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Benzene, 1-(1-Methylethenyl)-2,4-bis(phenylMethoxy)-, also known as 1-Vinyl-2,4-bis(methoxyphenyl)benzene, is a chemical compound belonging to the benzene family with the molecular formula C26H24O2. It is characterized by its aromatic and flammable properties, making it a potentially hazardous material. Individuals working with Benzene, 1-(1-Methylethenyl)-2,4-bis(phenylMethoxy)- must take necessary safety precautions to mitigate any health risks associated with its use.

747414-16-0

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747414-16-0 Usage

Uses

Used in Plastics Industry:
Benzene, 1-(1-Methylethenyl)-2,4-bis(phenylMethoxy)is used as a monomer in the plastics industry for the production of various types of plastics. Its aromatic structure and reactivity make it suitable for the synthesis of polymers with specific properties, such as durability, flexibility, and resistance to chemicals.
Used in Resins Industry:
In the resins industry, Benzene, 1-(1-Methylethenyl)-2,4-bis(phenylMethoxy)is utilized as a key component in the formulation of resins. These resins are used in various applications, including coatings, adhesives, and composite materials, due to their excellent adhesion, chemical resistance, and mechanical properties.
Used in Synthetic Fibers Industry:
Benzene, 1-(1-Methylethenyl)-2,4-bis(phenylMethoxy)is also employed in the production of synthetic fibers. Its chemical structure allows for the creation of fibers with desirable characteristics, such as strength, elasticity, and resistance to environmental factors. These fibers are used in various applications, including textiles, automotive, and aerospace industries.
Used in Chemical Intermediates:
Benzene, 1-(1-Methylethenyl)-2,4-bis(phenylMethoxy)serves as a chemical intermediate in the synthesis of various organic compounds. Its reactive vinyl group and methoxyphenyl substituents make it a versatile building block for the production of pharmaceuticals, agrochemicals, and other specialty chemicals.
Used in Research and Development:
Due to its unique chemical properties, Benzene, 1-(1-Methylethenyl)-2,4-bis(phenylMethoxy)is also used in research and development for the exploration of new chemical reactions, materials, and applications. Its aromatic and flammable nature provides opportunities for studying its reactivity, stability, and potential uses in various fields.

Check Digit Verification of cas no

The CAS Registry Mumber 747414-16-0 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 7,4,7,4,1 and 4 respectively; the second part has 2 digits, 1 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 747414-16:
(8*7)+(7*4)+(6*7)+(5*4)+(4*1)+(3*4)+(2*1)+(1*6)=170
170 % 10 = 0
So 747414-16-0 is a valid CAS Registry Number.

747414-16-0SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 18, 2017

Revision Date: Aug 18, 2017

1.Identification

1.1 GHS Product identifier

Product name (((4-(Prop-1-en-2-yl)-1,3-phenylene)bis(oxy))bis(methylene))dibenzene

1.2 Other means of identification

Product number -
Other names 2,4-bis(phenylmethoxy)-1-prop-1-en-2-ylbenzene

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:747414-16-0 SDS

747414-16-0Relevant academic research and scientific papers

Design and Synthesis of Hsp90 Inhibitors with B-Raf and PDHK1 Multi-Target Activity

Pinzi, Luca,Foschi, Francesca,Christodoulou, Michael S.,Passarella, Daniele,Rastelli, Giulio

, p. 1177 - 1185 (2021/10/14)

The design of multi-target ligands has become an innovative approach for the identification of effective therapeutic treatments against complex diseases, such as cancer. Recent studies have demonstrated that the combined inhibition of Hsp90 and B-Raf provides synergistic effects against several types of cancers. Moreover, it has been reported that PDHK1, which presents an ATP-binding pocket similar to that of Hsp90, plays an important role in tumor initiation, maintenance and progression, participating also to the senescence process induced by B-Raf oncogenic proteins. Based on these premises, the simultaneous inhibition of these targets may provide several benefits for the treatment of cancer. In this work, we set up a design strategy including the assembly and integration of molecular fragments known to be important for binding to the Hsp90, PDHK1 and B-Raf targets, aided by molecular docking for the selection of a set of compounds potentially able to exert Hsp90-B-Raf-PDHK1 multi-target activities. The designed compounds were synthesized and experimentally validated in vitro. According to the in vitro assays, compounds 4 a, 4 d and 4 e potently inhibited Hsp90 and moderately inhibited the PDHK1 kinase. Finally, molecular dynamics simulations were performed to provide further insights into the structural basis of their multi-target activity.

Radiosynthesis, biological evaluation and preliminary microPET study of 18F-labeled 5-resorcinolic triazolone derivative based on ganetespib targeting HSP90

Kang, Julie,Young Lee, Jun,Ta?, ?sa,More, Kunal N.,Kim, Hangun,Park, Jeong-Hoon,Chang, Dong-Jo

supporting information, p. 3658 - 3664 (2018/10/26)

Heat-shock protein 90 (HSP90) is a molecular chaperone that activates oncogenic transformation in several solid tumors, including lung and breast cancers. Ganetespib, a most promising candidate among several HSP90 inhibitors under clinical trials, has entered Phase III clinical trials for cancer therapy. Despite numerous evidences validating HSP90 as a target of anticancer, there are few studies on PET agents targeting oncogenic HSP90. In this study, we synthesized and biologically evaluated a novel 18F-labeled 5-resorcinolic triazolone derivative (1, [18F]PTP-Ganetespib) based on ganetespib. [18F]PTP-Ganetespib was labeled by click chemistry of Ganetespib-PEG-Alkyne (10) and [18F]PEG-N3 (11) with 37.3 ± 5.11% of radiochemical yield and 99.7 ± 0.09% of radiochemical purity. [18F]PTP-Ganetespib showed proper LogP (0.96 ± 0.06) and good stability in human serum over 97% for 2 h. [18F]PTP-Ganetespib showed high uptakes in breast cancer cells containing triple negative breast cancer (TNBC) MDA-MB-231 and Her2-negative MCF-7 cells, which are target breast cancer cell lines of HSP90 inhibitor, ganetespib, as an anticancer. Blocking of HSP90 by the pretreatment of ganetespib exhibited significantly decreased accumulation of [18F]PTP-Ganetespib in MDA-MB-231 and MCF-7 cells, indicating the specific binding of [18F]PTP-Ganetespib to MDA-MB-231 and MCF-7 cells with high HSP90 expression. In the biodistribution and microPET imaging studies, the initial uptake into tumor was weaker than in other thoracic and abdominal organs, but [18F]PTP-Ganetespib was retained relatively longer in the tumor than other organs. The uptake of [18F]PTP-Ganetespib in tumors was not sufficient for further development as a tumor-specific PET imaging agent by itself, but this preliminary PET imaging study of [18F]PTP-Ganetespib can be basis for developing new PET imaging agents based on HSP90 inhibitor, ganetespib.

Heat shock protein inhibitor and preparation method and application thereof

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Paragraph 0094; 0095; 0101; 0102; 0103, (2016/10/09)

The present invention discloses a heat shock protein inhibitor and a preparation method and an application thereof, and belongs to the technical field of medicinal chemistry. The heat shock protein inhibitor has the structure features of a formula I. The compound can inhibit activity of the heat shock protein 90, and then can be used for preparing anti-tumor drugs.

Phenyl 1, 2 - isoxazole or phenyl 1, 2 - pyrazole compound and use thereof (by machine translation)

-

, (2017/01/19)

The invention discloses the following formula of phenyl 1, 2 - different oxazole or 1, 2 - pyrazole compounds with use. Through the biological activity tests show that, the compound inhibiting heat shock protein 90 activity. Therefore, the invention phenyl 1, 2 - different oxazole or 1, 2 - pyrazole compounds can be used as a heat shock protein 90 inhibitor for the treatment of cancer. (by machine translation)

Synthesis and biological evaluation of 3,5-disubstituted-4-alkynylisoxozales as a novel class of HSP90 inhibitors

Sun, Jian,Lin, Cai,Qin, Xiaochu,Dong, Xiaoping,Tu, Zhengchao,Tang, Fei,Chen, Chaonan,Zhang, Jiancun

, p. 3129 - 3134 (2015/07/08)

Abstract A series of 3,5-disubstitute-4-alkynylisoxazole derivatives were designed and synthesized through palladium(II)-copper(I) catalyzed Sonogashira cross-coupling reaction of an alkynyl moiety and an isoxazole scaffold as novel HSP90 inhibitors. The resultant compounds displayed moderate to potent binding affinity to HSP90 proteins, and also demonstrated good cell growth inhibitory activity against various cancer cell lines (A549, K562, MCF-7, DU145 and Hela). Some compounds (18d, 18e, 19a, 19d, 20c and 20q) show similar or better binding affinity towards HSP90α and HSP90β comparing to NVP-AUY922. In addition, compounds 18e, 19a and 20q exhibited potent inhibitory activity against various human cancer cell lines.

Hybrids of the benzofuran core from natural products and the 2,4-dihydroxy-5-isopropylbenzene fragment as potent Hsp90 inhibitors: Design, synthesis and bioevaluation

Jia, Jian-Min,Liu, Fang,Xu, Xiao-Li,Guo, Xiao-Ke,Jiang, Fen,Huang, Hao-Zhe,Pan, Yang,Cherfaoui, Bahidja,Sun, Hao-Peng,You, Qi-Dong

, p. 495 - 502 (2014/10/15)

Several chemical fragments have been confirmed as highly efficient cores for the design of Hsp90 inhibitors. Molecular hybridization of potent fragments has been widely used as a rational drug discovery strategy. In this study, a novel class of hybrids of benzofuran, a privileged core from natural products, and 2,4-dihydroxy-5-isopropyl phenyl, an efficient fragment in Hsp90 inhibitors, were designed and synthesized. Subsequent evaluation confirmed they inhibited cell proliferation and regulated the level of client proteins through Hsp90 inhibition. Some of the hybrids can serve as leads to obtain novel chemotypes of Hsp90 inhibitors. The methods reported here may expand the range of known structural types accommodated by the ATP binding site of Hsp90.

Discovery of potent N-(isoxazol-5-yl)amides as HSP90 inhibitors

Chen, Danqi,Shen, Aijun,Li, Jian,Shi, Feng,Chen, Wuyan,Ren, Jing,Liu, Hongchun,Xu, Yechun,Wang, Xin,Yang, Xinying,Sun, Yiming,Yang, Min,He, Jianhua,Wang, Yueqin,Zhang, Liping,Huang, Min,Geng, Meiyu,Xiong, Bing,Shen, Jingkang

, p. 765 - 781 (2014/12/11)

HSP90 is ubiquitously overexpressed in a broad spectrum of human cancers and has been recognized as an attractive target for cancer treatment. Here, we described the fragment screening, synthesis and structure-activity relationship studies of small molecule inhibitors with 4,5-diarylisoxazole scaffold targeting HSP90. Among them, the compound N-(3-(2,4-dihydroxy-5-isopropylphenyl)-4-(4-((4-morpholinopiperidin-1-yl)methyl)phenyl)isoxazol-5-yl)cyclopropanecarboxamide (108) showed high affinity for binding to HSP90 (FP binding assay, IC50 Combining double low line 0.030 μM) and inhibited the proliferation of various human cancer cell lines with averaging GI50 about 88 nM. Compound 108 exhibited its functional inhibition of HSP90 by depleting key signaling pathways and concomitantly elevating of HSP70 and HSP27 in U-87MG cells. Further in vivo studies showed that compound 108 strongly suppressed the tumor growth of human glioblastoma xenograft model U-87MG with T/C Combining double low line 18.35% at 50 mg/kg q3w/2.5w. Moreover, compound 108 also exhibited good pharmacokinetic properties. Together, our study implicates that compound 108 is a promising candidate of HSP90 inhibitor and is currently advanced to preclinical study.

Synthesis and evaluation of new Hsp90 inhibitors based on a 1,4,5-trisubstituted 1,2,3-triazole scaffold

Taddei, Maurizio,Ferrini, Serena,Giannotti, Luca,Corsi, Massimo,Manetti, Fabrizio,Giannini, Giuseppe,Vesci, Loredana,Milazzo, Ferdinando M.,Alloatti, Domenico,Guglielmi, Mario B.,Castorina, Massimo,Cervoni, Maria L.,Barbarino, Marcella,Foderà, Rosanna,Carollo, Valeria,Pisano, Claudio,Armaroli, Silvia,Cabri, Walter

, p. 2258 - 2274 (2014/04/17)

Ruthenium catalyzed 1,3-cycloaddition (click chemistry) of an azido moiety installed on dihydroxycumene scaffold with differently substituted aryl propiolates gave a new family of 1,4,5-trisubstituted triazole carboxylic acid derivatives that showed high affinity toward Hsp90 associated with cell proliferation inhibition, both in nanomolar range. The 1,5 arrangement of the resorcinol, the aryl moieties, and the presence of an alkyl (secondary) amide in position 4 of the triazole ring were essential to get high activity. Docking simulations suggested that the triazoles penetrate the Hsp90 ATP binding site. Some 1,4,5-trisubstituted triazole carboxamides induced dramatic depletion of the examined client proteins and a very strong increase in the expression levels of the chaperone Hsp70. In vitro metabolic stability and in vivo preliminary studies on selected compounds have shown promising results comparable to the potent Hsp90 inhibitor NVP-AUY922. One of them, (compound 18, SST0287CL1) was selected for further investigation as the most promising drug candidate.

PHARMACEUTICAL COMPOUNDS

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Page/Page column 69; 70, (2010/06/22)

The invention provides a compound for use in medicine, the compound being a compound of the formula (VI0) or a salt, solvate, tautomer or N-oxide thereof: wherein the bicyclic group: is selected from the structures C1, C5 and C6: wherein n is 0, 1, 2 or 3; R1 is hydrogen, hydroxy, or O—Rz; R2a is hydroxy, methoxy or O—Rz; provided that at least one of R1 and R2a is O—Rz; Rz is Lp-Rp1; SO3H; a glucuronide residue; a mono-, di- or tripeptide residue; or Lp is a bond, C═O, (C═O)O, (C═O)NRp1 or S(O)xNRp1; x is 1 or 2; Rp1 is hydrogen or a an optionally substituted C1-25 hydrocarbyl group containing 0, 1 or 2 carbocyclic rings and 0, 1, 2, 3, 4, 5 or 6 carbon-carbon multiple bonds, provided that Rp1 is not hydrogen when Lp is a bond, C═O or (C═O)O; and provided also that O—Rz does not contain an O—O moiety; and excluding compounds wherein R1 is hydroxy and R2a is methoxy; Rp2 and Rp3 are the same or different and each is a group Rp1; and R3, R4a, R8 and R10 are defined in the claims. The compounds of formula (VI0) are pro-drugs of parent compounds wherein R1 and/or R2a are hydroxy, wherein the parent compounds have Hsp90 inhibiting activity.

HSP90 INHIBITORS CONTAINING A ZINC BINDING MOIETY

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Page/Page column 32; 41, (2009/04/24)

The present invention relates to HSP90 inhibitors containing a zinc binding moiety and their use in the treatment of cell proliferative diseases such as cancer. The said derivatives may further act as HDAC inhibitors.

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