864539-99-1Relevant academic research and scientific papers
Synthesis and Structural Investigation of Some Electron-Rich Nitroaromatics
White, Jonathan M.,Skene, Colin E.,Deadman, John,Epa, Ruwan,Foenander, Sarah,Hamer, Kyle,Fellowes, Thomas,Lim, Shea Fern,Marcuccio, Sebastian M.,Martin, Roger F.
, p. 311 - 327 (2019/02/07)
2,4-Difluoro-, 2,4,6-Trifluoro-, and 2,3,4,6,tetrafluoronitrobenzenes undergo nucleophilic aromatic substitution, once, twice, and three times with a variety of amine substituents with a high degree of regiochemical control to provide a range of electron-
Novel triazines as potent and selective phosphodiesterase 10A inhibitors
Malamas, Michael S.,Ni, Yike,Erdei, James,Fan, Kristi Yi,Parris, Kevin,Marquis, Karen L.,Grauer, Steve,Brennan, Julie,Navarra, Rachel,Graf, Radka,Harrison, Boyd L.,Robichaud, Albert,Pangalos, Menelas N.,Brandon, Nicholas J.,Stange, Hans,Schindler, Rudolf,Lankau, Hans-Joachim,Grunwald, Christian,Langen, Barbara,Egerland, Ute,Hage, Thorsten,Kronbach, Thomas,Hoefgen, Norbert
, p. 5876 - 5884,9 (2020/07/30)
The identification of highly potent and orally active triazines for the inhibition of PDE10A is reported. The new analogs exhibit low-nanomolar potency for PDE10A, demonstrate high selectivity against all other members of the PDE family, and show desired drug-like properties. Employing structure-based drug design approaches, we investigated the selectivity of PDE10A inhibitors against other known PDE isoforms, by methodically exploring the various sub-regions of the PDE10A ligand binding pocket. A systematic assessment of the ADME and pharmacokinetic properties of the newly synthesized compounds has led to the design of drug-like candidates with good brain permeability and desirable drug kinetics (t1/2, bioavailability, clearance). Compound 66 was highly potent for PDE10A (IC50 = 1.4 nM), demonstrated high selectivity (>200×) for the other PDEs, and was efficacious in animal models of psychoses; reversal of MK-801 induced hyperactivity (MED = 0.1 mg/kg) and conditioned avoidance responding (CAR; ID50 = 0.2 mg/kg).
SUBSTITUTED MORPHOLINE AND THIOMORPHOLINE DERIVATIVES
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Page/Page column 45-46, (2008/06/13)
The present invention relates to morpholine and thiomorpholine derivatives of the general formula I or pharmaceutically acceptable salts thereof and their use.
