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BI-FUNCTIONAL COMPLEXES AND METHODS FOR MAKING AND USING SUCH COMPLEXES

The present invention is directed to a method for the synthesis of a bi-functional complex comprising a molecule part and an identifier oligonucleotide part identifying the molecule part. A part of the synthesis method according to the present invention is preferably conducted in one or more organic solvents when a nascent bi-functional complex comprising an optionally protected tag or oligonucleotide identifier is linked to a solid support, and another part of the synthesis method is preferably conducted under conditions suitable for enzymatic addition of an oligonucleotide tag to a nascent bi-functional complex in solution.

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Design, synthesis and evaluation of new marine alkaloid-derived pentacyclic structures with anti-tumoral potency

This work describes the synthesis and biological evaluation of a new heterocyclic hybrid derived from the ellipticine and the marine alkaloid makaluvamine A. Pyridoquinoxalinedione 12 was obtained in seven steps with 6.5% overall yield. 12 and its intermediates 1-11 were evaluated for their in vitro cytotoxic activity against different cancer cell lines and tested for their inhibitory activity against the human DNA topoisomerase II. The analysis by electrophoresis shows that the pentacycle 12 inhibits the topoisomerase II like doxorubicine at 100 muM. Compound 9 was found to have an interesting profile, having a cytotoxicity of 15, 15, 15 and 10 &M against Caco-2, HCT-116, Pc-3 and NCI cell lines respectively, without any noticeable toxicity against human fibroblast.

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Discovery of a tetracyclic quinoxaline derivative as a potent and orally active multifunctional drug candidate for the treatment of neuropsychiatric and neurological disorders

We report the synthesis and structure-activity relationships of a class of tetracyclic butyrophenones that exhibit potent binding affinities to serotonin 5-HT2A and dopamine D2 receptors. This work has led to the discovery of 4-((6bR,10aS)-3-methyl-2,3,6b,9,10,10a-hexahydro-1H,7H- pyrido[3?,4?:4,5]pyrrolo[1,2,3-de]quinoxalin-8-yl) -1-(4-fluorophenyl)-butan-1-one 4-methylbenzenesulfonate (ITI-007), which is a potent 5-HT2A antagonist, postsynaptic D2 antagonist, and inhibitor of serotonin transporter. This multifunctional drug candidate is orally bioavailable and exhibits good antipsychotic efficacy in vivo. Currently, this investigational new drug is under clinical development for the treatment of neuropsychiatric and neurological disorders.

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Electrochemical reduction of quinoxalino<2,3-b>quinoxaline: a revised mechanism

The electrochemical reduction of fluoflavine 2 gives compound 9 to which we had previously assigned a hexahydro-quinoxalino<2,3-b>quinoxaline structure.A crystallographic study of a diacetylated derivative of 9 shows that 9 is in fact 2-(o-aminoanilinomethyl)benzimidazole.This result permits us to propose a detailed reduction mechanism for 2 and its diacetyl derivative 25.

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Synthesis and aldose reductase inhibitory activity of N-1,N-4-disubstituted 3,4-dihydro-2(1H)-quinoxalinone derivatives

Synthetic routes have been developed for the preparation of 4-acylated, 4-benzenesulfonylated, and 4-methylated 3,4-dihydro-2(1H)-quinoxalinone-1-acetic acids. One example of the corresponding propionic acid has also been made. These compounds have been evaluated for their ability to inhibit bovine lens aldose reductase in vitro. Some members from this series also show weak activity in vivo, inhibiting sorbitol formation in sciatic nerves of streptozotocin-diabetic rats.

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1-PROPANOL AND 1-PROPYLAMINE DERIVATIVES AND THEIR USE AS GLUCOCORTICOID LIGANDS

Compounds of Formula (I) wherein R1, R2 R3, R4, R5, R6, and X are as defiend herein for Formula (IA) and Formula (IB), or a tautomer, prodrug, solvate, or salt thereof; pharmaceutical compositions containing such compounds, and methods of modulating the glucocoricoid receptor function and methods of treating disease-states or conditions mediated by the glucocorticoid receptor function or characterized by inflammatory, allergic, or proliferative processes in a patient using these compounds.

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Development and therapeutic impact of HDAC6-selective inhibitors

Histone deacetylases (HDAC) play a key role in regulating gene expression by deacetylating histones. Some HDAC isoforms can also modulate the function of nonhistone proteins implicated in regulatory processes, and therefore HDACs are recognized as useful targets for therapeutic purposes. HDAC inhibitors have generated substantial interest as antitumor agents, because they induce various cellular effects, including apoptosis, cell cycle arrest and inhibition of angiogenesis. The nature of cellular response likely depends on the biological context and on the pattern of HDAC isoform inhibition. Various HDAC inhibitors belonging to different structural classes have been developed. Many inhibitors are characterized by a pan-HDAC inhibitory profile. The potential advantages of isoform-selective inhibitors over pan-HDAC inhibitors in terms of efficacy or toxicity remain to be defined. The emerging interest for HDAC6-selective inhibitors is related to the modulation of acetylation of nonhistone regulatory proteins implicated in cancer-relevant processes, including cell migration, metastasis, angiogenesis and stress-response pathways. This review is focused on the recent development of HDAC inhibitors, with particular reference to HDAC6-selective inhibitors, and the efforts and perspectives in optimization of their therapeutic applications.

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Imidazo[1,5-A]quinoxalines

An invention relating to Imidazo[1,5-a]quinoxalines (I) STR1 which do not contain an endocyclic carbonyl group and which are useful as anxiolytic and sedative/hypnotic agents.

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A Method for Identifying and Developing Functional Group Tolerant Catalytic Reactions: Application to the Buchwald-Hartwig Amination

Transition-metal catalysis has revolutionized organic synthesis, but difficulties can often be encountered when applied to highly functionalized molecules, such as pharmaceuticals and their precursors. This results in discovery collections that are enriched in substances possessing less desirable properties (high lipophilicity, low polar surface area). Masking groups are often employed to circumvent this problem, which is in opposition to the inherent ideality of these methods for green chemistry and atom economy. A general screening methodology, related to robustness screening described by Glorius et al., builds a broad understanding of the impact of individual functional groups on the success of a transformation under various conditions and provides a simple framework for identifying new conditions that tolerate challenging functional groups. Application of this approach to profile the conditions for the Buchwald-Hartwig amination and rapidly identify bespoke conditions for challenging substrate classes is described.

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Reaction of 4-substituted 1,2-phenylenediamine with chloroacetic acid and alpha, beta-unsaturated carboxylic acids: Determination of the structure of the isomers formed using long-range carbon-proton coupling

The reaction between 4-chloro-1,2-phenylenediamine with sodium salt of chloroacetic acid yields 8-chlorotetrahydroquinoxalin-2-one, o-Phenylenediamines substituted at position-4 yield a single benzodiazepinone on reaction with alpha,beta-unsaturated aliphatic carboxylic acids.The structures of the products formed are established from 13C NMR of the products and their acyl derivatives, sometimes, using long range carbon-proton couplings.

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