channels without affecting L-type Ca 2+ currents. UCL 2077 blocks KCNQ1- and KCNQ2-containing K + channels, decreases erg current amplitude, increases erg deactivation rate. UCL 2077 can be used for the research of hippocampus-dependent memory retrieval deficit and cardiac arrhythmias .
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Cat. No.: HY-P5925A
Synonyms: SsTx Toxin TFA
Ssm Spooky Toxin TFA is found in Scolopendra mutilans that potently inhibits KCNQ (voltage-gated potassium channel family 7) channels, with IC50s of 2.8 μM, 5.26 μM and 0.1-0.3 M for Kv7.4, Kv1.3, and Shal channel, respectivily. Ssm Spooky Toxin TFA inhibits cytokine generation by specifically acting on the KV1.3 channel in T cells. Ssm Spooky Toxin TFA plays an essential role in the centipede’s circulatory system .
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Cat. No.: HY-115823
CAS No.: 325457-98-5
Target:  

Potassium Channel

Research Areas:  

Neurological Disease

ztz240 is a chemical modulator of voltage-gated potassium channel Kv7 (KCNQ) (KCNQ2 and 3: EC50=6.1 μM; KCNQ4: EC50=12.2 μM). ztz240 can be used in analgesia and anti-epileptic research .
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Cat. No.: HY-121977
CAS No.: 199335-15-4
Target:  

Potassium Channel

Research Areas:  

Inflammation/Immunology

IKs124 is KCNE2/KCNQ1 potassium channel blocker with the with an IC50 of 8 nM. IKs124 can be used for study of peptic ulcers .
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Cat. No.: HY-179065
CAS No.: 882235-30-5
Target:  

Potassium Channel

Research Areas:  

Cardiovascular Disease

VU0494372 is an activator of potassium ion channel KCNQ1. VU0494372 can significantly enhance the cell surface expression and transport efficiency of KCNQ1. VU0494372 does not alter KCNQ1 mRNA levels and protein degradation rate, and has no significant cytotoxicity. VU0494372 can be used for research on cardiovascular conditions .
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Cat. No.: HY-122504
CAS No.: 2764-03-6
Target:  

Potassium Channel

Research Areas:  

Neurological Disease

Linoleoyl glycine is a modified polyunsaturated fatty acid. Linoleoyl glycine has activating effects on human KCNQ1/KCNE1 (hKCNQ1/hKCNE1) channels expressed in Xenopus oocytes .
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Cat. No.: HY-172140
Target:  

Potassium Channel

Research Areas:  

Neurological Disease

Ebio3 is a selective potassium channel (KCNQ2) inhibitor with an IC50 of 1.2 nM. Ebio3 binds to the KCNQ2 channel through its hydrophobic tail, causing the S6 helix to move inward, which leads to the closure of the inner gate. The inhibitory effect of Ebio3 is also effective in pathogenic mutants of KCNQ2 (such as R75C and I238L), where it can inhibit outward currents by more than 80%. Ebio3 is expected to be used in the research of neurological diseases such as epilepsy .
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Cat. No.: HY-117174
CAS No.: 170228-29-2
Target:  

Potassium Channel

Research Areas:  

Cardiovascular Disease

L-735821 is a Potassium channel blocker and an antagonist of IKs. L-735821 inhibits the KCNQ1 channel activity with an EC50 of 0.08 μM. L-735821 can increase IKs and IKr current-voltage relations in rabbit ventricular myocytes. L-735821 fully abolishes IKs in isolated human ventricular myocytes at 100 nmol/L. L-735821 can easily enter single myocytes .
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