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2-(4-FORMYL-2-METHOXY-PHENOXY)-N-(2-METHOXY-PHENYL)-ACETAMIDE is a chemical compound with the molecular formula C19H19NO5. It is a derivative of acetamide, featuring a benzene ring with a formyl and methoxy group, and a phenol group with an acetamide group attached. This unique structure indicates potential applications in various fields, including organic synthesis, pharmaceuticals, and as an intermediate in compound production.

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  • 247592-82-1 Structure
  • Basic information

    1. Product Name: 2-(4-FORMYL-2-METHOXY-PHENOXY)-N-(2-METHOXY-PHENYL)-ACETAMIDE
    2. Synonyms: ART-CHEM-BB B004529;AURORA 14705;2-(4-FORMYL-2-METHOXYPHENOXY) ACETIC ACID, N-(2-METHOXYPHENYL)AMIDE;2-(4-FORMYL-2-METHOXY-PHENOXY)-N-(2-METHOXY-PHENYL)-ACETAMIDE;AKOS B004529;OTAVA-BB BB7116565615;TIMTEC-BB SBB004775
    3. CAS NO:247592-82-1
    4. Molecular Formula: C17H17NO5
    5. Molecular Weight: 315.32
    6. EINECS: N/A
    7. Product Categories: N/A
    8. Mol File: 247592-82-1.mol
  • Chemical Properties

    1. Melting Point: N/A
    2. Boiling Point: 535.0±45.0 °C(Predicted)
    3. Flash Point: N/A
    4. Appearance: /
    5. Density: 1.258±0.06 g/cm3(Predicted)
    6. Refractive Index: N/A
    7. Storage Temp.: N/A
    8. Solubility: N/A
    9. PKA: 12.62±0.70(Predicted)
    10. CAS DataBase Reference: 2-(4-FORMYL-2-METHOXY-PHENOXY)-N-(2-METHOXY-PHENYL)-ACETAMIDE(CAS DataBase Reference)
    11. NIST Chemistry Reference: 2-(4-FORMYL-2-METHOXY-PHENOXY)-N-(2-METHOXY-PHENYL)-ACETAMIDE(247592-82-1)
    12. EPA Substance Registry System: 2-(4-FORMYL-2-METHOXY-PHENOXY)-N-(2-METHOXY-PHENYL)-ACETAMIDE(247592-82-1)
  • Safety Data

    1. Hazard Codes: Xi
    2. Statements: N/A
    3. Safety Statements: N/A
    4. WGK Germany:
    5. RTECS:
    6. HazardClass: IRRITANT
    7. PackingGroup: N/A
    8. Hazardous Substances Data: 247592-82-1(Hazardous Substances Data)

247592-82-1 Usage

Uses

Used in Organic Synthesis:
2-(4-FORMYL-2-METHOXY-PHENOXY)-N-(2-METHOXY-PHENYL)-ACETAMIDE is used as a building block in organic synthesis for the creation of more complex molecules. Its versatile structure allows for further chemical reactions and modifications, making it a valuable component in the synthesis of various organic compounds.
Used in Pharmaceutical Industry:
In the pharmaceutical industry, 2-(4-FORMYL-2-METHOXY-PHENOXY)-N-(2-METHOXY-PHENYL)-ACETAMIDE is used as a potential active pharmaceutical ingredient (API) or as an intermediate in the development of new drugs. Its specific chemical properties may contribute to the treatment or management of certain medical conditions, pending further research and clinical trials.
Used as a Research Compound:
2-(4-FORMYL-2-METHOXY-PHENOXY)-N-(2-METHOXY-PHENYL)-ACETAMIDE is utilized in research laboratories for studying its chemical properties, reactivity, and potential interactions with other molecules. This research can lead to a better understanding of its applications and help in the development of new compounds or materials.

Check Digit Verification of cas no

The CAS Registry Mumber 247592-82-1 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 2,4,7,5,9 and 2 respectively; the second part has 2 digits, 8 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 247592-82:
(8*2)+(7*4)+(6*7)+(5*5)+(4*9)+(3*2)+(2*8)+(1*2)=171
171 % 10 = 1
So 247592-82-1 is a valid CAS Registry Number.

247592-82-1Downstream Products

247592-82-1Relevant articles and documents

Cink4T, a quinazolinone-based dual inhibitor of Cdk4 and tubulin polymerization, identified via ligand-based virtual screening, for efficient anticancer therapy

Sonawane, Vinay,Mohd Siddique, Mohd Usman,Jadav, Surender Singh,Sinha, Barij Nayan,Jayaprakash, Venkatesan,Chaudhuri, Bhabatosh

, p. 115 - 132 (2019/01/23)

Inhibition of cyclin dependent kinase 4 (Cdk4) prevents cancer cells from entering the early G0/G1 phase of the cell division cycle whereas inhibiting tubulin polymerization blocks cancer cells’ ability to undergo mitosis (M) late in the cell cycle. We had reported earlier that two non-planar and relatively non-toxic fascaplysin derivatives, an indole and a tryptoline, inhibit Cdk4 with IC50 values of 6.2 and 10 μM, respectively. Serendipitously, we had also found that they inhibited tubulin polymerization. The molecules were efficacious in mouse tumor models. We have now identified Cink4T in a 59-compound quinazolinone library, designed on the basis of ligand-based virtual screening, as a compound that inhibits Cdk4 and tubulin. Its IC50 value for Cdk4 inhibition is 0.47 μM and >50 μM for inhibition of Cdk1, Cdk2, Cdk6, Cdk9. Cink4T inhibits tubulin polymerization with an IC50 of 0.6 μM. Molecular modelling studies on Cink4T with Cdk4 and tubulin crystal structures lend support to these observations. Cancer cell cycle analyses confirm that Cink4T blocks cells at both G0/G1 and M phases as it should if it were to inhibit both Cdk4 and tubulin polymerization. Our results show, for the very first time, that virtual screening can be used to design novel inhibitors that can potently block two crucial phases of the cell division cycle.

CYP enzymes, expressed within live human suspension cells, are superior to widely-used microsomal enzymes in identifying potent CYP1A1/CYP1B1 inhibitors: Identification of quinazolinones as CYP1A1/CYP1B1 inhibitors that efficiently reverse B[a]P toxicity and cisplatin resistance

Sonawane, Vinay R.,Siddique, Mohd Usman Mohd,Gatchie, Linda,Williams, Ibidapo S.,Bharate, Sandip B.,Jayaprakash, Venkatesan,Sinha, Barij N.,Chaudhuri, Bhabatosh

, p. 177 - 194 (2019/02/27)

Microsomal cytochrome P450 (CYP) enzymes, isolated from recombinant bacterial/insect/yeast cells, are extensively used for drug metabolism studies. However, they may not always portray how a developmental drug would behave in human cells with intact intracellular transport mechanisms. This study emphasizes the usefulness of human HEK293 kidney cells, grown in ‘suspension’ for expression of CYPs, in finding potent CYP1A1/CYP1B1 inhibitors, as possible anticancer agents. With live cell-based assays, quinazolinones 9i/9b were found to be selective CYP1A1/CYP1B1 inhibitors with IC50 values of 30/21 nM, and > 150-fold selectivity over CYP2/3 enzymes, whereas they were far less active using commercially-available CYP1A1/CYP1B1 microsomal enzymes (IC50, >10/1.3–1.7 μM). Compound 9i prevented CYP1A1-mediated benzo[a]pyrene-toxicity in normal fibroblasts whereas 9b completely reversed cisplatin resistance in PC-3/prostate, COR-L23/lung, MIAPaCa-2/pancreatic and LS174T/colon cancer cells, underlining the human-cell-assays’ potential. Our results indicate that the most potent CYP1A1/CYP1B1 inhibitors would not have been identified if one had relied merely on microsomal enzymes.

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