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1-Pyrrolidinecarboxylic acid, 3-(phenylmethoxy)-, 1,1-dimethylethyl ester, (3R)- is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

177947-67-0

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177947-67-0 Usage

Physical form

White crystalline solid

Use

Used in the synthesis of various pharmaceuticals and agrochemicals

Importance

An important intermediate in the production of organic compounds, known for its versatility in chemical reactions

Applications

Various applications in the fields of medicine, agriculture, and chemical research

Production

Used in the production of various chemical products in the chemical industry

Check Digit Verification of cas no

The CAS Registry Mumber 177947-67-0 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,7,7,9,4 and 7 respectively; the second part has 2 digits, 6 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 177947-67:
(8*1)+(7*7)+(6*7)+(5*9)+(4*4)+(3*7)+(2*6)+(1*7)=200
200 % 10 = 0
So 177947-67-0 is a valid CAS Registry Number.

177947-67-0SDS

SAFETY DATA SHEETS

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

Version: 1.0

Creation Date: Aug 12, 2017

Revision Date: Aug 12, 2017

1.Identification

1.1 GHS Product identifier

Product name (3R)-N-(tert-butyloxycarbonyl)-3-(benzyloxy)pyrrolidine

1.2 Other means of identification

Product number -
Other names (3R)-N-tert-Butyloxycarbonyl-3-benzyloxypyrrolidine

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:177947-67-0 SDS

177947-67-0Relevant academic research and scientific papers

A fang chanfu law compound and its preparation method, pharmaceutical composition and use thereof

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Paragraph 0022; 0023; 0024; 0029; 0030, (2018/03/02)

The invention relates to a new compound for conversion of auricular fibrillation, as shown in the general formula i in the specification (n in the formula is equal to 0 to 4), or pharmaceutically acceptable salt thereof. The invention also provides a novel compound used as a preventive medicine or therapeutic drug for atrial fibrillation, a preparation method and a pharmaceutical composition containing the compound.

NOVEL BETULINIC SUBSTITUTED AMIDE DERIVATIVES AS HIV INHIBITORS

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Page/Page column 41, (2017/02/24)

The present invention relates to novel betulinic substituted amide compounds of formula (I); and pharmaceutically acceptable salts thereof, wherein R1, R2, R3, R4, R5, R6, R7, R8, X, Y, Z1, Z2, Z3 and are Formula (II) as defined herein. The invention novel betulinic substituted amide derivatives, related compounds, and pharmaceutical compositions useful for the therapeutic treatment of viral diseases and particularly HIV mediated diseases.

Anti-infective compounds

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Page/Page column 28, (2011/08/04)

The present invention relates to small molecule compounds and their use in the treatment of bacterial infections, in particular Tuberculosis.

PROCESS FOR PRODUCTION OF ARALKYLOXYPYRROLIDINE DERIVATIVE

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Page/Page column 20, (2008/12/07)

The present invention provides a process for producing a 3-aralkyloxypyrrolidine derivative which is important for production of pharmaceutical products and the like. In the present invention, a N-protected-3-hydroxypyrrolidine is converted into a N-protected-3-aralkyloxypyrrolidine by allowing an aralkyl halide to act in the presence of a base and at least one of a metal halide and a phase-transfer catalyst followed by deprotecting a N-protecting group to convert it to a 3-aralkyloxypyrrolidine derivative and subsequently treating the derivative in a solvent containing a polar solvent, thereby obtaining the 3-aralkyloxypyrrolidine derivative as a crystal. According to the present invention, a 3-aralkyloxypyrrolidine derivative of high purity can be produced conveniently and efficiently on an industrial scale.

PROCESS FOR PRODUCTION OF BENZYLOXYPYRROLIDINE DERIVATIVE, AND PROCESS FOR PRODUCTION OF HYDROCHLORIDE SALT POWDER OF OPTICALLY ACTIVE BENZYLOXYPYRROLIDINE DERIVATIVE

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Page/Page column 14-15, (2008/12/07)

Provided are: a process for production of a benzyloxypyrrolidine derivative in high yield and safety, and a process for production of a hydrochloride powder of a benzyloxypyrrolidine derivative in high yield and safety; the process for production of a benzyloxypyrrolidine derivative expressed by the general formula (2) [Chemical formula 2], in reacting a pyrrolidinol derivative represented by the general formula (1) [Chemical formula 1 with a benzyl halide derivative in the presence of an alkali metal hydroxide, wherein the reaction is carried out in either of the following conditions A or B; condition A: an aprotic polar solvent, and condition B: an aliphatic ether solvent containing a phase transfer catalyst:

CARBOXAMIDE DERIVATIVES AS MUSCARINIC RECEPTOR ANTAGONISTS

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Page/Page column 42-43, (2008/06/13)

The invention relates to compounds of Formula (I) processes and intermediates for their preparation, their use as muscarinic antagonists and pharmaceutical composition containing them.

MERGED ION CHANNEL MODULATING COMPOUNDS AND USES THEREOF

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Page/Page column 66, (2008/06/13)

Merged compounds of ion channel modulating compounds, including, for example, merged compounds of the ion channel modulating compound of the following formula: (I) are described herein, as well as methods of making and using such merged compounds and pharmaceutical compositions containing such merged compounds.

Synthesis and serotonergic activity of 3-[2-(pyrrolidin-1- yl)ethyl]indoles: Potent agonists for the h5-HT(1D) receptor with high selectivity over the h5-HT(1B) receptor

Sternfeld, Francine,Guiblin, Alexander R.,Jelley, Richard A.,Matassa, Victor G.,Reeve, Austin J.,Hunt, Peter A.,Beer, Margaret S.,Heald, Anne,Stanton, Josephine A.,Sohal, Bindi,Watt, Alan P.,Street, Leslie J.

, p. 677 - 690 (2007/10/03)

The design, synthesis, and biological evaluation of a novel series of 3- [2-(pyrrolidin-1-yl)ethyl]-indoles with excellent selectivity for h5-HT(1D) (formerly 5-HT(1Dα)) receptors over h5-HT(1B) (formerly 5-HT(1Dβ)) receptors are described. Clinically effective antimigraine drugs such as Sumatriptan show little selectivity between h5-HT(1D) and h5-HT(1B) receptors. The differential expression of h5-HT(1D) and h5-HT(1B) receptors in neural and vascular tissue prompted an investigation of whether a compound selective for the h5-HT(1D) subtype would have the same clinical efficacy but with reduced side effects. The pyrrolidine 3b was initially identified as having 9-fold selectivity for h5-HT(1D) over h5-HT(1B) receptors. Substitution of the pyrrolidine ring of 3b with methylbenzylamine groups gave compounds with nanomolar affinity for the h5-HT(1D) receptor and 100-fold selectivity with respect to h5-HT(1B) receptors. Modification of the indole 5-substituent led to the oxazolidinones 24a,b with up to 163-fold selectivity for the h5-HT(1D) subtype and improved selectivity over other serotonin receptors. The compounds were shown to be full agonists by measurement of agonist-induced [35S]GTPγS binding in CHO cells expressed with h5-HT receptors. This study suggests that the h5-HT(1D) and h5-HT(1B) receptors can be differentiated by appropriate substitution of the ligand in the region which binds to the aspartate residue and reveals a large binding pocket in the h5-HT(1D) receptor domain which is absent for the h5-HT(1B) receptor. The compounds described herein will be important tools to delineate the role of h5-HT(1D) receptors in migraine.

Azetidine, pyrrolidine and piperidine derivatives

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, (2008/06/13)

A class of substituted azetidine, pyrrolidine and piperidine derivatives are selective agonists of 5-HT1 -like receptors, being potent agonists of the human 5-HT1Dα receptor subtype whilst possessing at least a 10-fold selective affinity for the 5-HT1Dα receptor subtype relative to the 5-HT1Dβ subtype; they are therefore useful in the treatment and/or prevention of clinical conditions, in particular migraine and associated disorders, for which a subtype-selective agonist of 5-HT1D receptors is indicated, whilst eliciting fewer side-effects, notably adverse cardiovascular events, than those associated with non-subtype-selective 5-HT1D receptor agonists.

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