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Topical Intestinal Aminoimidazole Agonists of G-Protein-Coupled Bile Acid Receptor 1 Promote Glucagon Like Peptide-1 Secretion and Improve Glucose Tolerance

The role of the G-protein-coupled bile acid receptor TGR5 in various organs, tissues, and cell types, specifically in intestinal endocrine L-cells and brown adipose tissue, has made it a promising therapeutical target in several diseases, especially type-2 diabetes and metabolic syndrome. However, recent studies have shown deleterious on-target effects of systemic TGR5 agonists. To avoid these systemic effects while stimulating glucagon-like peptide-1 (GLP-1) secreting enteroendocrine L-cells, we have designed TGR5 agonists with low intestinal permeability. In this article, we describe their synthesis, characterization, and biological evaluation. Among them, compound 24 is a potent GLP-1 secretagogue, has low effect on gallbladder volume, and improves glucose homeostasis in a preclinical murine model of diet-induced obesity and insulin resistance, making the proof of concept of the potential of topical intestinal TGR5 agonists as therapeutic agents in type-2 diabetes.

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AMIDINES. PART IX. INFLUENCE OF SUBSTITUTION AT IMINO AND AMINO NITROGEN ATOMS ON THE BASICITY OF N,N’-DIPHENYLBENZAMIDINES

A series of 15 unreported N1-metylo-N1,N2-diphenylbenzamidines containing two different substituents at phenyl rings have been synthesized and their pKa values in 99.8percent ethanol were determined.It was found that the basicities of these amidines obeyed the diparameter Hammett’s equation where the parameters are ? constants of the two substituents.The influence of substitution at either of nitrogen atoms on the basicity of amidine group is compared with formerly studied formamidines is discussed.

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Light-induced cleavage of model phenylalanine conjugates based on coumarins and quinolones

In order to evaluate the application of quinolone as a new photocleavable protecting group, in comparison with coumarin, a series of model phenylalanine conjugates were prepared by reaction with chloromethylated O and N heterocycles. The photophysical properties of the resulting ester conjugates were evaluated as well as the photosensitivity under irradiation at 250, 300, 350, and 419 nm. The results obtained showed that the quinolone conjugates were readily photolysed, with complete release of the amino acid in short irradiation times and could be considered a new addition to the family of photocleavable protecting groups for the carboxylic acid function of amino acids. Springer-Verlag 2010.

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A facile and efficient process for the preparation of various tertiary aminobenzenes and carbazole derivatives via photoinduced cross-coupling of amines with 1,2-diiodobenzene is reported. Mechanistic investigations indicate that the transformation proceeds via nucleo-philic addition of an amine to the benzyne intermediate accompanied with a proton transfer process, followed by an oxidative cyclization of the generated diphenylamine to furnish the corresponding carbazole products.

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Abstract A series of twenty seven oxa/azaspiro[4,5]trienone derivatives were synthesized and their anticancer properties have been explored. GI50 values of all these compounds were evaluated against four types of human cancer cell lines, i.e. MCF-7 (breast), DU-145 (prostate), A549 (lung) and HepG2 (liver). Five compounds of the series exhibited good anticancer potential against MCF-7 with GI50 values less than 2 muM. Detailed biological studies of the two representative compounds 9b and 9e revealed that they arrest cell cycle in G0/G1 phase and induce mitochondria mediated apoptosis, that was further confirmed by measurement of mitochondrial membrane potential (DeltaPsim), intracellular ROS generation, caspase 9 activity and Annexin V-FITC assay. Furthermore, western blot analysis suggested that these compounds up-regulate the levels of p53, p21, p27 and Bax, and down-regulate the level of Bcl-2 confirming the apoptosis inducing properties.

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The invention discloses a amine and the imine nitrogen methylation of the preparation method and application, step is: A, shu Lunke tube in adding activated carbon to a platinum catalyst, after vacuum exchange argon, adding solvent; B, under protection of argon, respectively adding benzene silicon hydride, initial raw materials and formic acid; C, the whole reaction system under certain temperature to stir and react; D, after completion of the reaction, in the system by adding ethyl acetate dilution, the sodium hydroxide aqueous solution quenching reaction, ethyl acetate extraction, after separation of the organic phase, drying, filtering, rotary evaporation to remove the solvent. The residue through different proportion of ethyl acetate/petroleum ether mixed solvent column chromatography, to obtain the target product. The method in the isotopically labeled drug application in the synthesis of, the catalyst amount is extremely low, the cost is very low, is suitable for mass production, can be suitable for different substituent of the amine and the imine, suitable for natural products in the structure of the nitrogen atom of the convenient to realize methylation, preparing drug molecules. (by machine translation)

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A new and versatile method for the preparation of the isonixine analogous, N-aryl-1,2-dihydro-2-oxo-3-pyridinecarboxamides and N-aryl-N-methyl-1,2-dihydro-2-oxo-3-pyridinecarboxamides is described via the selective chlorination of 2-hydroxynicotinic acid.In order to prepare these new compounds, the chemistry of the methyl-blocked forms of each tautomer is discussed.

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Vinylsilanes undergo intermolecular alkene hydroaminoalkylation with secondary amines in the presence of a titanium mono(aminopyridinato) catalyst to give the branched hydroaminoalkylation products with high regioselectivity. Corresponding reactions of a suitable (2-bromophenyl)vinylsilane combined with a subsequent intramolecular Buchwald-Hartwig amination result in the development of an elegant one-pot procedure for the synthesis of 1,4-benzoazasilines.

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SUBSTITUTED PYRIDINES AND PYRIMIDINES

Provided is a compound of formula (I), and/or salt thereof, wherein the radicals have various meanings, a process for producing cardiomyocyte-like cells from mammalian cells by culturing mammalian cells in the presence of the compound of formula (I), the pharmaceutical use of compounds of formula (I) for producing cardiomyocyte-like cells from omnipotent, pluripotent, or lineage committed mammalian cells, and the use of thus produced cardiomyocyte-like cells for treating disorders associated with impaired function of the heart.

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N-ALKYL-N-ARYL-THIENOPYRIMIDIN-4-AMINES AND ANALOGS AS ACTIVATORS OF CASPASES AND INDUCERS OF APOPTOSIS AND THE USE THEREOF

Disclosed are N-alkyl-N-aryl-thienopyrimidin-4-amines and analogs thereof, represented by the Formulae I-II: wherein Ar, R1 -R4 and R10 are defined herein. The present invention relates to the discovery that compounds having Formulae I- II are activators of caspases and inducers of apoptosis. Therefore, the activators of caspases and inducers of apoptosis of this invention may be used to induce cell death in a variety of clinical conditions in which uncontrolled growth and spread of abnormal cells occurs.

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