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(E)-3-(4-(2,4,4-trimethylpentan-2-yl)phenoxyl)acrylic acid is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

1373443-32-3

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1373443-32-3 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1373443-32-3 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,3,7,3,4,4 and 3 respectively; the second part has 2 digits, 3 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 1373443-32:
(9*1)+(8*3)+(7*7)+(6*3)+(5*4)+(4*4)+(3*3)+(2*3)+(1*2)=153
153 % 10 = 3
So 1373443-32-3 is a valid CAS Registry Number.

1373443-32-3Upstream product

1373443-32-3Downstream Products

1373443-32-3Relevant academic research and scientific papers

Methyl 3-(3-(4-(2,4,4-Trimethylpentan-2-yl)phenoxy)-propanamido)benzoate as a Novel and Dual Malate Dehydrogenase (MDH) 1/2 Inhibitor Targeting Cancer Metabolism

Naik, Ravi,Ban, Hyun Seung,Jang, Kyusic,Kim, Inhyub,Xu, Xuezhen,Harmalkar, Dipesh,Shin, Seong-Ah,Kim, Minkyoung,Kim, Bo-Kyung,Park, Jaehyung,Ku, Bonsu,Oh, Sujin,Won, Misun,Lee, Kyeong

, p. 8631 - 8646 (2017)

Previously, we reported a hypoxia-inducible factor (HIF)-1 inhibitor LW6 containing an (aryloxyacetylamino)benzoic acid moiety inhibits malate dehydrogenase 2 (MDH2) using a chemical biology approach. Structure-activity relationship studies on a series of (aryloxyacetylamino)benzoic acids identified selective MDH1, MDH2, and dual inhibitors, which were used to study the relationship between MDH enzyme activity and HIF-1 inhibition. We hypothesized that dual inhibition of MDH1 and MDH2 might be a powerful approach to target cancer metabolism and selected methyl-3-(3-(4-(2,4,4-trimethylpentan-2-yl)phenoxy)propanamido)-benzoate (16c) as the most potent dual inhibitor. Kinetic studies revealed that compound 16c competitively inhibited MDH1 and MDH2. Compound 16c inhibited mitochondrial respiration and hypoxia-induced HIF-1α accumulation. In xenograft assays using HCT116 cells, compound 16c demonstrated significant in vivo antitumor efficacy. This finding provides concrete evidence that inhibition of both MDH1 and MDH2 may provide a valuable platform for developing novel therapeutics that target cancer metabolism and tumor growth.

Phenoxyacrylic derivatives and use thereof

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, (2016/10/10)

The present invention relates to a phenoxyacrylic derivative and a pharmaceutical composition comprising the same as an active ingredient for preventing or treating a nonalcoholic fatty liver disease. The compound according to the present invention has an

ARYLOXY PHENOXY ACRYLIC COMPOUND HAVING HIF-1 INHIBITION ACTIVITY, METHOD FOR PREPARING SAME, AND PHARMACEUTICAL COMPOSITION CONTAINING SAME AS AN ACTIVE INGREDIENT

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Paragraph 0134; 0135; 0136; 0140; 0141; 0142, (2013/09/26)

The present invention relates to a compound inhibiting HF-1 activity, a preparation method of the same, and a pharmaceutical composition comprising the same as an active ingredient. The compound of the present invention demonstrates anticancer activity no

Synthesis and structure-activity relationship of (E)-phenoxyacrylic amide derivatives as Hypoxia-Inducible Factor (HIF) 1α inhibitors

Naik, Ravi,Won, Misun,Kim, Bo-Kyung,Xia, Yan,Choi, Hyun Kyung,Jin, Guanghai,Jung, Youngjin,Kim, Hwan Mook,Lee, Kyeong

, p. 10564 - 10571 (2013/02/22)

A series of (E)-phenoxyacrylic amide derivatives were synthesized and evaluated as hypoxia inducible factor (HIF) 1α inhibitors. The present structure-activity relationship study on this series identified the morpholinoethyl containing ester 4p as a potent inhibitor of HIF-1α under hypoxic conditions (IC50 = 0.12 μM in a cell-based HRE reporter assay) in HCT116 cells. The representative compound 4p suppressed hypoxia-induced HIF-1α accumulation and targeted gene expression in a dose-dependent manner. The effect of HIF-1α inhibition by 4p was further demonstrated by its inhibitory activity on in vitro tube formation and migration of cells, which may be valuable for development of novel therapeutics for cancer and tumor angiogenesis.

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