Application of cas: 132680-54-7 | Huang, Xiaohua et al. published an article in 2013

6-Methoxyisoindolin-1-one(cas:132680-54-7 Recommanded Product: 6-Methoxyisoindolin-1-one) also interacts with inhibitors of other topoisomerases such as camptothecin and etoposide. It has been shown that combining these two drugs can inhibit cancer cells more effectively than either drug alone.

Huang, Xiaohua;Cheng, Cliff C.;Fischmann, Thierry O.;Duca, Jose S.;Richards, Matthew;Tadikonda, Praveen K.;Reddy, Panduranga Adulla;Zhao, Lianyun;Arshad Siddiqui, M.;Parry, David;Davis, Nicole;Seghezzi, Wolfgang;Wiswell, Derek;Shipps, Gerald W. published 《Structure-based design and optimization of 2-aminothiazole-4-carboxamide as a new class of CHK1 inhibitors》. The research results were published in《Bioorganic & Medicinal Chemistry Letters》 in 2013.Recommanded Product: 6-Methoxyisoindolin-1-one The article conveys some information:

N-(Piperazinylaryl) amino- and heterocyclyl-substituted thiazolecarboxamides such as N-(piperazinylpyridinyl) (oxoisoindolinyl)thiazolecarboxamide I were prepared as selective inhibitors of checkpoint kinase 1 (CHK1). Both the identities of the amino substituent on the thiazole ring and the aryl ring connecting the piperazine moiety to the thiazolecarboxamide were varied to determine the structure-activity relationship for enzymic and cellular CHK1 inhibition and for selectivity over the related kinase CHK2. I inhibited CHK1 with IC50 values against the enzyme and against cells of 1 nM and 30 nM, resp., with > 104 selectivity for CHK1 over CHK2; the inhibition of CYP 3A4, 2D6, and 2C9 in human liver microsomes, of hERG in various assays, and of other kinases and of various G protein-coupled receptors by I was determined The structure of a complex of I with CHK1 was determined by X-ray crystallog.; the topol. of its binding to the ATP-binding site of CHK1 is determined The experimental procedure involved many compounds, such as 6-Methoxyisoindolin-1-one (cas: 132680-54-7) .

6-Methoxyisoindolin-1-one(cas:132680-54-7 Recommanded Product: 6-Methoxyisoindolin-1-one) also interacts with inhibitors of other topoisomerases such as camptothecin and etoposide. It has been shown that combining these two drugs can inhibit cancer cells more effectively than either drug alone.

Reference:
Indole alkaloid derivatives as building blocks of natural products from Bacillus thuringiensis and Bacillus velezensis and their antibacterial and antifungal activity study,
Preparation of Indole Containing Building Blocks for the Regiospecific Construction of Indole Appended Pyrazoles and Pyrroles

Nguyen, Sierra C. et al. published new progress in experiments with the help of cas: 132680-54-7

6-Methoxyisoindolin-1-one(cas:132680-54-7 Application of 132680-54-7) is a class III topoisomerase inhibitor that binds to the chk1 protein, which is an enzyme involved in DNA replication. 6-Methoxyisoindolin-1-one inhibits the interaction between the chk1 protein and DNA, preventing DNA replication.

Nguyen, Sierra C.;Hong, Allen Y. published 《Synthesis of semi-saturated polycyclic 1,2,4-triazoles from lactams》. The research results were published in《Tetrahedron Letters》 in 2021.Application of 132680-54-7 The article conveys some information:

A two-step method for the preparation of annulated 1,2,4-triazoles has been developed via the hydroxylamine-O-sulfonic acid (HOSA)-mediated N-amination of readily available lactams followed by condensation with Et 2-ethoxy-2-iminoacetate. Various annulated ring sizes can be incorporated into the resulting polycyclic triazoles. The experimental procedure involved many compounds, such as 6-Methoxyisoindolin-1-one (cas: 132680-54-7) .

6-Methoxyisoindolin-1-one(cas:132680-54-7 Application of 132680-54-7) is a class III topoisomerase inhibitor that binds to the chk1 protein, which is an enzyme involved in DNA replication. 6-Methoxyisoindolin-1-one inhibits the interaction between the chk1 protein and DNA, preventing DNA replication.

Reference:
Indole alkaloid derivatives as building blocks of natural products from Bacillus thuringiensis and Bacillus velezensis and their antibacterial and antifungal activity study,
Preparation of Indole Containing Building Blocks for the Regiospecific Construction of Indole Appended Pyrazoles and Pyrroles

Cas: 132680-54-7 | Powers, James J. et al. made new progress in 2009

6-Methoxyisoindolin-1-one(cas:132680-54-7 Electric Literature of C9H9NO2) also interacts with inhibitors of other topoisomerases such as camptothecin and etoposide. It has been shown that combining these two drugs can inhibit cancer cells more effectively than either drug alone.

Electric Literature of C9H9NO2In 2009, Powers, James J.;Favor, David A.;Rankin, Trent;Sharma, Rashmi;Pandit, Chetan;Jeganathan, Azhwarsamy;Maiti, Samarendra N. published 《Synthesis of methyl-, fluoro-, and chloro-substituted 6-hydroxyisoindolin-1-ones》. 《Tetrahedron Letters》published the findings. The article contains the following contents:

The regioselective synthesis of a series of methyl-, fluoro-, and chloro-substituted 6-hydroxyisoindolin-1-ones through a common aryl ester-nitrile intermediate is described. E.g., treatment of Me 2-cyano-5-methoxy-4-methylbenzoate (prepared from 3-methoxy-4-methylbenzoic acid via bromination, esterification, and cyanation) with Pd/C in ethanol gave the ring-closed 6-methoxy-5-methyl-2,3-dihydroisoindol-1-one. This was treated with boron tribromide in DCM to obtain 6-hydroxy-5-methyl-2,3-dihydroisoindol-1-one.6-Methoxyisoindolin-1-one (cas: 132680-54-7) were involved in the experimental procedure.

6-Methoxyisoindolin-1-one(cas:132680-54-7 Electric Literature of C9H9NO2) also interacts with inhibitors of other topoisomerases such as camptothecin and etoposide. It has been shown that combining these two drugs can inhibit cancer cells more effectively than either drug alone.

Reference:
Indole alkaloid derivatives as building blocks of natural products from Bacillus thuringiensis and Bacillus velezensis and their antibacterial and antifungal activity study,
Preparation of Indole Containing Building Blocks for the Regiospecific Construction of Indole Appended Pyrazoles and Pyrroles

Explore more uses of cas: 132680-54-7 | Daiichi Yakka Daigaku Kenkyu Nenpo

The crystal structure of 6-Methoxyisoindolin-1-one(cas:132680-54-7 Related Products of 132680-54-7) has been determined using x-ray crystallography and cell studies. It was found that 6-Methoxyisoindolin-1-one inhibits the interactions of chk1 with substructures of DNA, such as the major groove and minor groove.

Kamochi, Yasuko;Watanabe, Yasuo published 《Synthesis of isoindolinones by the amidomethylation of N-(hydroxymethyl)benzamides with pyrophosphoric acid》 in 1989. The article was appeared in 《Daiichi Yakka Daigaku Kenkyu Nenpo》. They have made some progress in their research.Related Products of 132680-54-7 The article mentions the following:

Synthesis of 1-isoindolinones by amidomethylation of N-(hydroxymethyl)benzamides with an electron-donating group para to the ring-closure site with pyrophosphoric acid is described, and a conversion of some amidomethylated intermediates into 1-isoindolinones is discussed. The experimental procedure involved many compounds, such as 6-Methoxyisoindolin-1-one (cas: 132680-54-7) .

The crystal structure of 6-Methoxyisoindolin-1-one(cas:132680-54-7 Related Products of 132680-54-7) has been determined using x-ray crystallography and cell studies. It was found that 6-Methoxyisoindolin-1-one inhibits the interactions of chk1 with substructures of DNA, such as the major groove and minor groove.

Reference:
Indole alkaloid derivatives as building blocks of natural products from Bacillus thuringiensis and Bacillus velezensis and their antibacterial and antifungal activity study,
Preparation of Indole Containing Building Blocks for the Regiospecific Construction of Indole Appended Pyrazoles and Pyrroles

Application of cas: 132680-54-7 | Zhang, Chunhui et al. published an article in 2018

6-Methoxyisoindolin-1-one(cas:132680-54-7 Electric Literature of C9H9NO2) also interacts with inhibitors of other topoisomerases such as camptothecin and etoposide. It has been shown that combining these two drugs can inhibit cancer cells more effectively than either drug alone.

Electric Literature of C9H9NO2《Palladium-Catalyzed Direct C-H Carbonylation of Free Primary Benzylamines: A Synthesis of Benzolactams》 was published in 2018. The authors were Zhang, Chunhui;Ding, Yongzheng;Gao, Yuzhen;Li, Shangda;Li, Gang, and the article was included in《Organic Letters》. The author mentioned the following in the article:

A protocol for palladium-catalyzed C-H carbonylation of readily available free primary benzylamines using NH2 as the chelating group under an atm. pressure of CO has been achieved, providing a general, atom- and step-economic approach to benzolactams, an important structural motif found in many biol. active compounds Application of this new method is also exemplified in the concise syntheses of two bioactive mols, e.g., (R)-PD 172939. The experimental procedure involved many compounds, such as 6-Methoxyisoindolin-1-one (cas: 132680-54-7) .

6-Methoxyisoindolin-1-one(cas:132680-54-7 Electric Literature of C9H9NO2) also interacts with inhibitors of other topoisomerases such as camptothecin and etoposide. It has been shown that combining these two drugs can inhibit cancer cells more effectively than either drug alone.

Reference:
Indole alkaloid derivatives as building blocks of natural products from Bacillus thuringiensis and Bacillus velezensis and their antibacterial and antifungal activity study,
Preparation of Indole Containing Building Blocks for the Regiospecific Construction of Indole Appended Pyrazoles and Pyrroles

Application of cas: 132680-54-7 | Wang, Ze-Shu et al. published an article in 2020

6-Methoxyisoindolin-1-one(cas:132680-54-7 Product Details of 132680-54-7) also interacts with inhibitors of other topoisomerases such as camptothecin and etoposide. It has been shown that combining these two drugs can inhibit cancer cells more effectively than either drug alone.

Wang, Ze-Shu;Chen, Yang-Bo;Zhang, Hao-Wen;Sun, Zhou;Zhu, Chunyin;Ye, Long-Wu published 《Ynamide Smiles Rearrangement Triggered by Visible-Light-Mediated Regioselective Ketyl-Ynamide Coupling: Rapid Access to Functionalized Indoles and Isoquinolines》. The research results were published in《Journal of the American Chemical Society》 in 2020.Product Details of 132680-54-7 The article conveys some information:

Here, a novel and practical radical Smiles rearrangement triggered by photoredox-catalyzed regioselective ketyl-ynamide coupling is reported, which represents the first radical Smiles rearrangement of ynamides. This method enables facile access to a variety of valuable 2-benzhydrylindoles with broad substrate scope in generally good yields under mild reaction conditions. In addition, this chem. can also be extended to the divergent synthesis of versatile 3-benzhydrylisoquinolines through a similar ketyl-ynamide coupling and radical Smiles rearrangement, followed by dehydrogenative oxidation Moreover, such an ynamide Smiles rearrangement initiated by intermol. photoredox catalysis via addition of external radical sources is also achieved. By control experiments, the reaction was shown to proceed via key ketyl radical and α-imino carbon radical intermediates. To complete the study, the researchers used 6-Methoxyisoindolin-1-one (cas: 132680-54-7) .

6-Methoxyisoindolin-1-one(cas:132680-54-7 Product Details of 132680-54-7) also interacts with inhibitors of other topoisomerases such as camptothecin and etoposide. It has been shown that combining these two drugs can inhibit cancer cells more effectively than either drug alone.

Reference:
Indole alkaloid derivatives as building blocks of natural products from Bacillus thuringiensis and Bacillus velezensis and their antibacterial and antifungal activity study,
Preparation of Indole Containing Building Blocks for the Regiospecific Construction of Indole Appended Pyrazoles and Pyrroles

Chang, Zhe et al. published new progress in experiments with the help of cas: 132680-54-7

6-Methoxyisoindolin-1-one(cas:132680-54-7 Recommanded Product: 6-Methoxyisoindolin-1-one) also interacts with inhibitors of other topoisomerases such as camptothecin and etoposide. It has been shown that combining these two drugs can inhibit cancer cells more effectively than either drug alone.

Recommanded Product: 6-Methoxyisoindolin-1-oneIn 2021, Chang, Zhe;Huang, Jialin;Wang, Si;Chen, Geshuyi;Zhao, Heng;Wang, Rui;Zhao, Depeng published 《Copper catalyzed late-stage C(sp3)-H functionalization of nitrogen heterocycles》. 《Nature Communications》published the findings. The article contains the following contents:

A copper-catalyzed late-stage C(sp3)-H functionalization of N-heterocycles using com. available catalysts under mild reaction conditions was reported. We have investigated eight types of N-heterocycles such as I (R = H, Me) which were usually found in medicinally important skeletons. The scope and utility of this approach were demonstrated by late-stage C(sp3)-H modification of these heterocycles including a number of pharmaceuticals with a broad range of nucleophiles, such as methylation, arylation, azidination, mono-deuteration, and glycoconjugation. Preliminary mechanistic studies revealed that the reaction undergoes a C-H fluorination process which is followed by a nucleophilic substitution. To complete the study, the researchers used 6-Methoxyisoindolin-1-one (cas: 132680-54-7) .

6-Methoxyisoindolin-1-one(cas:132680-54-7 Recommanded Product: 6-Methoxyisoindolin-1-one) also interacts with inhibitors of other topoisomerases such as camptothecin and etoposide. It has been shown that combining these two drugs can inhibit cancer cells more effectively than either drug alone.

Reference:
Indole alkaloid derivatives as building blocks of natural products from Bacillus thuringiensis and Bacillus velezensis and their antibacterial and antifungal activity study,
Preparation of Indole Containing Building Blocks for the Regiospecific Construction of Indole Appended Pyrazoles and Pyrroles

Explore more uses of cas: 132680-54-7 | Tetrahedron

6-Methoxyisoindolin-1-one(cas:132680-54-7 Quality Control of 6-Methoxyisoindolin-1-one) is a class III topoisomerase inhibitor that binds to the chk1 protein, which is an enzyme involved in DNA replication. 6-Methoxyisoindolin-1-one inhibits the interaction between the chk1 protein and DNA, preventing DNA replication.

Lopez-Valdez, German;Olguin-Uribe, Simon;Millan-Ortiz, Alejandra;Gamez-Montano, Rocio;Miranda, Luis D. published 《Convenient access to isoindolinones via carbamoyl radical cyclization: Synthesis of cichorine and 4-hydroxyisoindolin-1-one natural products》 in 2011. The article was appeared in 《Tetrahedron》. They have made some progress in their research.Quality Control of 6-Methoxyisoindolin-1-one The article mentions the following:

An efficient and convenient access to 2-tert-butylisoindolin-1-ones via an oxidative radical cyclization process from stable carbamoylxanthates, derived from secondary tert-butylamines, is described. The proposed mechanism for this transformation involves, the generation of a carbamoyl radical, its cyclization to the aromatic system, and the dilauroyl peroxide (DLP) mediated rearomatization to generate the isoindolinone ring system. Addnl., the syntheses of cichorine and 4-hydroxyisoindolin-1-one natural products were carried out to underscore the synthetic potential of this xanthate-based carbamoyl radical-oxidative cyclization. And 6-Methoxyisoindolin-1-one (cas: 132680-54-7) was used in the research process.

6-Methoxyisoindolin-1-one(cas:132680-54-7 Quality Control of 6-Methoxyisoindolin-1-one) is a class III topoisomerase inhibitor that binds to the chk1 protein, which is an enzyme involved in DNA replication. 6-Methoxyisoindolin-1-one inhibits the interaction between the chk1 protein and DNA, preventing DNA replication.

Reference:
Indole alkaloid derivatives as building blocks of natural products from Bacillus thuringiensis and Bacillus velezensis and their antibacterial and antifungal activity study,
Preparation of Indole Containing Building Blocks for the Regiospecific Construction of Indole Appended Pyrazoles and Pyrroles

Gesmundo, Nathan J. et al. published new experimental results with the assistance of cas: 132680-54-7

6-Methoxyisoindolin-1-one(cas:132680-54-7 Computed Properties of C9H9NO2) is a class III topoisomerase inhibitor that binds to the chk1 protein, which is an enzyme involved in DNA replication. 6-Methoxyisoindolin-1-one inhibits the interaction between the chk1 protein and DNA, preventing DNA replication.

Computed Properties of C9H9NO2《Nanoscale synthesis and affinity ranking》 was published in 2018. The authors were Gesmundo, Nathan J.;Sauvagnat, Berengere;Curran, Patrick J.;Richards, Matthew P.;Andrews, Christine L.;Dandliker, Peter J.;Cernak, Tim, and the article was included in《Nature (London, United Kingdom)》. The author mentioned the following in the article:

Most drugs are developed through iterative rounds of chem. synthesis and biochem. testing to optimize the affinity of a particular compound for a protein target of therapeutic interest. This process is challenging because candidate mols. must be selected from a chem. space of more than 1060 drug-like possibilities1, and a single reaction used to synthesize each mol. has more than 107 plausible permutations of catalysts, ligands, additives and other parameters2. The merger of a method for high-throughput chem. synthesis with a biochem. assay would facilitate the exploration of this enormous search space and streamline the hunt for new drugs and chem. probes. Miniaturized high-throughput chem. synthesis3-7 has enabled rapid evaluation of reaction space, but so far the merger of such syntheses with bioassays has been achieved with only low-d. reaction arrays, which analyze only a handful of analogs prepared under a single reaction condition8-13. High-d. chem. synthesis approaches that have been coupled to bioassays, including on-bead14, on-surface15, on-DNA16 and mass-encoding technologies17, greatly reduce material requirements, but they require the covalent linkage of substrates to a potentially reactive support, must be performed under high dilution and must operate in a mixture format. These reaction attributes limit the application of transition-metal catalysts, which are easily poisoned by the many functional groups present in a complex mixture, and of transformations for which the kinetics require a high concentration of reactant. Here the authors couple high-throughput nanomole-scale synthesis with a label-free affinity-selection mass spectrometry bioassay. Each reaction is performed at a 0.1-M concentration in a discrete well to enable transition-metal catalysis while consuming less than 0.05 mg of substrate per reaction. The affinity-selection mass spectrometry bioassay is then used to rank the affinity of the reaction products to target proteins, removing the need for time-intensive reaction purification This method enables the primary synthesis and testing steps that are critical to the invention of protein inhibitors to be performed rapidly and with minimal consumption of starting materials. And 6-Methoxyisoindolin-1-one (cas: 132680-54-7) was used in the research process.

6-Methoxyisoindolin-1-one(cas:132680-54-7 Computed Properties of C9H9NO2) is a class III topoisomerase inhibitor that binds to the chk1 protein, which is an enzyme involved in DNA replication. 6-Methoxyisoindolin-1-one inhibits the interaction between the chk1 protein and DNA, preventing DNA replication.

Reference:
Indole alkaloid derivatives as building blocks of natural products from Bacillus thuringiensis and Bacillus velezensis and their antibacterial and antifungal activity study,
Preparation of Indole Containing Building Blocks for the Regiospecific Construction of Indole Appended Pyrazoles and Pyrroles

Application of cas: 132680-54-7 | Shen, Zhongqi et al. published an article in 2010

The crystal structure of 6-Methoxyisoindolin-1-one(cas:132680-54-7 Category: indole-building-block) has been determined using x-ray crystallography and cell studies. It was found that 6-Methoxyisoindolin-1-one inhibits the interactions of chk1 with substructures of DNA, such as the major groove and minor groove.

Category: indole-building-blockIn 2010, Shen, Zhongqi;Siva Ramamoorthy, P.;Hatzenbuhler, Nicole T.;Evrard, Deborah A.;Childers, Wayne;Harrison, Boyd L.;Chlenov, Michael;Hornby, Geoffrey;Smith, Deborah L.;Sullivan, Kelly M.;Schechter, Lee E.;Andree, Terrance H. published 《Synthesis and structure-activity relationship of novel lactam-fused chroman derivatives having dual affinity at the 5-HT1A receptor and the serotonin transporter》. 《Bioorganic & Medicinal Chemistry Letters》published the findings. The article contains the following contents:

The structure-activity relationship (SAR) for three series of lactam-fused chroman derivatives possessing 3-amino substituents was evaluated. Many compounds exhibited affinities for both the 5-HT1A receptor and the 5-HT transporter. I [R = F, CN] demonstrated 5-HT1A antagonist activities in the in vitro cAMP turnover model.6-Methoxyisoindolin-1-one (cas: 132680-54-7) were involved in the experimental procedure.

The crystal structure of 6-Methoxyisoindolin-1-one(cas:132680-54-7 Category: indole-building-block) has been determined using x-ray crystallography and cell studies. It was found that 6-Methoxyisoindolin-1-one inhibits the interactions of chk1 with substructures of DNA, such as the major groove and minor groove.

Reference:
Indole alkaloid derivatives as building blocks of natural products from Bacillus thuringiensis and Bacillus velezensis and their antibacterial and antifungal activity study,
Preparation of Indole Containing Building Blocks for the Regiospecific Construction of Indole Appended Pyrazoles and Pyrroles