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4-methyl-6-oxo-1-phenyl-1,6-dihydro-pyridazine-3-carbonyl chloride is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

859296-96-1

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859296-96-1 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 859296-96-1 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 8,5,9,2,9 and 6 respectively; the second part has 2 digits, 9 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 859296-96:
(8*8)+(7*5)+(6*9)+(5*2)+(4*9)+(3*6)+(2*9)+(1*6)=241
241 % 10 = 1
So 859296-96-1 is a valid CAS Registry Number.

859296-96-1Relevant academic research and scientific papers

Design, synthesis and biological evaluation of 4-(pyridin-4-yloxy)benzamide derivatives bearing a 5-methylpyridazin-3(2H)-one fragment

Duan, Yongli,Tang, Qidong,Xiong, Hehua,Zhang, Han,Zhang, Jianqing,Zhang, Qian,Zheng, Pengwu

, (2020/03/23)

A series of 4-(pyridin-4-yloxy)benzamide derivatives bearing a 5-methylpyridazin-3(2H)-one fragment were designed, synthesized, and evaluated for their biological activity. Most compounds showed effective inhibitory activity against cancer cell lines of A

Dihydropyridine structure contained 7-nitrogenous indoles compound and application thereof

-

, (2017/08/02)

The invention discloses a dihydropyridine structure contained 7-nitrogenous indoles compound and geometrical isomer, pharmacologically acceptable salt, hydrate, solvate or prodrug and preparation method thereof. The dihydropyridine structure contained 7-nitrogenous indoles compound and the pharmacologically acceptable salt, hydrate or solvate serve as activities and are mixed and prepared into the compound with a pharmacologically acceptable carrier or a polybutene, and the clinically acceptable dosage form is prepared. The dihydropyridine structure contained 7-nitrogenous indoles compound is applied to preparation of disease drugs in treatment and/or prevention of hyperplastic disease, cancer and lung cancer, liver cancer, stomach cancer, colon cancer and breast cancer.

Discovery of novel 7-azaindole derivatives bearing dihydropyridazine moiety as c-Met kinase inhibitors

Tang, Qidong,Wang, Linxiao,Duan, Yongli,Wang, Wenhui,Huang, Shunmin,Zhi, Jia,Jia, Shuang,Zhu, Wufu,Wang, Ping,Luo, Rong,Zheng, Pengwu

, p. 97 - 106 (2017/04/07)

A series of 7-azaindole derivatives bearing the dihydropyridazine scaffold were synthesized and evaluated for their c-Met kinase inhibitory, and antiproliferative activity against 4 cancer cell lines (HT29, A549, H460, U87MG) were evaluated in?vitro. Most compounds showed moderate to excellent potency. Compared to foretinib, the most promising analog 34 (c-Met IC50: 1.06?nM, a multitarget tyrosine kinase inhibitor) showed a 6.4-, 7.8-, and 3.2-fold increase in activity against HT29, A549, and H460?cell lines, respectively. Structure activity relationship studies indicated that mono-EWGs (such as R2?=?F) at 4-position of moiety D was a key factor in improving the antitumor activity.

Design, synthesis and structure-activity relationships of novel 4-phenoxyquinoline derivatives containing pyridazinone moiety as potential antitumor agents

Zhou, Shunguang,Liao, Huimin,He, Chao,Dou, Yanan,Jiang, Mingyan,Ren, Lixiang,Zhao, Yanfang,Gong, Ping

, p. 581 - 593 (2014/07/21)

A series of novel 4-phenoxyquinoline derivatives containing pyridazinone moiety were synthesized and evaluated for their in vitro cytotoxic activity against five cancer cell lines (HT-29, H460, A549, MKN-45, and U87MG). Most of the compounds exhibited moderate-to-significant cytotoxicity and high selectivity against one or more cell lines. Compounds 15a, 20a, 15b, 15c, 20d, and 16e were further examined for their inhibitory activity against c-Met kinase. The most promising compound 15a (c-Met half-maximal inhibitory concentration [IC50] = 2.15 nM) showed remarkable cytotoxicity against HT-29, H460, and A549 cell lines with IC50 values of 0.10 μM, 0.13 μM, and 0.05 μM, respectively, and thus it was 1.5- to 2.3-fold more potent than foretinib. Their preliminary structure-activity relationships (SARs) studies indicate that electron-withdrawing groups on the terminal phenyl rings are beneficial for improving the antitumor activity.

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