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Ethyl 2-(4-nitrophenyl)-3-(trifluoromethyl)pyrazole-4-carboxylate is a chemical compound characterized by the molecular formula C13H10F3N3O4. It is a versatile organic molecule known for its unique structure and reactivity, which makes it a valuable component in the field of organic chemistry. ethyl 2-(4-nitrophenyl)-3-(trifluoromethyl)pyrazole-4-carboxylate is recognized for its diverse biological activities and potential applications in the pharmaceutical industry, where it is often utilized as a pharmaceutical intermediate or in the development of new drugs.

175137-35-6

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175137-35-6 Usage

Uses

Used in Pharmaceutical Industry:
Ethyl 2-(4-nitrophenyl)-3-(trifluoromethyl)pyrazole-4-carboxylate is used as a pharmaceutical intermediate for the synthesis of various drugs. Its unique structure and reactivity contribute to the development of new and innovative pharmaceuticals, enhancing the range of treatments available for various medical conditions.
Used in Organic Chemistry Research:
In the realm of organic chemistry, ethyl 2-(4-nitrophenyl)-3-(trifluoromethyl)pyrazole-4-carboxylate serves as a building block in the synthesis of other organic compounds. Its distinct properties allow for the creation of a wide array of chemical entities, expanding the horizons of organic synthesis and contributing to the discovery of new chemical reactions and methodologies.
Used in Drug Development:
Ethyl 2-(4-nitrophenyl)-3-(trifluoromethyl)pyrazole-4-carboxylate is employed in drug development for its potential to be incorporated into new therapeutic agents. Its diverse biological activities make it a promising candidate for the treatment of various diseases and conditions, offering a broad scope for pharmaceutical innovation.

Check Digit Verification of cas no

The CAS Registry Mumber 175137-35-6 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,7,5,1,3 and 7 respectively; the second part has 2 digits, 3 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 175137-35:
(8*1)+(7*7)+(6*5)+(5*1)+(4*3)+(3*7)+(2*3)+(1*5)=136
136 % 10 = 6
So 175137-35-6 is a valid CAS Registry Number.
InChI:InChI=1/C11H5ClF3N3O3/c12-10(19)8-5-16-17(9(8)11(13,14)15)6-1-3-7(4-2-6)18(20)21/h1-5H

175137-35-6 Well-known Company Product Price

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  • Alfa Aesar

  • (H27506)  Ethyl 1-(4-nitrophenyl)-5-(trifluoromethyl)-1H-pyrazole-4-carboxylate, 97%   

  • 175137-35-6

  • 1g

  • 384.0CNY

  • Detail
  • Alfa Aesar

  • (H27506)  Ethyl 1-(4-nitrophenyl)-5-(trifluoromethyl)-1H-pyrazole-4-carboxylate, 97%   

  • 175137-35-6

  • 5g

  • 1333.0CNY

  • Detail
  • Aldrich

  • (659355)  Ethyl1-(4-nitrophenyl)-5-(trifluoromethyl)-1H-pyrazole-4-carboxylate  97%

  • 175137-35-6

  • 659355-1G

  • 365.04CNY

  • Detail
  • Aldrich

  • (659355)  Ethyl1-(4-nitrophenyl)-5-(trifluoromethyl)-1H-pyrazole-4-carboxylate  97%

  • 175137-35-6

  • 659355-5G

  • 1,267.11CNY

  • Detail

175137-35-6SDS

SAFETY DATA SHEETS

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

Version: 1.0

Creation Date: Aug 19, 2017

Revision Date: Aug 19, 2017

1.Identification

1.1 GHS Product identifier

Product name Ethyl 1-(4-nitrophenyl)-5-(trifluoromethyl)-1H-pyrazole-4-carboxylate

1.2 Other means of identification

Product number -
Other names ETHYL 2-(4-NITROPHENYL)-3-(TRIFLUOROMETHYL)PYRAZOLE-4-CARBOXYLATE

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:175137-35-6 SDS

175137-35-6Relevant academic research and scientific papers

1,2,4-Oxadiazole-Bearing Pyrazoles as Metabolically Stable Modulators of Store-Operated Calcium Entry

Aprile, Silvio,Riva, Beatrice,Bhela, Irene Preet,Cordero-Sanchez, Celia,Avino, Giulia,Genazzani, Armando A.,Serafini, Marta,Pirali, Tracey

, p. 640 - 646 (2021)

Store-operated calcium entry (SOCE) is a pivotal mechanism in calcium homeostasis, and, despite still being under investigation, its dysregulation is known to be associated with severe human disorders. SOCE modulators are therefore needed both as chemical probes and as therapeutic agents. While many small molecules have been described so far, their poor properties in terms of drug-likeness have limited their translation into the clinical practice. In this work, we describe the bioisosteric replacement of the ester moiety in pyrazole derivatives with a 1,2,4-oxadiazole ring as a means to afford a class of modulators with high metabolic stability. Moreover, among our derivatives, a compound able to increase the calcium entry was identified, further enriching the library of available SOCE activators.

Discovery of a Highly Selective and Potent TRPC3 Inhibitor with High Metabolic Stability and Low Toxicity

Zhang, Sicheng,Romero, Luis O.,Deng, Shanshan,Wang, Jiaxing,Li, Yong,Yang, Lei,Hamilton, David J.,Miller, Duane D.,Liao, Francesca-Fang,Cordero-Morales, Julio F.,Wu, Zhongzhi,Li, Wei

supporting information, p. 572 - 578 (2021/04/07)

The overactivation of transient receptor potential canonical 3 (TRPC3) is associated with neurodegenerative diseases and hypertension. Pyrazole 3 (Pyr3) is reported as the most selective TRPC3 inhibitor, but it has two inherent structural limitations: (1) the labile ester moiety leads to its rapid hydrolysis to the inactive Pyr8 in vivo, and (2) the alkylating trichloroacrylic amide moiety is known to be toxic. To circumvent these limitations, we designed a series of conformationally restricted Pyr3 analogues and reported that compound 20 maintains high potency and selectivity for human TRPC3 over its closely related TRP channels. It has significantly improved metabolic stability compared with Pyr3 and has a good safety profile. Preliminary evaluation of 20 demonstrated its ability to rescue Aβ-induced neuron damage with similar potency to that of Pyr3 in vitro. Collectively, these results suggest that 20 represents a promising scaffold to potentially ameliorate the symptoms associated with TRPC3-mediated neurological and cardiovascular disorders.

Pyrtriazoles, a Novel Class of Store-Operated Calcium Entry Modulators: Discovery, Biological Profiling, and in Vivo Proof-of-Concept Efficacy in Acute Pancreatitis

Riva, Beatrice,Griglio, Alessia,Serafini, Marta,Cordero-Sanchez, Celia,Aprile, Silvio,Di Paola, Rosanna,Gugliandolo, Enrico,Alansary, Dalia,Biocotino, Isabella,Lim, Dmitry,Grosa, Giorgio,Galli, Ubaldina,Niemeyer, Barbara,Sorba, Giovanni,Canonico, Pier Luigi,Cuzzocrea, Salvatore,Genazzani, Armando A.,Pirali, Tracey

, p. 9756 - 9783 (2018/11/23)

In recent years, channels that mediate store-operated calcium entry (SOCE, i.e., the ability of cells to sense a decrease in endoplasmic reticulum luminal calcium and induce calcium entry across the plasma membrane) have been associated with a number of d

MODULATORS OF SOCE, COMPOSITIONS, AND USES THEREOF

-

Page/Page column 39, (2018/01/19)

Compounds of Formula (I) able to modulate Store Operated Calcium Entry (SOCE). The disclosure also relates to the use of compounds of formula (I) for treatment of pathological conditions in which SOCE modulation might be beneficial, such as neglecting dis

Biomass-Derived Catalysts for Selective Hydrogenation of Nitroarenes

Sahoo, Basudev,Formenti, Dario,Topf, Christoph,Bachmann, Stephan,Scalone, Michelangelo,Junge, Kathrin,Beller, Matthias

, p. 3035 - 3039 (2017/08/18)

Development of catalytically active materials from biowaste represents an important aspect of sustainable chemical research. Three heterogeneous materials were synthesized from inexpensive biomass-based chitosan and abundant Co(OAc)2 using complexation followed by pyrolysis at various temperatures. These materials were applied in the catalytic hydrogenation of nitroarenes using molecular hydrogen. A variety of diversely functionalized nitroarenes including some pharmaceutically active compounds were converted into aromatic amines in high yields, with high selectivity, and with excellent functional group tolerance. This green protocol has also been implemented for the synthesis of a biologically important TRPC3 inhibitor.

Microwave-assisted and continuous flow multistep synthesis of 4-(pyrazol-1-yl)carboxanilides

Obermayer, David,Glasnov, Toma N.,Kappe, C. Oliver

experimental part, p. 6657 - 6669 (2011/10/18)

A series of 4-(pyrazol-1-yl)carboxanilides active as inhibitors of canonical transient receptor potential channels were synthesized in an efficient three-step protocol using controlled microwave heating. The general synthetic strategy involves condensation of 4-nitrophenylhydrazine with appropriate 1,3-dicarbonyl building blocks, followed by reduction of the nitro group to the amine, which is then amidated with carboxylic acids. Compared to the conventional protocol a dramatic reduction in overall processing time from ~2 days to a few minutes was achieved, accompanied by significantly improved product yields. In addition, the first two steps in the synthetic pathway were also performed under continuous flow conditions providing similar isolated product yields. As an alternative to the three-step protocol, a novel two-step route to the desired 4-(pyrazol-1-yl)carboxanilides was devised involving condensation of 4-bromophenylhydrazine with appropriate 1,3-dicarbonyl building blocks, followed by Pd-catalyzed Buchwald-Hartwig amidation with carboxylic acid amides.

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