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Protease/Metabolic Enzyme
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Research Areas
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Nature products
Antibodies
Peptides
Catalysts
Impurities
Intermediate
- Amino acid
- Ammonia Series
- Azaindazole
- Pyridazine Series
- Nucleoside Series
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- Pyrazole Series
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- Saccharide
- Azaindole
- Indole Series
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- Indazole Series
- Heterocyclic Series
- Benzene Series
- Pyridine Series
Raw Materials
Chloride Channel
Chemical Structure | Cat. No. | Product Name | CAS No. |
---|
BCP42713 | Endovion New | 265646-85-3 | |
Endovion is an ANO1 inhibitor.
|
BCP36797 | NPPB New | 107254-86-4 | |
NPPB is a blocker of the outwardly rectifying chloride channel (ORCC).
|
BCP32714 | R(+)-IAA-94 New | 54197-31-8 | |
R(+)-IAA-94 is a potent indanyloxyacetic acid blocker of epithelial chloride channels.
|
BCP32415 | Monna New | 1572936-83-4 | |
MONNA is a potent TMEM16A (Anoctamin-1) blocker (IC50 = 80 nM).
|
BCP25040 | CLP-290 | 1181083-81-7 | |
CLP-290 is a novel KCC2 modulator and prodrug of CLP-257, highly selective for KCC2 over related Cl- transporters.
|
BCP30217 | Chlorotoxin New | 163515-35-3 | |
Chlorotoxin is a 36 amino-acid peptide from the venom of the Israeli scorpion Leiurus quinquestriatus with anticancer activity.
|
BCP13328 | Adjudin New | 252025-52-8 | |
Adjudin is an extensively studied male contraceptive with a superior mitochondria-inhibitory effect. Adjudin is also a potent Cl- channel blocker.
|
BCP30868 | DCPIB New | 82749-70-0 | |
DCPIB is a potent and selective volume-sensitive anion channel (VSAC) blocker, swell in various cardiovascular tissues (IC50 = 4.1 μM in CPAE cells). It inhibits glucose-stimulated insulin in intact β-cells, and reverses cell swelling-induced action potential duration shortening in atrial myocytes and inhibits astroglial swelling in vitro.
|
BCP26187 | CaCCinh-A01 New | 407587-33-1 | |
CaCCinh-A01 is an inhibitor of both TMEM16A and calcium-activated chloride channel (CaCC) with IC50s of 2.1 and 10 μM, respectively.
|
BCP08672 | Lubiprostone | 333963-40-9 | |
Lubiprostone is a bicyclic fatty acid derived from prostaglandin E1 that acts by specifically activating ClC-2 chloride channels on the apical aspect of gastrointestinal epithelial cells, producing a chloride-rich fluid secretion.
|