Nombre del producto:3-[({imidazo[1,2-a]pyridin-2-yl}methyl)sulfanyl]-6-(thiophen-2-yl)pyridazine

IUPAC Name:3-[({imidazo[1,2-a]pyridin-2-yl}methyl)sulfanyl]-6-(thiophen-2-yl)pyridazine

CAS:1020242-32-3
Fórmula molecular:C16H12N4S2
Pureza:95%+
Número de catálogo:CM621908
Peso molecular:324.42

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Detalles del producto

Núm. De CAS :1020242-32-3
Fórmula molecular:C16H12N4S2
Punto de fusión:-
Código de sonrisas:C(SC1=CC=C(N=N1)C1=CC=CS1)C1=CN2C=CC=CC2=N1
Densidad:
Número de catálogo:CM621908
Peso molecular:324.42
Punto de ebullición:
Nº Mdl:
Almacenamiento:

Category Infos

Pyridazines
Pyridazine, also known as o-diazobenzene, is a six-membered heterocyclic compound containing two nitrogen heteroatoms in the 1 and 2 positions with a special structure and a wide biological activity. Pyridazine is more and more popular in drug development, and a variety of pyridazine drugs have been developed and marketed. From the perspective of the therapeutic field, pyridazine drug molecules are mainly used for tumor treatment, but also involve in many therapeutic fields such as inflammation, hypertension and cardiovascular disease. With the increase and in-depth of research, pyridazine drugs will play more roles in the treatment of diseases.
Thiophenes
Thiophene is a five-membered heterocyclic compound containing a sulfur heteroatom with the molecular formula C4H4S. Thiophene is aromatic and is very similar to benzene; electrophilic substitution reaction is easier than benzene, and it is mainly substituted at the 2-position. Thiophene ring system has certain stability to oxidant.
Imidazopyridines
With four imidazopyridine-containing drugs and one pyrazolopyridine-containing drug on the market, bicyclic pyridines containing ring-junction nitrogen are privileged structures in medicinal chemistry. With two nitrogen atoms with potential to serve as hydrogen bond acceptors, imidazopyridines and pyrazolopyridines may boost binding to target proteins and elevate potency. In addition, these structures have found utility in FBDD, covalent inhibitors, reducing metabolic liabilities, and creating novel chemical space and intellectual properties. With many of the advanced intermediates now commercially available, they will find more and more applications in drug discovery.
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