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Visible-Light-Promoted Oxo-Sulfonylation of Ynamides with Sulfonic Acids

A visible-light-promoted oxo-sulfonylation of ynamides with sulfonic acids is reported, giving rise to a collection of functionalized alpha-sulfonylated amides in a straightforward manner. The reaction proceeds sequentially through a cascade of electrophilic addition and photoinduced sulfonyl radical-sustained skeleton rearrangement. The high atom economy, mild reaction conditions, and wide substrate scope comprised the merits of this synthetic transformation.

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Reference£º
Quinuclidine – Wikipedia,
Quinuclidine | C7H475N | ChemSpider

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Recent Advances in the Synthesis of Hydantoins: The State of the Art of a Valuable Scaffold

The review highlights the hydantoin syntheses presented from the point of view of the preparation methods. Novel synthetic routes to various hydantoin structures, the advances brought to the classical methods in the aim of producing more sustainable and environmentally friendly procedures for the preparation of these biomolecules, and a critical comparison of the different synthetic approaches developed in the last twelve years are also described. The review is composed of 95 schemes, 8 figures and 528 references for the last 12 years and includes the description of the hydantoin-based marketed drugs and clinical candidates.

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Quinuclidine – Wikipedia,
Quinuclidine | C7H347N | ChemSpider

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Sulfur containing acridine derivatives in preclinical studies with cancer cell lines

Background: The possible use of acridines as anticancer agents was first considered in the 1920?s. Since then, a large number of acridine drugs have been tested as antitumour agents, including compounds containing sulphur on the acridine chromophore. In this review, we will discuss recent studies which have investigated the anticancer activity of this class of acridine derivatives. Methods: We present the results both of our own decade-long research and also of existing research literature into the anticancer activity of acridine derivatives containing sulphur. The evidence of specific tumor-cell killing properties displayed by these compounds suggest the potential of using such molecules as anticancer therapeutics. Results: During the last decade, a number of acridine analogs have been developed by modifying the position and the nature of the substituent on the acridine core. In this paper, we published results on the anticancer activity of acridine derivatives containing sulfur (acridine thioureas, acridine thiazolidine/thiazoidinone, and acridine thiosemicarbazones/ thiosemicarbazides). In cancer chemotherapy, the mechanism of the drugs is complex, although the study of the anticancer activity of acridines has yielded exciting results. Conclusion: In this review we have summarized recent literature on the anticancer activity of acridine derivatives containing sulfur. A considerable amount of published data suggests that these compounds exhibit promising anticancer activity against selected cancer cell lines. The obtained results can be helpful in the development of new pharmaceutical agents.

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Quinuclidine – Wikipedia,
Quinuclidine | C7H404N | ChemSpider

Extracurricular laboratory:new discovery of Thiazolidin-2-one

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Synthesis and characterization of new Thiazolidinones which are used to decrease blood glucose level

This study is concerned with the synthesis and characterization derivatives of Thiaszolidinones 3a-e. These compounds were synthesized by reacting of thioglycolic acid with the appropriate Schiff base 2a-e, in the presence of dry benzene in moderate yields (69-73%). The structures of Thiaszolidinone were established on the basis of the spectral data like FT-IR, 1H-NMR, 13C-NMR, Gcosy and Mass.

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Quinuclidine – Wikipedia,
Quinuclidine | C7H432N | ChemSpider

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HETEROCYCLIC MODULATORS OF NUCLEAR RECEPTORS

Compounds, compositions and methods for modulating the activity of nuclear receptors are provided. In particular, heterocyclic compounds are provided for modulating the activity of farnesoid X receptor (FXR), liver X receptor (LXR) and/or orphan nuclear receptors. In certain embodiments, the compounds are thiazolidinone derivatives.

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Quinuclidine – Wikipedia,
Quinuclidine | C7H196N | ChemSpider

More research is needed about Thiazolidin-2-one

We¡¯ll also look at important developments in the pharmaceutical industry because understanding organic chemistry is important in understanding health, medicine, the role of 2682-49-7, and how the biochemistry of the body works.category: thiazolidine

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Discovery of N-Aroyl Diketone/Triketone Derivatives as Novel 4-Hydroxyphenylpyruvate Dioxygenase Inhibiting-Based Herbicides

4-Hydroxyphenylpyruvate dioxygenase (HPPD, EC 1.13.11.27) is an important target site for discovering new bleaching herbicides. To explore novel HPPD inhibitors with excellent herbicidal activity, a series of novel N-aroyl diketone/triketone derivatives were rationally designed by splicing active groups and bioisosterism. Bioassays revealed that most of these derivatives displayed preferable herbicidal activity against Echinochloa crus-galli (EC) at 0.045 mmol/m2 and Abutilon juncea (AJ) at 0.090 mmol/m2. In particular, compound I-f was more potent compared to the commercialized compound mesotrione. Molecular docking indicated that the corresponding active molecules of target compounds and mesotrione shared similar interplay with surrounding residues, which led to a perfect interaction with the active site of Arabidopsis thaliana HPPD.

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Reference£º
Quinuclidine – Wikipedia,
Quinuclidine | C7H285N | ChemSpider

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One-step synthesis of 2-thiazolidinone

An efficient and direct access to thiazolidinone is developed. 2-Thiazolidinone is synthesized by urea and 2-Aminoethylmercaptan hydrochloride and this one-step process proceeds with good yields, under mild conditions. The structure of the compound was confirmed by IR, 1H NMR, MS and the product purity was 98 % by HPLC.

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Quinuclidine – Wikipedia,
Quinuclidine | C7H450N | ChemSpider

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Synthesis and antimicrobial schreening of new 4,5,6,7-tatra hydro benzo thiophene derivatives

A group of derivatives for compounds 2-Amino-3-carboxy-4,5,6,7-tetra hydrobenz -othiophene bearing different heterocyclic moieties such as Schiff bases. B-Lactum, 4-thiazolidinone.1,3-oxazepan. The newly synthesized derivatives have been supported by spectral data FT-IR, H1-NMR. All the synthesized compounds were screened for their antimicrobial activities against gram-positive and gram-negative bacteria as reference.

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Reference£º
Quinuclidine – Wikipedia,
Quinuclidine | C7H218N | ChemSpider

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PCET-Enabled Olefin Hydroamidation Reactions with N-Alkyl Amides

Olefin aminations are important synthetic technologies for the construction of aliphatic C-N bonds. Here we report a catalytic protocol for olefin hydroamidation that proceeds through transient amidyl radical intermediates that are formed via proton-coupled electron transfer (PCET) activation of the strong N-H bonds in N-alkyl amides by an excited-state iridium photocatalyst and a dialkyl phosphate base. This method exhibits a broad substrate scope, high functional group tolerance, and amenability to use in cascade polycyclization reactions. The feasibility of this PCET protocol in enabling the intermolecular anti-Markovnikov hydroamidation reactions of unactivated olefins is also demonstrated.

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Reference£º
Quinuclidine – Wikipedia,
Quinuclidine | C7H402N | ChemSpider

Discovery of Thiazolidin-2-one

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N-(4-nitrophenyl)-2-{2-[3-(4-chlorophenyl)-5-[4- (propan-2-yl)phenyl]-4,5-dihydro-1h-pyrazol-1-yl]- 4-oxo-4,5-dihydro-1,3-thiazol-5-yl}acetamide

In the present investigation, the synthesis and spectroscopic characterization of N-(4-nitrophenyl)-2-{2-[3-(4-chlorophenyl)-5-[4-(propan-2-yl)phenyl]-4,5-dihydro-1H-pyrazol-1-yl]-4- oxo-4,5-dihydro-1,3-thiazol-5-yl}acetamide (2) is performed. The title compound (2) is synthesized by the reaction of 3-(4-chlorophenyl)-5-[4-(propan-2-yl)phenyl]-4,5-dihydro-1H-pyrazole-1- carbothioamide (1) with N-(4-nitrophenyl)maleimide. The cyclization of title compound is evidenced by FT-IR, NMR, and LCMS data.

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Reference£º
Quinuclidine – Wikipedia,
Quinuclidine | C7H438N | ChemSpider