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A series of novel amide-based small molecule inhibitors of inosine monophosphate dehydrogenase (IMPDH) was explored. The synthesis and the structure-activity relationships (SARs) derived from in vitro studies are described.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H2017O – PubChem

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High throughput screening of the corporate compound collection led to the discovery of a novel series of substituted aminoalkoxybenzyl pyrrolidines as human urotensin-II receptor antagonists. The synthesis, initial structure-activity relationships, and optimization of the initial hit that led to the identification of a truncated sub-series, represented by SB-436811 (1a), are described.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H1834O – PubChem

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Poly(ethylene glycol) (PEG) supported dichlorophosphate was efficiently used as a recoverable new dehydration reagent for rapid synthesis of 2-amino-5-substituted-1,3,4-thiadiazoles under microwave irradiation and solvent-free condition by reactions of thiosemicarbazide with aliphatic acids, benzoic acid, aryloxyacetic acids or furan-2-carboxylic acids.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H1878O – PubChem

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Compound having the formula (I),wherein A, B and D are O or S; R1a and R1b are H, C1-4 alkyl, C2-4alkenyl; X is-NR2-,-S-,-S(=O)-, or -S(O)2-; G1, G2 and G3 are together or separately selected from hetero, carbonyl, alkylene, and alkenylene groups and G4 is optionally substituted methylene; R2 is Q-Ar, wherein Q is a linker and Ar is substituted or substituted aryl or heteroaryl; and z is 0 or 1, are useful as inhibitors of MMPs, particularly MMP-13, aggrecanase, and/or TACE.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H1683O – PubChem

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Non-macrocyclic heteroaryls represent a valuable class of ligands for nucleic acid recognition. In this regard, non-macrocyclic pyridyl polyoxazoles and polyoxadiazoles were recently identified as selective G-quadruplex stabilizing compounds with high cytotoxicity and promising anticancer activity. Herein, we describe the synthesis of a new family of heteroaryls containing oxadiazole and pyridine moieties targeting DNA G-quadruplexes. To perform a structure?activity analysis identifying determinants of activity and selectivity, we followed a convergent synthetic pathway to modulate the nature and number of the heterocycles (1,3-oxazole vs. 1,2,4-oxadiazole and pyridine vs. benzene). Each ligand was evaluated towards secondary nucleic acid structures, which have been chosen as a prototype to mimic cancer-associated G-quadruplex structures (e.g., the human telomeric sequence, c-myc and c-kit promoters). Interestingly, heptapyridyl-oxadiazole compounds showed preferential binding towards the telomeric sequence (22AG) in competitive conditions vs. duplex DNA. In addition, G4-FID assays suggest a different binding mode from the classical stacking on the external G-quartet. Additionally, CD titrations in the presence of the two most promising compounds for affinity, TOxAzaPy and TOxAzaPhen, display a structural transition of 22AG in K-rich buffer. This investigation suggests that the pyridyl-oxadiazole motif is a promising recognition element for G-quadruplexes, combining seven heteroaryls in a single binding unit.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H1786O – PubChem

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NMR-based screening of a customized fragment library identified 16 small-molecule hits that bind weakly (KD ? 100 muM to 10 mM) to substrate binding sites of the NS4A-bound NS3 protease of the hepatitis C virus (HCV). Analogues for five classes of NMR hits were evaluated by a combination of NMR and biochemical data yielding SAR and, in most cases, optimized hits with improved potencies (KD ? KI ? 40 muM to mM). NMR chemical shift perturbation data were used to establish the binding location and orientation of the active site directed scaffolds in these five analogue series. Two of these scaffolds, which bind the enzyme at the proximal S1-S3 and S2? substrate binding sites, were linked together producing competitive inhibitors of the HCV NS3 protease with potencies in the micromolar range. This example illustrates that the low molecular weight scaffolds discovered from structure-based NMR screening can be optimized with focused structure-guided chemistry to produce potent nonpeptidic small-molecule inhibitors of the HCV NS3 protease.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H2026O – PubChem

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A Pd/Ag bimetallic system has been developed for the decarboxylative allylation of ortho-nitrobenzoic esters in an intramolecular fashion. In contrast to the typical sp2-sp3 cross-coupling approach which requires air and moisture sensitive preformed organometallic reagents, we provide an alternative route to the synthesis of ortho-allyl nitroarenes from the corresponding ortho-nitrobenzoic acid derivatives. The reaction proceeds through a mechanistically distinct decarboxylative metalation pathway. A cooperative reactivity of palladium and silver is crucial for the reaction outcome.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H1821O – PubChem

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The thrombin receptor PAR-1 is activated by alpha-thrombin to stimulate cells, including platelets, through the tethered-ligand sequence SFLLRN. We have discovered a novel series of heterocycle-peptide hybrids comprised of a tripeptide segment, such as Cha-Arg-Phe, and an N-terminal heterocyclic group, many of which behave as full PAR-1 agonists. Certain compounds with an aminotriazole group, such as 4 and 16, are nearly as potent as SFLLRN-NH2 in inducing platelet aggregation. Also, some arylethenoyl ‘N-capped’ compounds, such as 52 and 57, exhibit mixed PAR-1 agonist-antagonist activity.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H1902O – PubChem

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The invention discloses a compound, pharmaceutical composition and its use. The compounds of this invention have the formula (I) structure: Wherein all substituents are as defined herein. The invention pharmaceutical composition comprises a therapeutically effective amount of formula (I) compound and a pharmaceutically acceptable of the first layer, the medical composition of the present invention can be used for treating individual used in the manufacture of the proprotein convertase subtilisin kexin 9-related diseases. (by machine translation)

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H1642O – PubChem

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The present invention relates to compounds of formula (I) including any stereochemically isomeric form thereof, or pharmaceutically acceptable salts thereof, for the treatment of tuberculosis.

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Reference:
Benzofuran – Wikipedia,
Benzofuran | C8H1707O – PubChem