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Phosphonic acid, 2-propenyl-, monophenyl ester is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

620969-84-8

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620969-84-8 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 620969-84-8 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 6,2,0,9,6 and 9 respectively; the second part has 2 digits, 8 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 620969-84:
(8*6)+(7*2)+(6*0)+(5*9)+(4*6)+(3*9)+(2*8)+(1*4)=178
178 % 10 = 8
So 620969-84-8 is a valid CAS Registry Number.

620969-84-8Relevant academic research and scientific papers

Highly convergent synthesis and antiviral activity of (E)-but-2-enyl nucleoside phosphonoamidates

Bessières, Maxime,Hervin, Vincent,Roy, Vincent,Chartier, Agnès,Snoeck, Robert,Andrei, Graciela,Lohier, Jean-Fran?ois,Agrofoglio, Luigi A.

, p. 678 - 686 (2018)

Several hitherto unknown (E)-but-2-enyl nucleoside phosphonoamidate analogs (ANPs) were prepared directed with nitrogen reagents by cross-metathesis in water-under ultrasound irradiation. Two diastereoisomers were formally identified by X-ray diffraction. These compounds were evaluated against a large spectrum of DNA and RNA viruses. Among them, the phosphonoamidate thymine analogue 19 emerged as the best prodrug against varicella-zoster virus (VZV) with EC50 values of 0.33 and 0.39 μM for wild-type and thymidine kinase deficient strains, respectively, and a selectivity index ≥200 μM. This breakthrough approach paves the way for new purine and pyrimidine (E)-but-2-enyl phosphonoamidate analogs.

NEW ANTIVIRAL ACYCLONUCLEOSIDE ANALOGUES

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Page/Page column 36, (2019/11/12)

The present invention concerns a compound having the following formula (I): as well as its use as a medicament, especially for its use for treating viral infections.

Flame-retardant aconitic acid-derived small molecules

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Page/Page column 2, (2019/05/18)

A flame-retardant aconitic acid-derived small molecule, a process for forming a flame-retardant polymer, and an article of manufacture comprising a material that contains a flame-retardant aconitic acid-derived small molecule are disclosed. The flame-retardant aconitic acid-derived small molecule can be synthesized from aconitic acid obtained from a bio-based source, and can have at least one phosphoryl or phosphonyl moiety with phenyl, allyl, or thioether substituents. The process for forming the flame-retardant polymer can include reacting an aconitic acid derivative with a flame-retardant phosphorus-based molecule to form a flame-retardant aconitic acid-derived small molecule, and combining the flame-retardant aconitic acid-derived small molecule with a polymer. The material in the article of manufacture can be a resin, adhesive, polymer, etc.

FLAME-RETARDANT VANILLIN-DERIVED SMALL MOLECULES

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Paragraph 0008, (2018/11/24)

A flame-retardant vanillin-derived small molecule, a process for forming a flame-retardant polymer, and an article of manufacture comprising a material that contains the flame-retardant vanillin-derived small molecule are disclosed. The flame-retardant vanillin-derived small molecule can be synthesized from vanillin obtained from a bio-based source, and can have at least one phosphoryl or phosphonyl moiety with phenyl, allyl, or thioether substituents. The process for forming the flame-retardant polymer can include reacting a diol vanillin derivative and a flame-retardant phosphorus-based molecule to form the flame-retardant vanillin-derived small molecule, and binding the flame-retardant vanillin-derived small molecule to a polymer. The material in the article of manufacture can be flame-retardant, and contain the flame-retardant vanillin-derived small molecules. Examples of materials that can be in the article of manufacture can include resins, plastics, adhesives, polymers, etc.

BONDABLE FLAME-RETARDANT VANILLIN-DERIVED MOLECULES

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Paragraph 0038, (2018/11/26)

A flame-retardant vanillin-derived molecule, a process for forming a flame-retardant resin, and an article of manufacture comprising a material that contains the flame-retardant vanillin-derived molecule are disclosed. The flame-retardant vanillin-derived molecule can be synthesized from vanillin obtained from a bio-based source, and can have at least one phosphoryl or phosphonyl moiety with phenyl, allyl, epoxide, propylene carbonate, or thioether substituents. The process for forming the flame-retardant resin can include reacting a vanillin derivative and a flame-retardant phosphorus-based molecule to form the flame-retardant vanillin-derived molecule, and binding the flame-retardant vanillin-derived molecule to a resin. The flame-retardant vanillin-derived molecules can also be bound to polymers. The material in the article of manufacture can be flame-retardant, and contain the flame-retardant vanillin-derived molecules. Examples of materials that can be in the article of manufacture can include resins, plastics, adhesives, polymers, etc.

PHOSPHONATE ANALOGS OF HIV INTEGRASE INHIBITOR COMPOUNDS

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Page/Page column 487, (2010/02/15)

Novel HIV integrase inhibitor compounds having at least one phosphonate group, protected intermediates thereof, and methods for inhibition of HIV-integrase are disclosed.

Method and compositions for identifying anti-HIV therapeutic compounds

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, (2008/06/13)

Methods are provided for identifying anti-HIV therapeutic compounds substituted with carboxyl ester or phosphonate ester groups. Libraries of such compounds are screened optionally using the novel enzyme GS-7340 Ester Hydrolase. Compositions and methods relating to GS-7340 Ester Hydrolase also are provided.

Method and compositions for identifying anti-HIV therapeutic compounds

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, (2008/06/13)

Methods are provided for identifying anti-HIV therapeutic compounds substituted with carboxyl ester or phosphonate ester groups. Libraries of such compounds are screened optionally using the novel enzyme GS-7340 Ester Hydrolase. Compositions and methods relating to GS-7340 Ester Hydrolase also are provided.

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