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1-(phenylmethyl)-4-heptyl-1H-1,2,3-triazole is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

1334667-64-9

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1334667-64-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1334667-64-9 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,3,3,4,6,6 and 7 respectively; the second part has 2 digits, 6 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 1334667-64:
(9*1)+(8*3)+(7*3)+(6*4)+(5*6)+(4*6)+(3*7)+(2*6)+(1*4)=169
169 % 10 = 9
So 1334667-64-9 is a valid CAS Registry Number.

1334667-64-9Downstream Products

1334667-64-9Relevant academic research and scientific papers

Peptide-Directed Binding for the Discovery of Modulators of α-Helix-Mediated Protein–Protein Interactions: Proof-of-Concept Studies with the Apoptosis Regulator Mcl-1

Beekman, Andrew Michael,O'Connell, Maria Anne,Howell, Lesley Ann

, p. 10446 - 10450 (2017)

Targeting PPIs with small molecules can be challenging owing to large, hydrophobic binding surfaces. Herein, we describe a strategy that exploits selective α-helical PPIs, transferring these characteristics to small molecules. The proof of concept is demonstrated with the apoptosis regulator Mcl-1, commonly exploited by cancers to avoid cell death. Peptide-directed binding uses few synthetic transformations, requires the production of a small number of compounds, and generates a high percentage of hits. In this example, about 50 % of the small molecules prepared showed an IC50 value of less than 100 μm, and approximately 25 % had IC50 values below 1 μm to Mcl-1. Compounds show selectivity for Mcl-1 over other anti-apoptotic proteins, possess cytotoxicity to cancer cell lines, and induce hallmarks of apoptosis. This approach represents a novel and economic process for the rapid discovery of new α-helical PPI modulators.

Efficient multicomponent synthesis of 1,2,3-triazoles catalyzed by Cu(II) supported on PEI@Fe3O4 MNPs in a water/PEG300 system

Hasanpour, Zeinab,Maleki, Aziz,Hosseini, Morteza,Gorgannezhad, Lena,Nejadshafiee, Vajihe,Ramazani, Ali,Haririan, Ismaeil,Shafiee, Abbas,Khoobi, Mehdi

, p. 294 - 307 (2017/05/29)

A highly dispersible and magnetically recoverable Cu-PEI@Fe3O4 MNPs catalyst was prepared and success-fully applied in one-pot three-component coupling of terminal alkynes, sodium azide, and alkyl bromides/chlorides in water to give

Recyclable porous polymer-supported copper catalysts for Glaser and Huisgen 1,3-diolar cycloaddition reactions

Sun, Qi,Lv, Zhonfei,Du, Yuyang,Wu, Qinming,Wang, Liang,Zhu, Longfeng,Meng, Xiangju,Chen, Wanzhi,Xiao, Feng-Shou

, p. 2822 - 2827 (2013/11/19)

A family of polymer-attached phenanthrolines was prepared from solvothermal copolymerization of divinylbenzene with N-(1,10-phenanthroline-5-yl)acrylamide in different ratios. The polymer-supported copper catalysts were obtained through typical impregnation with copper(II) salts. The polymers and supported copper catalysts have been characterized by N2 adsortion, scanning electron microscopy (SEM), transmission electron microscopy (TEM), and thermogravimetric analysis (TG); they exhibit a high surface area, hierarchical porosity, large pore volume, and high thermal and chemical stabilities. The copper catalyst has proved to be highly active for Glaser homocoupling of alkynes and Huisgen 1,3-diolar cycloaddition of alkynes with benzyl azide under mild conditions at low catalyst loading. The heterogeneous copper catalyst is more active than commonly used homogeneous and nonporous polystyrene-supported copper catalysts. In particular, the catalyst is easily recovered and can be recycled at least ten times without any obvious loss in catalytic activity. Metal leaching was prevented due to the strong binding ability of phenanthroline and products were not contaminated with copper, as determined by ICP analysis. At the Copper, Coppercabana: Stable, porous polymer-attached phenanthrolines were successfully prepared from solvothermal copolymerization of divinylbenzene with N-(1,10-phenanthrolin-5-yl)acrylamide (PCP-Phen). After coordination with copper species, a heterogeneous copper catalyst was obtained that displayed a higher activity in Glaser and Huisgen couplings than commonly used homogeneous and nonporous polystyrene-supported copper catalysts. The copper catalyst has excellent recyclability due to the strong coordination ability of phenanthrolines. Copyright

Synthesis and structure-activity relationship of 1- and 2-substituted-1,2,3-triazole letrozole-based analogues as aromatase inhibitors

Doiron, Jeremie,Soultan, Al Haliffa,Richard, Ryan,Toure, Mamadou Mansour,Picot, Nadia,Richard, Remi,Cuperlovic-Culf, Miroslava,Robichaud, Gilles A.,Touaibia, Mohamed

experimental part, p. 4010 - 4024 (2011/10/30)

A series of bis- and mono-benzonitrile or phenyl analogues of letrozole 1, bearing (1,2,3 and 1,2,5)-triazole or imidazole, were synthesized and screened for their anti-aromatase activities. The unsubstituted 1,2,3-triazole 10a derivative displayed inhibitory activity comparable with that of the aromatase inhibitor, letrozole 1. Compound 10a, bearing a 1,2,3-triazole, is also 10000-times more tightly binding than the corresponding analogue 25 bearing a 1,2,5-triazole, which confirms the importance of a nitrogen atom at position 3 or 4 of the 5-membered ring needed for high activity. The effect on human epithelial adrenocortical carcinoma cell line (H295R) proliferation was also evaluated. The compound 10j (IC50 = 4.64 μM), a letrozole 1 analogue bearing para-cyanophenoxymethylene-1,2,3-triazole decreased proliferation rates of H295R cells by 76 and 99% in 24 and 72 h respectively. Computer calculations, using quantum ab initio structures, suggest a possible correlation between anti-aromatase activity and the distance between the nitrogen in position 3 or 4 of triazole nitrogen and the cyano group nitrogen.

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