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N-(5-bromo-2-methoxypyridin-3-yl)benzenesulphonamide is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

1086063-47-9

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1086063-47-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1086063-47-9 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,0,8,6,0,6 and 3 respectively; the second part has 2 digits, 4 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 1086063-47:
(9*1)+(8*0)+(7*8)+(6*6)+(5*0)+(4*6)+(3*3)+(2*4)+(1*7)=149
149 % 10 = 9
So 1086063-47-9 is a valid CAS Registry Number.

1086063-47-9Relevant academic research and scientific papers

Development of anti-breast cancer PI3K inhibitors based on 7-azaindole derivatives through scaffold hopping: Design, synthesis and in vitro biological evaluation

Chen, Yi,Deng, Mingli,Jia, Yu,Ling, Yun,Liu, Xiaofeng,Lu, Mingzhu,Qiu, Tianze,Xiang, Ruiqing,Yang, Chengbin,Yang, Yongtai,Zhou, Yaming

supporting information, (2021/10/19)

Breast cancer is the cancer with the highest incidence all over the world. Phosphatidylinositol 3-kinase is an important regulator of intracellular signaling pathways, which is frequently mutated and overexpressed in majority of human breast cancers, and the inhibition of PI3K has been considered as a promising approach for the treatment of the cancer. Here, we report our design and synthesis of new 7-azaindole derivatives as PI3K inhibitors through the scaffold hopping strategy. By varying the groups at the 3-position of 7-azaindole, we identified a series of potent PI3K inhibitors, whose antiproliferative activities against two human breast cancer MCF-7 and MDA-MB-231 cell lines were evaluated. Representative derivatives FD2054 and FD2078 showed better activity than BKM120 in antiproliferation, reduced the levels of phospho-AKT and induced cell apoptosis. All these results suggested that FD2054 and FD2078 are potent PI3K inhibitors that could be considered as potential candidates for the development of anticancer agents.

DUAL ATM AND DNA-PK INHIBITORS FOR USE IN ANTI-TUMOR THERAPY

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Page/Page column 212; 213; 217, (2019/11/12)

Provided herein are compounds of the Formula (I), (II), and (III), as well as pharmaceutically acceptable salts thereof, wherein the substituents are those disclosed in the specification. These compounds, and the pharmaceutical compositions containing them, are useful for the treatment of oncologic diseases.

Micro-reactor tandem synthesis method of indole anticancer drug molecules

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Paragraph 0116-0118, (2019/12/08)

The invention relates to a micro-reactor tandem synthesis method of indole anticancer drug molecules. The method comprises the following steps: a reaction liquid 1 and a reaction liquid 2 are mixed, then are introduced into a first micro-reactor, and are reacted to obtain a first effluent, the first effluent and a reaction liquid 3 are mixed, then are introduced into a second micro-reactor, and are reacted to obtain a second effluent, the second effluent and a reaction liquid 4 are mixed, then are introduced into a third micro-reactor, and are reacted to obtain a final effluent, and the finaleffluent is concentrated and separated to obtain the indole anticancer drug molecules, wherein the reaction liquid 1 is a mixed solution containing 5-bromine-3-amino-2-substituted (R1)-pyridine, the reaction liquid 2 is substituted (R2)-benzenesulfonyl chloride, the reaction liquid 3 is a mixed solution containing bis(pinacolato)diboron, the reaction liquid 4 is a mixed solution containing a 5-bromo-7-azaindole derivative, and the indole anticancer drug molecules are benzenesulfonamidopyridylazaindole compounds. Compared with the prior art, the method of the invention has the advantages of high reaction efficiency, few side reactions and simple production process.

Discovery of a Novel Series of 7-Azaindole Scaffold Derivatives as PI3K Inhibitors with Potent Activity

Yang, Chengbin,Zhang, Xi,Wang, Yi,Yang, Yongtai,Liu, Xiaofeng,Deng, Mingli,Jia, Yu,Ling, Yun,Meng, Ling-Hua,Zhou, Yaming

supporting information, p. 875 - 880 (2017/08/16)

The phosphoinositide 3-kinase (PI3K) inhibitors potently inhibit the signaling pathway of PI3K/AKT/mTOR, which provides a promising new approach for the molecularly targeted cancer therapy. In this work, a novel series of 7-azaindole scaffold derivatives was discovered by the fragment-based growing strategy. The structure-activity relationship profiles identified that the 7-azaindole scaffold derivatives exhibit potent activity against PI3K at molecular and cellular levels as well as cell proliferation in a panel of human tumor cells.

PI3 kinase modulators and methods of use thereof, and use thereof

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, (2016/10/07)

The invention belongs to the field of medicines, concretely relates to a compound for treating cancer, a composition and an application of the composition and particularly relates to a PI3 kinase regulator as well as a use method and application of the PI3 kinase regulator. The invention provides a compound as shown in the formula (I), a pharmaceutically accepted salt of the compound and a pharmaceutical preparation of the compound, wherein the compound is used for regulating the activity of protein kinase and intercellular or intracellular signal response. The invention also relates to a pharmaceutical composition containing the compound and a method for treating high-proliferative diseases of mammals and particularly human beings by using the pharmaceutical composition as shown in the formula (I).

Protein Kinase Inhibitors

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, (2014/02/16)

The present invention is directed to compounds of the Formula I as well as pharmaceutically acceptable salts, hydrates, isomers, or solvates thereof, wherein the variables are described herein. The present invention further relates to pharmaceutical compositions which comprise the compounds of Formula I, and to methods for inhibiting protein kinase and methods of treating diseases, such as cancers, inflammation.

PI3 KINASE MODULATORS AND METHODS OF USE

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, (2014/02/16)

This invention relates to the field of lipid kinases and modulators thereof. In particular, the invention relates to modulators of phosphatidylinositol 3-kinases (PI3 kinases or PBKs) signaling pathways, and methods of their use. The invention also provides pharmaceutically acceptable compositions comprising such compounds and methods of using the compositions in modulating of PI3K signaling pathways and their related disorders in mammals, especially humans.

PERFORIN INHIBITING BENZENESULFONAMIDE COMPOUNDS, PREPARATION AND USES THEREOF

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Page/Page column 87; 88, (2014/03/25)

Compounds of formula (la) and pharmaceutically acceptable salts, solvates, and hydrates thereof and related methods of modulatin perforin activity on a cell: wherein Ring A is selected from a 6-10 membered aryl, 5-6 membered cycloalkyi, 5-6 membered heteroaryl or 5-6 membered heterocyclyl, wherein the heteroaryl and heterocyclyl rings comprise at least one heteroatom selected from N, O or S; and wherein the aryl, cycloalkyi, heteroaryl or heterocyclyl rings are optionally substituted with 1 to 3 substituents selected from halo, nitro, -C1-Cealkyl, -C1-Ceaminoalkyl, -C1-C6hydroxyalkyl, -haloC1-C6alkyl, -C1- C6alkoxyl, -haloC1-C6alkyl, -CH2OC(O)CrC6alkyl, -C(O)OC1,-C6alkyI, -NHC(O)C1,-C6alkyl, -NHS(O)2C1- C6alkyl, -S(O)2C1-C6alkyl, -S(O)2NH2, and -C(O)NJJ; Ring B is a 6-10 membered arylene or a 5-6 membered heteroarylene comprising at least one heteroatom selected from N, 0 or S; and wherein the aryl or heteroaryl is optionally, substituted with one or more substituents selected from -NJJ, -OJ, halo,C1 -C6alkyl, -haloC1- C6alkyl, -C1-C6alkoxy, -haloC1-C6alkoxyl, and -C(0)NJJ; Ring C is is selected from a 5-10 membered heteroarylene or a 5-10 membered heterocyclene, each comprising at least one heteroatom selected from N, S and O; Ring D is an optionally substituted benzofused 9-11 membered heterocyclyl or optionally substituted ben2ofused 9-11 membered heteroaryl comprising at least one heteroatom selected from N or O; L is a linker selected from branched and unbranched C1-C4 alkylene, -S(0)2-NH-, -C(0)-NH-, -NH-C(0)-NH-, -S(0)2-NH-C(0)-NH-, -S(0)2-NH-C(0) - and -CH=CH-; wherein Rings B and C, and Rings C and D, are connected to each other via a C-C bond at any of the available C atoms on each respective ring; and J in each occurrence is independently selected from H, optionally substituted C1-C6alkyl or optionally substituted haloC1-C6alkyl.

AMINOQUINOLINE DERIVATIVES AS ANTIVIRAL AGENTS

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Page/Page column 101-102, (2012/04/04)

Provided are compounds of Formula (I) and Formula (II) and pharmaceutically acceptable salts thereof, their pharmaceutical compositions, their methods of preparation, and their use for treating viral infections mediated by a member of the Flaviviridae family of viruses such as hepatitis C virus (HCV).

SUBSTITUTED IMIDAZOQUINOLINE DERIVATIVES AS KINASE INHIBITORS

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Page/Page column 77, (2012/02/02)

The present invention relates to substituted imidazo[4,5-c]quinoline derivatives, the compounds of formula (I), wherein R1 R2, R3, R4, R5, R6 and R7 are as defined in the specification, processes for their preparation, pharmaceutical compositions comprising compounds of formula (I), and their use in the treatment of diseases or disorders mediated by one or more kinases, particularly proliferative diseases or disorders such as cancer. These compounds can also be used in the treatment of inflammatory diseases and angiogenesis related disorders.

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