Ling, Xing’s team published research in Journal of Organic Chemistry in 2022-02-18 | 1003-32-3

Journal of Organic Chemistrypublished new progress about Acids Role: RCT (Reactant), RACT (Reactant or Reagent). 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, Application In Synthesis of 1003-32-3.

Ling, Xing; Lu, Weiwei; Miao, Lin; Marcaurelle, Lisa A.; Wang, Xuan; Ding, Yun; Lu, Xiaojie published the artcile< Divergent On-DNA Transformations from DNA-Linked Piperidones>, Application In Synthesis of 1003-32-3, the main research area is DNA linked heterocycle preparation.

A group of highly efficient and divergent transformations for constructing multiple DNA-linked chemotypes based on piperidones e.g., I core is successfully developed. The first procedure for the synthesis of DNA-conjugated piperidines II (R = H, Bn, (4-cyanophenyl)methyl, (3,4,5-trifluorophenyl)methyl, etc.; R1 = 2,2-dimethoxyethyl, Bn, 3-cyclohexylpropanoyl, etc.) intermediate under basic conditions was reported. Subsequently, this substructure was subjected to addnl. reactions to generate several privileged scaffolds, including 4-aminopiperidines II, fused [1,2,4]triazolo[1,5-a]pyrimidines III (R2 = methanesulfonyl, (3-fluorophenyl)methyl, benzenesulfonamido), and a quinoline derivative e.g., IV. These transformations paved the way for constructing focused scaffold-based DNA-encoded libraries with druglike properties.

Journal of Organic Chemistrypublished new progress about Acids Role: RCT (Reactant), RACT (Reactant or Reagent). 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, Application In Synthesis of 1003-32-3.

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica

Hsieh, Sheng-Ying’s team published research in ACS Central Science in 2017-01-25 | 1003-32-3

ACS Central Sciencepublished new progress about Aliphatic aldehydes Role: RCT (Reactant), RACT (Reactant or Reagent). 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, Application In Synthesis of 1003-32-3.

Hsieh, Sheng-Ying; Bode, Jeffrey W. published the artcile< Lewis Acid Induced Toggle from Ir(II) to Ir(IV) Pathways in Photocatalytic Reactions: Synthesis of Thiomorpholines and Thiazepanes from Aldehydes and SLAP Reagents>, Application In Synthesis of 1003-32-3, the main research area is Lewis acid iridium thiomorpholine thiazepane photoredox catalyst.

The authors report that the inclusion of Lewis acids in photocatalytic reactions of organosilanes allows access to a distinct reaction pathway featuring an Ir(III)*/Ir(IV) couple instead of the previously employed Ir(III)*/Ir(II) pathway, enabling the transformation of aromatic and aliphatic aldehydes to thiomorpholines and thiazepanes. The role of the Lewis acid in accepting an electron-either directly or via coordination to an imine-can be extended to other classes of photocatalysts and transformations, including oxidative cyclizations. The combination of light induced reactions and Lewis acids therefore promises access to new pathways and transformations that are not viable using the photocatalysts alone.

ACS Central Sciencepublished new progress about Aliphatic aldehydes Role: RCT (Reactant), RACT (Reactant or Reagent). 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, Application In Synthesis of 1003-32-3.

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica

Zhu, Ziqi’s team published research in Angewandte Chemie, International Edition in 2022-05-09 | 1003-32-3

Angewandte Chemie, International Editionpublished new progress about Addition reaction catalysts, stereoselective (intermol.). 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, COA of Formula: C4H3NOS.

Zhu, Ziqi; Xiao, Jieshuai; Li, Mingjie; Shi, Zhuangzhi published the artcile< Nickel-Catalyzed Intermolecular Asymmetric Addition of Aryl Iodides across Aldehydes>, COA of Formula: C4H3NOS, the main research area is diarylmethanol preparation enantioselective; aryl iodide asym addition aldehyde nickel catalyst; Asymmetric Addition; Chiral Alcohols; Enantioselectivity; Nickel Catalysis.

Enantioenriched alcs. comprise much of the framework of organic mols. Here, the authors first report that chiral nickel complexes can catalyze the intermol. enantioselective addition of aryl iodides across aldehydes to provide diverse optically active secondary alcs. using zinc metal as the reducing agent. This method shows a broad substrate scope under mild reaction conditions and precludes the traditional strategy through the pre-generation of organometallic reagents. Mechanistic studies indicate that an in situ formed arylnickel, instead of an arylzinc, adds efficiently to the aldehydes, forming a new C-C bond and a chiral nickel alkoxide that may be turned over by zinc powder.

Angewandte Chemie, International Editionpublished new progress about Addition reaction catalysts, stereoselective (intermol.). 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, COA of Formula: C4H3NOS.

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica

Melzer, Benedikt C’s team published research in Beilstein Journal of Organic Chemistry in 2019 | 1003-32-3

Beilstein Journal of Organic Chemistrypublished new progress about Alkaloids Role: RCT (Reactant), SPN (Synthetic Preparation), RACT (Reactant or Reagent), PREP (Preparation). 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, Computed Properties of 1003-32-3.

Melzer, Benedikt C.; Plodek, Alois; Bracher, Franz published the artcile< Functionalization of 4-bromobenzo[c][2,7]naphthyridine via regioselective direct ring metalation. A novel approach to analogs of pyridoacridine alkaloids>, Computed Properties of 1003-32-3, the main research area is pyridoacridine alkaloid analog preparation regioselective; bromobenzo naphthyridine electrophile ring metalation cyclization; alkaloids; cyclization; metalation; naphthyridine; pyridoacridine.

Readily available 4-bromobenzo[c][2,7]naphthyridine undergoes regioselective direct ring metalation at C-5 with TMPMgCl·LiCl at -40°. Quenching with various electrophiles gives a broad range of 5-substituted products, which are building blocks for the synthesis of heterocyclic natural products and analogs thereof. In combination with a Parham-type cyclization a novel approach to pyrido[4,3,2-mn]acridones has been worked out.

Beilstein Journal of Organic Chemistrypublished new progress about Alkaloids Role: RCT (Reactant), SPN (Synthetic Preparation), RACT (Reactant or Reagent), PREP (Preparation). 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, Computed Properties of 1003-32-3.

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica

Yin, Zhiping’s team published research in Journal of Catalysis in 2019-04-30 | 1003-32-3

Journal of Catalysispublished new progress about Acylation (alkyl-). 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, HPLC of Formula: 1003-32-3.

Yin, Zhiping; Zhang, Zhuan; Soule, Jean-Francois; Dixneuf, Pierre H.; Wu, Xiao-Feng published the artcile< Iron-catalyzed carbonylative alkyl-acylation of heteroarenes>, HPLC of Formula: 1003-32-3, the main research area is alkyl heteroaryl ketone preparation chemoselective; heteroarene carbon monoxide carbonylative alkyl acylation iron triflate.

Herein, an efficient carbonylative protocol for the introduction of an alkyl-acyl group into heteroarenes from cyclobutanone oximes is presented. In the presence of Fe(OTf)2 catalyst, proceeds via intermol. alkyl-acylation of different heteroarenes. A broad range of alkyl heteroaryl ketones are synthesized with excellent functional group tolerance with good chemoselectivity.

Journal of Catalysispublished new progress about Acylation (alkyl-). 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, HPLC of Formula: 1003-32-3.

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica

Lerner, Claude G’s team published research in Chemical Biology & Drug Design in 2007-06-30 | 1003-32-3

Chemical Biology & Drug Designpublished new progress about Antibacterial agents. 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, Synthetic Route of 1003-32-3.

Lerner, Claude G.; Hajduk, Philip J.; Wagner, Rolf; Wagenaar, Frank L.; Woodall, Charlotte; Gu, Yu-Gui; Searle, Xenia B.; Florjancic, Alan S.; Zhang, Tianyuan; Clark, Richard F.; Cooper, Curt S.; Mack, Jamey C.; Yu, Liping; Cai, Mengli; Betz, Steven F.; Chovan, Linda E.; McCall, J. Owen; Black-Schaefer, Candace L.; Kakavas, Stephan J.; Schurdak, Mark E.; Comess, Kenneth M.; Walter, Karl A.; Edalji, Rohinton; Dorwin, Sarah A.; Smith, Richard A.; Hebert, Eric J.; Harlan, John E.; Metzger, Randy E.; Merta, Philip J.; Baranowski, John L.; Coen, Michael L.; Thornewell, Susan J.; Shivakumar, Annapur G.; Saiki, Anne Y.; Soni, Niru; Bui, Mai; Balli, Darlene J.; Sanders, William J.; Nilius, Angela M.; Holzman, Thomas F.; Fesik, Stephen W.; Beutel, Bruce A. published the artcile< From bacterial genomes to novel antibacterial agents: discovery, characterization, and antibacterial activity of compounds that bind to HI0065 (YjeE) from Haemophilus influenzae>, Synthetic Route of 1003-32-3, the main research area is antibacterial biphenyl preparation structure activity HI0065 ATP binding protein; drug discovery target antibacterial NMR screen.

As part of a fully integrated and comprehensive strategy to discover novel antibacterial agents, NMR- and mass spectrometry-based affinity selection screens were performed to identify compounds that bind to protein targets uniquely found in bacteria and encoded by genes essential for microbial viability. A biphenyl acid lead series emerged from an NMR-based screen with the Haemophilus influenzae protein HI0065, a member of a family of probable ATP-binding proteins found exclusively in eubacteria. The structure-activity relationships developed around the NMR-derived biphenyl acid lead were consistent with on-target antibacterial activity as the Staphylococcus aureus antibacterial activity of the series correlated extremely well with binding affinity to HI0065, while the correlation of binding affinity with B-cell cytotoxicity was relatively poor. Although further studies are needed to conclusively establish the mode of action of the biphenyl series, these compounds represent novel leads that can serve as the basis for the development of novel antibacterial agents that appear to work via an unprecedented mechanism of action. Overall, these results support the genomics-driven hypothesis that targeting bacterial essential gene products that are not present in eukaryotic cells can identify novel antibacterial agents.

Chemical Biology & Drug Designpublished new progress about Antibacterial agents. 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, Synthetic Route of 1003-32-3.

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica

Moszczynski-Petkowski, Rafal’s team published research in European Journal of Medicinal Chemistry in 2018-07-15 | 1003-32-3

European Journal of Medicinal Chemistrypublished new progress about Benzimidazoles Role: PAC (Pharmacological Activity), RCT (Reactant), SPN (Synthetic Preparation), THU (Therapeutic Use), BIOL (Biological Study), RACT (Reactant or Reagent), PREP (Preparation), USES (Uses). 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, COA of Formula: C4H3NOS.

Moszczynski-Petkowski, Rafal; Majer, Jakub; Borkowska, Malgorzata; Bojarski, Lukasz; Janowska, Sylwia; Matloka, Mikolaj; Stefaniak, Filip; Smuga, Damian; Bazydlo, Katarzyna; Dubiel, Krzysztof; Wieczorek, Maciej published the artcile< Synthesis and characterization of novel classes of PDE10A inhibitors - 1H-1,3-benzodiazoles and imidazo[1,2-a]pyrimidines>, COA of Formula: C4H3NOS, the main research area is triazolopyridine pyrazolopyridine benzodiazole imidazopyrimidine preparation PDE10A enzyme inhibitor; 1H-1,3-benzodiazoles; Imidazo[1,2-a]pyrimidines; PDE10A.

New compounds containing [1,2,4]triazolo[1,5-a]pyridine I (R = 5,7-dimethyl-[1,2,4]triazolo[1,5-a]pyrimidin-2-yl, 4,7-dimethyl-[1,2,4]triazolo[1,5-a]pyrazin-2-yl, 4-methylquinazolin-2-yl; R1 = Ph, pyrimidin-2-yl), pyrazolo[1,5-a]pyridine II (R = 5,7-dimethyl-[1,2,4]triazolo[1,5-a]pyrimidin-2-yl, 4,7-dimethyl-[1,2,4]triazolo[1,5-a]pyrazin-2-yl; R1 = phenyl), 1H-1,3-benzodiazole III (R1 = 2-methoxyphenyl, pyridin-2-yl, 1,3-oxazol-4-yl, etc.; R2 = H, Me) and imidazo[1,2-a]pyrimidine IV backbones were designed and synthesized for PDE10A interaction. Among these compounds, 1H-1,3-benzodiazoles and imidazo[1,2-a]pyrimidines III and IV showed the highest affinity for PDE10A enzyme as well as good metabolic stability. Both classes of compounds were identified as selective and potent PDE10A enzyme inhibitors.

European Journal of Medicinal Chemistrypublished new progress about Benzimidazoles Role: PAC (Pharmacological Activity), RCT (Reactant), SPN (Synthetic Preparation), THU (Therapeutic Use), BIOL (Biological Study), RACT (Reactant or Reagent), PREP (Preparation), USES (Uses). 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, COA of Formula: C4H3NOS.

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica

Sun, Wencheng’s team published research in Tetrahedron Letters in 2020-01-16 | 1003-32-3

Tetrahedron Letterspublished new progress about Aldehydes Role: RCT (Reactant), RACT (Reactant or Reagent). 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, Electric Literature of 1003-32-3.

Sun, Wencheng; Teng, Qiaoling; Cheng, Dongping; Li, Xiaonian; Xu, Xiaoliang published the artcile< The hydrodebromination of 1,1-dibromoalkenes via visible light catalysis>, Electric Literature of 1003-32-3, the main research area is dibromoalkene preparation iridium photocatalyst diastereoselective hydrodebromination green chem; bromoalkene preparation.

A hydrodebromination reaction of 1,1-dibromoalkenes was established via visible light catalysis. A variety of structurally different vinyl bromides were obtained in moderate to excellent yields.

Tetrahedron Letterspublished new progress about Aldehydes Role: RCT (Reactant), RACT (Reactant or Reagent). 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, Electric Literature of 1003-32-3.

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica

Tzani, Marina A’s team published research in Nanomaterials in 2020 | 1003-32-3

Nanomaterialspublished new progress about Aldehydes Role: RCT (Reactant), RACT (Reactant or Reagent). 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, Formula: C4H3NOS.

Tzani, Marina A.; Gabriel, Catherine; Lykakis, Ioannis N. published the artcile< Selective synthesis of benzimidazoles from o-phenylenediamine and aldehydes promoted by supported gold nanoparticles>, Formula: C4H3NOS, the main research area is benzimidazole preparation; phenylenediamine aldehyde gold nanoparticle supported titanium oxide catalyst; benzimidazoles; cyclization reaction; gold nanoparticles; heterogeneous catalysis; o-phenylenediamine; thiabendazole.

The catalytic efficacy of supported gold nanoparticles (AuNPs) towards the selective reaction between o-phenylenediamine and aldehydes that yielded 2-substituted benzimidazoles I [R = Ph, 4-HOC6H4, 2-furyl, etc.] was investigated. Among several supported gold nanoparticle platforms, the Au/TiO2 provided a series of 2-aryl and 2-alkyl substituted benzimidazoles at ambient conditions, in the absence of additives and in high yields, using the mixture CHCl3:MeOH in ratio 3:1 as the reaction solvent. Among the AuNPs catalysts used herein, the Au/TiO2 containing small-size nanoparticles was found to be the most active towards the present catalytic methodol. The Au/TiO2 could be recovered and reused at least five times without a significant loss of its catalytic efficacy. The present catalytic synthetic protocol applied to a broad substrate scope and represents an efficient method for the formation of a C-N bond under mild reaction conditions. Notably, this catalytic methodol. provided the regio-isomer of the anthelmintic drug, Thiabendazole, in a lab-scale showing its applicability in the efficient synthesis of such N-heterocyclic mols. at industrial levels.

Nanomaterialspublished new progress about Aldehydes Role: RCT (Reactant), RACT (Reactant or Reagent). 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, Formula: C4H3NOS.

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica

Feng, Daijun’s team published research in Organic Letters in 2019-04-05 | 1003-32-3

Organic Letterspublished new progress about Aldol condensation. 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, Product Details of C4H3NOS.

Feng, Daijun; Barton, George; Scott, Colleen N. published the artcile< Synthesis of 2,5-Dibutyl-3,6-dimethyl-1H,2H,4H,5H-pyrrolo[3,4-c]pyrrole-1,4-dione: A Diketopyrrolopyrrole Scaffold for the Formation of Alkenyldiketopyrrolopyrrole Compounds>, Product Details of C4H3NOS, the main research area is dibutyldimethylpyrrolopyrrole dione preparation diketopyrrolopyrrole scaffold; divinyl substituted diketopyrrolopyrrole carbon hydrogen functionalization.

This manuscript describes an unprecedented and efficient synthesis of a new DPP scaffold, 2,5-dibutyl-3,6-dimethyl-1H,2H,4H,5H-pyrrolo[3,4-c]pyrrole-1,4-dione (DMDPP), containing Me groups at the 3,6-positions as a precursor to preparing 3,6-divinyl-substituted DPP compounds Subsequently, following the synthesis of DMDPP, we performed an efficient and mild C-H functionalization of the Me groups with a variety of aromatic aldehydes to synthesize the first examples of 3,6-divinyl-substituted DPP compounds in moderate to good yields.

Organic Letterspublished new progress about Aldol condensation. 1003-32-3 belongs to class thiazole, and the molecular formula is C4H3NOS, Product Details of C4H3NOS.

Referemce:
Thiazole | C3H3NS – PubChem,
Thiazole | chemical compound | Britannica