High-speed microwave assisted synthesis of SEA0400—a selective inhibitor of the Na+/Ca2+ exchanger
暂无分享,去创建一个
[1] K. Sipido,et al. Alternative strategies in arrhythmia therapy: evaluation of Na/Ca exchange as an anti-arrhythmic target. , 2012, Pharmacology & therapeutics.
[2] J. Borah,et al. Expedited Baeyer–Villiger oxidation of steroidal ketones by microwave irradiation , 2011, Steroids.
[3] É. Colombo,et al. Reissert Indole Synthesis Using Continuous-Flow Hydrogenation , 2011 .
[4] C. Kappe,et al. Microwave-assisted and continuous flow multistep synthesis of 4-(pyrazol-1-yl)carboxanilides. , 2011, The Journal of organic chemistry.
[5] C. Kappe,et al. Heterogeneous catalytic hydrogenation reactions in continuous-flow reactors. , 2011, ChemSusChem.
[6] C. Kappe,et al. High‐Speed Microwave‐Assisted Synthesis of the Trifluoromethylpyrazol‐Derived Canonical Transient Receptor Potential (TRPC) Channel Inhibitor Pyr3 , 2009, ChemMedChem.
[7] A. Varró,et al. Potential therapeutic effects of Na+/Ca2+ exchanger inhibition in cardiac diseases. , 2009, Current medicinal chemistry.
[8] Richard J. Fitzmaurice,et al. Microwave enhanced synthesis , 2009 .
[9] J. Quinn,et al. 1,4-Cyclohexadiene with Pd/C as a rapid, safe transfer hydrogenation system with microwave heating , 2008 .
[10] N. Nagy,et al. Na+/Ca2+ exchanger inhibition exerts a positive inotropic effect in the rat heart, but fails to influence the contractility of the rabbit heart , 2008, British journal of pharmacology.
[11] David J Weber,et al. Getting a grip on calcium regulation , 2007, Proceedings of the National Academy of Sciences.
[12] G. Vanier. Simple and Efficient Microwave-Assisted Hydrogenation Reactions at Moderate Temperature and Pressure , 2007 .
[13] C. Oliver Kappe,et al. The impact of microwave synthesis on drug discovery , 2006, Nature Reviews Drug Discovery.
[14] Sarah Schmitz,et al. Microwave-assisted polymer chemistry: Heck-reaction, transesterification, Baeyer-Villiger oxidation, oxazoline polymerization, acrylamides, and porous materials , 2006 .
[15] L. Virág,et al. Effects of SEA0400 and KB-R7943 on Na+/Ca2+ exchange current and L-type Ca2+ current in canine ventricular cardiomyocytes , 2005, Naunyn-Schmiedeberg's Archives of Pharmacology.
[16] Iyuki Namekata,et al. Cardioprotection without cardiosuppression by SEA0400, a novel inhibitor of Na+-Ca2+ exchanger, during ischemia and reperfusion in guinea-pig myocardium. , 2005, Life sciences.
[17] R. Sheldon,et al. The Baeyer-Villiger reaction: new developments toward greener procedures. , 2004, Chemical reviews.
[18] T. Iwamoto,et al. Development and application of Na+/Ca2+ exchange inhibitors , 2004, Molecular and Cellular Biochemistry.
[19] I. Imanaga,et al. Molecular Determinants of Na+/Ca2+ Exchange (NCX1) Inhibition by SEA0400* , 2004, Journal of Biological Chemistry.
[20] Yoshio Tanaka,et al. Effect of SEA0400, a novel inhibitor of sodium‐calcium exchanger, on myocardial ionic currents , 2002, British journal of pharmacology.
[21] B. Feringa,et al. A highly enantioselective intramolecular Heck reaction with a monodentate ligand. , 2002, Journal of the American Chemical Society.
[22] T. Suzuki,et al. SEA0400, a novel and selective inhibitor of the Na+-Ca2+ exchanger, attenuates reperfusion injury in the in vitro and in vivo cerebral ischemic models. , 2001, The Journal of pharmacology and experimental therapeutics.