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An efficient synthesis of tertiary carbinamines using a one-pot, three-component reaction employing TMSCl activation of an intermediate imine salt followed by addition of an organometallic is described. An optimized second generation chiral synthesis of select tertiary carbinamines utilizing the Ellman sulfinamine was subsequently developed on a multi-gram scale and is also described.

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Palladium-catalysed direct arylation of 4- or 2-bromobenzenesulfonic acid derivatives in the presence of a variety of heteroaromatics was found to proceed using 0.1-0.5 mol% palladium acetate as the catalyst. However, both the nature and position of the SO2R substituent on such bromobenzenes has an influence on the reaction rates and yields. The presence of SO2Et or SO2NEt2 at the C2 or C4 position of bromobenzene is tolerated. Good results were also obtained from bromobenzene substituted at C4 by SO2NHPh or SO2OPh. On the other hand, the reactions of bromobenzenes bearing either SO2N(Me)CH2Ph or SO 2OAr at C2 led in some cases to intramolecular reactions instead of the desired intermolecular couplings. Some reactions were performed in cyclopentyl methyl ether, which can be considered as a green solvent.

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Histone acetyltransferases (HATs) are epigenetic drivers that catalyze the acetyl transfer from acetyl-CoA to lysines of both histone and non-histone substrates and thereby induce transcription either by chromatin remodeling or direct transcription factor activation. Histone deacetylases (HDACs) conduct the reverse reaction to counter HAT activity. Physiological processes such as cell cycle progression or apoptosis require a thoroughly balanced equilibrium of the interplay between acetylation and deacetylation processes to maintain or, if required, alter the global acetylome status. Aberrant HAT activity has recently been demonstrated to play a crucial role in the progression of various diseases such as prostate, lung, and colon cancers as well as glioblastomas and neurodegenerative diseases. Recent investigations have aimed for the identification of HAT modulators to further decipher the complexity of acetyl transferase related signaling cascades and discover potential leads for drug design approaches. HDACs have been extensively characterized and targeted by small molecules, including four FDA-approved HDAC inhibitors; in contrast, HATs have not been active targets for therapeutic development. This review will summarize the status of HAT associated diseases and the arsenal of currently known and available HAT inhibitors with respect to their discovery, further improvements, and current applications.

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The invention concerns a coordination complexes with R111 as central metal attached to a heterocyclic ligand in the apical position trans to a sulfoxide and their pharmaceutical compositions useful in antitumor therapy either alone or in combination with platinum complexes.

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The reactions of 3-alkyl- 5a-f, 3-aryl- 5g-m, 3-acylamido- 5n,p, 3-benzamido- 5o and 3-arylamino- 5q -5-alkyl- and -5-aryl-isoxazoles with tetrasulfur tetranitride antimony pentachloride complex (S4N4·SbCl5) in toluene at 90C to reflux temperature give 3-acyl- 6a-c, e, n-q and 3-aroyl-4-substituted-1,2,5-thiadiazoles 6d, f-m in 13 to 61% yields as single isomers. The same reactions of 3,4-dimethyl- 5s, 5v, 4-ethyl-3-methyl-5t -5-alkyl- and/or 5-aryl-isoxazoles under the same conditions give 3-(1-acetyl-1-chloroethyl)- 8a, 3-(1-benzoyl-1-chloropropyl)- 8b, 3-(1-benzoyl-1-chloroethyl)- 8d, or 3-(1-benzoyl-1-chloroethyl)-4-methyl-1,2,5-thiadiazoles 8c, which are a new type of 1,2,5-thiadiazole derivatives. In addition the reactions with 5-aryl-4-bromoisoxazoles (5,w,y,z) having an electron-donating substituent such as methyl, 4-methyl-phenyl, and 4-methoxyphenyl groups at C3 under the same conditions afford 3-aroyl-4-substituted-1,2,5-thiadiazoles 6d, 6j and 6k, whereas the starting isoxazoles are recovered from the reactions with 5-aryl-4-bromoisoxazoles 5x,z? having a phenyl or a 4-chlorophenyl group at C3. A plausible mechanism is proposed for the formation of the products.

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An efficient method was developed for the synthesis of 3,4,5-trisubstituted and 3,5-disubstituted isoxazoles by using continuous-flow microwave-heated microreactors. A study on the separate effects of the temperature, continuous-flow regime, and microwave irradiation showed that the continuous-flow regime had important effects for less reactive diketones, where microwave heating enhanced the reaction, permitting the formation of 5-methyl-3-phenylisoxazole, which was not formed in the absence of microwaves. Georg Thieme Verlag Stuttgart · New York.

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5-Diethylphosphonomethyl-3-methylisoxazole (1) was synthesized by two methods, 1) cycloaddition of nitrile oxide and 2) nucleophilic reaction of the 3,5-dimethylisoxazole anion. This phosphonoisoxazole 1 was alkylated and olefinated by reaction of its anion with alkyl halides and aldehydes, respectively.

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Experimental gas-chromatographic data for 55 aromatic and aliphatic N-containing heterocyclic compounds and C5-C13 n-alkanes are analyzed. The polar constituents of the boiling points (Taupol) were calculated as the difference between the boiling points measured directly and the boiling points calculated from GC data obtained on a nonpolar column. Depending on the number, nature, and position of heteroatoms and alkyl groups in the rings and the structures of the molecules, the Taupol values vary from -11 to +82. The possibility of using Taupol values to estimate the physicochemical properties of compounds is discussed.

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Some ethers, such as cyclopentyl methyl ether and di-n-butyl ether, which can be considered as “greener” solvents than N,N-dimethylacetamide (DMAc) or DMF, can be advantageously employed for the palladium-catalyzed direct arylation of heteroaromatics. In the presence of such ethers and only 0.5-1 mol% of palladium catalysts at 125-150C, the direct 5-arylation of thiazoles, thiophenes, or furans by using aryl bromides as coupling partners proceeds in moderate to high yields.

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We report an expansion of the scope of our initial discovery that 5- keto-substituted 7-tert-butyl-2,3-dihydro-3,3-dimethylbenzofurans (DHDMBFs) are antiinflammatory and analgesic agents. Several other functional groups have been introduced at the 5 position: amides, amidines, ureas, guanidines, amines, heterocycles, heteroaromatics, and heteroaryl ethenyl substituents in the 5 position all provide active compounds. These compounds are dual cyclooxygenase (COX) and 5-lipoxygenase (5-LOX) inhibitors. They inhibit both COX-1 and COX-2 with up to 33-fold selectivity for COX-2.

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