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Cyclopropanecarboxylic acid, 2-(4-bromophenyl)-, (1R,2R) is a chiral cyclopropane carboxylic acid derivative with the molecular formula C11H11BrO2. It features a 2-(4-bromophenyl) substitution and exists in a specific chiral form designated as (1R,2R). This chemical compound is known for its unique reactivity and interaction in various chemical processes due to its (1R,2R) configuration.

31501-85-6

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31501-85-6 Usage

Uses

Used in Pharmaceutical Industry:
Cyclopropanecarboxylic acid, 2-(4-bromophenyl)-, (1R,2R) is used as a building block for the synthesis of various pharmaceuticals and organic compounds. Its unique chiral configuration and reactivity make it a valuable component in the development of new drugs and medicinal agents.
Used in Organic Chemistry:
In the field of organic chemistry, Cyclopropanecarboxylic acid, 2-(4-bromophenyl)-, (1R,2R) serves as a key intermediate in the synthesis of complex organic molecules. Its specific (1R,2R) configuration allows for selective reactions and the formation of desired products with high enantioselectivity and stereochemistry.
Used in Research and Development:
Cyclopropanecarboxylic acid, 2-(4-bromophenyl)-, (1R,2R) is utilized in research and development for studying the effects of chirality on chemical reactions and the development of novel synthetic methods. Its unique properties and reactivity provide valuable insights into the understanding of stereoselective reactions and the design of enantioselective catalysts.

Check Digit Verification of cas no

The CAS Registry Mumber 31501-85-6 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 3,1,5,0 and 1 respectively; the second part has 2 digits, 8 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 31501-85:
(7*3)+(6*1)+(5*5)+(4*0)+(3*1)+(2*8)+(1*5)=76
76 % 10 = 6
So 31501-85-6 is a valid CAS Registry Number.

31501-85-6SDS

SAFETY DATA SHEETS

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

Version: 1.0

Creation Date: Aug 15, 2017

Revision Date: Aug 15, 2017

1.Identification

1.1 GHS Product identifier

Product name (1R,2R)-2-(4-bromophenyl)cyclopropanecarboxylic acid

1.2 Other means of identification

Product number -
Other names (+-)-trans-2-(4-Brom-phenyl)-cyclopropancarbonsaeure

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:31501-85-6 SDS

31501-85-6Relevant academic research and scientific papers

NOVEL LYSOPHOSPHATIDIC ACID DERIVATIVE

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Paragraph 1046; 1049-1051, (2021/05/28)

PROBLEM TO BE SOLVED: To provide a compound that specifically activates an LPA4 receptor, and a pharmaceutical composition containing the same. SOLUTION: This invention relates to a novel lysophosphatidic acid derivative that has an agonistic action on an LPA4 receptor and is useful for the prevention and/or treatment of a disease with angiodysplasia caused by the LPA4 receptor, or a disease associated with angiopathy, or symptoms associated therewith. This invention also relates to a pharmaceutical composition containing the lysophosphatidic acid derivative. SELECTED DRAWING: None COPYRIGHT: (C)2021,JPOandINPIT

PD(II)-CATALYZED ENANTIOSELECTIVE C-H ARYLATION OF FREE CARBOXYLIC ACIDS

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Page/Page column 29-30; 31; 33-34, (2019/11/12)

The invention includes procedures for stereoselective β-arylation of carboxylic acids having a β-carbon atom. For example, stereoselective arylation procedures include the following reactions: (I)

Pd(II)-Catalyzed Enantioselective C(sp3)-H Arylation of Free Carboxylic Acids

Shen, Peng-Xiang,Hu, Liang,Shao, Qian,Hong, Kai,Yu, Jin-Quan

supporting information, p. 6545 - 6549 (2018/05/23)

A monoprotected aminoethyl amine chiral ligand based on an ethylenediamine backbone was developed to achieve Pd-catalyzed enantioselective C(sp3)-H arylation of cyclopropanecarboxylic and 2-aminoisobutyric acids without using exogenous directing groups. This new chiral catalyst affords new disconnection for preparing diverse chiral carboxylic acids from simple starting materials that are complementary to the various ring forming approaches.

Indazole-6-phenylcyclopropylcarboxylic Acids as Selective GPR120 Agonists with in Vivo Efficacy

McCoull, William,Bailey, Andrew,Barton, Peter,Birch, Alan M.,Brown, Alastair J. H.,Butler, Hayley S.,Boyd, Scott,Butlin, Roger J.,Chappell, Ben,Clarkson, Paul,Collins, Shelley,Davies, Robert M. D.,Ertan, Anne,Hammond, Clare D.,Holmes, Jane L.,Lenaghan, Carol,Midha, Anita,Morentin-Gutierrez, Pablo,Moore, Jane E.,Raubo, Piotr,Robb, Graeme

, p. 3187 - 3197 (2017/04/19)

GPR120 agonists have therapeutic potential for the treatment of diabetes, but few selective agonists have been reported. We identified an indazole-6-phenylcyclopropylcarboxylic acid series of GPR120 agonists and conducted SAR studies to optimize GPR120 potency. Furthermore, we identified a (S,S)-cyclopropylcarboxylic acid structural motif which gave selectivity against GPR40. Good oral exposure was obtained with some compounds displaying unexpected high CNS penetration. Increased MDCK efflux was utilized to identify compounds such as 33 with lower CNS penetration, and activity in oral glucose tolerance studies was demonstrated. Differential activity was observed in GPR120 null and wild-type mice indicating that this effect operates through a mechanism involving GPR120 agonism.

Synthesis and in vitro evaluation of novel N-cycloalkylcarbamates as potential cholinesterase inhibitors

Horáková, Eva,Drabina, Pavel,Br??ková, Lenka,?těpánková, ?árka,Vor?áková, Katarína,Sedlák, Milo?

, p. 2143 - 2153 (2017/09/25)

Abstract: This present paper describes the preparation and characterization of a series of O-substituted N-cycloalkylcarbamate derivatives. These compounds were tested as inhibitors of acetylcholinesterase (AChE) and butyrylcholinesterase (BChE). All studied carbamates exhibited moderate inhibitory activity of both cholinesterases with values of IC50 in the range of 36.1–78.6?μM for AChE and 9.8–215.4?μM for BChE, respectively. These values are comparable with those values of inhibition obtained with the established drug rivastigmine. The cytotoxicity of all carbamates was evaluated using standard in vitro test with Jurkat cells. Many of the studied carbamates can be considered as promising compounds for potential medicinal applications with regard to their inhibitory activity as well as negligible cytotoxicity.

Structure activity relationship and modeling studies of inhibitors of lysine specific demethylase 1

Zhou, Chao,Wu, Fangrui,Lu, Lianghao,Wei, Liping,Pai, Eric,Yao, Yuan,Song, Yongcheng

, (2017/02/15)

Post-translational modifications of histone play important roles in gene transcription. Aberrant methylation of histone lysine sidechains have been often found in cancer. Lysine specific demethylase 1 (LSD1), which can demethylate histone H3 lysine 4 (H3K4) and other proteins, has recently been found to be a drug target for acute myeloid leukemia. To understand structure activity/selectivity relationships of LSD1 inhibitors, several series of cyclopropylamine and related compounds were synthesized and tested for their activities against LSD1 and related monoamine oxidase (MAO) A and B. Several cyclopropylamine containing compounds were found to be highly potent and selective inhibitors of LSD1. A novel series cyclopropylimine compounds also exhibited strong inhibitory activity against LSD1.Structure activity relationships (SAR) of these compounds are discussed. Docking studies were performed to provide possible binding models of a representative compound in LSD1 and MAO-A. Moreover, these modeling studies can rationalize the observed SARs and selectivity.

Oxidative ring-opening of ferrocenylcyclopropylamines to N-ferrocenylmethyl β-hydroxyamides

Gee, Yi Sing,Goertz, Neils J. M.,Gardiner, Michael G.,Hyland, Christopher J. T.

, p. 2498 - 2503 (2016/03/01)

The in situ reduction of ferrocenyl cyclopropylimines to the corresponding amines triggers a facile oxidative ring-opening to yield the formal four-electron oxidation products: N-ferrocenylmethyl β-hydroxyamides. This process is believed to proceed via generation of a ferrocinium ion in the presence of air, leading to facile formation of a distonic radical cation that is ultimately trapped by oxygen.

(HETERO)ARYL CYCLOPROPYLAMINE COMPOUNDS AS LSD1 INHIBITORS

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, (2013/05/09)

The invention relates to (hetero)aryl cyclopropylamine compounds, including particularly the compounds of formula I as described and defined herein, and their use in therapy, including, e.g., in the treatment or prevention of cancer, a neurological disease or condition, or a viral infection.

(HETERO)ARYL CYCLOPROPYLAMINE COMPOUNDS AS LSD1 INHIBITORS

-

, (2013/05/09)

The invention relates to (hetero)aryl cyclopropylamine compounds, including particularly the compounds of formula (I) as described and defined herein, and their use in therapy, including, e.g., in the treatment or prevention of cancer, a neurological disease or condition, or a viral infection.

ARYLCYCLOPROPYLAMINE BASED DEMETHYLASE INHIBITORS OF LSD1 AND THEIR MEDICAL USE

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, (2012/02/13)

The invention relates to (hetero)aryl cyclopropylamine compounds, including particularly the compounds of formula (I) as described and defined herein, and their use in therapy, including, e.g., in the treatment or prevention of cancer, a neurological disease or condition, or a viral infection. Thus, in one specific aspect the invention relates to formulas (II), (III), (IV), (V), (VI), (VII), (VIII), (IX).

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