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74447-34-0

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74447-34-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 74447-34-0 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 7,4,4,4 and 7 respectively; the second part has 2 digits, 3 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 74447-34:
(7*7)+(6*4)+(5*4)+(4*4)+(3*7)+(2*3)+(1*4)=140
140 % 10 = 0
So 74447-34-0 is a valid CAS Registry Number.

74447-34-0Downstream Products

74447-34-0Relevant articles and documents

HBED-NN: A Bifunctional Chelator for Constructing Radiopharmaceuticals

Makarem, Ata,Klika, Karel D.,Litau, German,Remde, Yvonne,Kopka, Klaus

, p. 7501 - 7508 (2019)

Radiometal-based radiopharmaceuticals bearing bifunctional HBED chelators are powerful radiotracers for cancer diagnosis and therapy. Bifunctional HBED chelators make strong complexes with trivalent gallium and are able to bind to bioactive molecules thro

Inhibition of acetylcholinesterase by coumarin-linked amino acids synthetized via triazole associated with molecule partition coefficient

De Sousa, Bianca L.,Leite, Jo?o P.V.,Mendes, Tiago A.O.,Varej?o, Eduardo V.V.,Chaves, Anna C.S.,da Silva, Júnio G.,Agrizzi, Ana P.,Ferreira, Priscila G.,Pilau, Eduardo J.,Silva, Evandro,dos Santos, Marcelo H.

, p. 652 - 664 (2021/02/16)

A previous study for the identification of acetylcholinesterase (AChE) inhibitors demonstrated that the hybrid between tyrosol, the 1,2,3-triazole nucleus, and the coumarin group, namely 7-({1-[2-(4-hydroxyphenyl)ethyl]-1H-1,2,3-triazol-4-yl}methoxy)-4-methyl-2H-chromen-2-one (10), has a high enzyme inhibitory activity. Here, we synthesized analogues of 10 via triazole with pharmacophoric groups represented by tyrosine, phenylalanine, tryptophan, and glycine in addition to evaluating the impact of coumarin-linked amino acids on AChE inhibition. We obtained eight triazoles, six of which are undescribed. In general, the presence of carboxylic acid decreased the inhibitory activity, while aromatic amino acids increased enzymatic inhibition compared to glycine. The derivative containing tyrosine, structurally most similar to 10, presented the lowest inhibition percentage, indicating that phenolic hydroxyl is not the preponderant factor for inhibition. Molecular docking was not enough to explain in vitro experiments. On the other hand, MlogP (logP calculated by the Moriguchi method) was related positively to enzymatic inhibition. To increase the hydrophobicity of the molecules, we tested the esterified triazole derivatives comparatively with the enzyme. The compound ethyl 2-(4-(((4-methyl-2-oxo-2H-chromen-7-yl)oxy)methyl)- 1H-1,2,3-triazol-1-yl)acetate (6) presented an increment of inhibitory activity of 46.97 ± 1.75% at 100 μmol L-1. We also associated the best activity with the lowest van der Waals volume and molar mass values.

CYCLIC COMPOUNDS AND METHODS OF MAKING AND USING

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Page/Page column 109; 111, (2020/10/19)

Disclosed are compounds and methods for highly effective chemoselective peptide cyclization and bicyclization directly on unprotected peptides and other compounds as well as the compounds produced by the methods, which have a novel structural motif. The fast reaction rate and operational simplicity render this method to be highly effective to synthesize cyclic structures, i.e. cyclic peptides. The cyclic compounds allow for various functionalities useful in chemical biology study and drug discovery.

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