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201851-10-7

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201851-10-7 Usage

Description

(1S,2S)-((1R,2S,5R)-2-isopropyl-5-methylcyclohexyl) 2-(2-(9H-xanthen-9-yl)acetyl)cyclopropanecarboxylate is a complex organic molecule characterized by its multi-part structure, including a cyclopropane ring, an isopropyl group, and a xanthene group. (1S,2S)-((1R,2S,5R)-2-isopropyl-5-methylcyclohexyl) 2-(2-(9H-xanthen-9-yl)acetyl)cyclopropanecarboxylate exhibits stereochemistry around the cyclohexyl and cyclopropane rings, and the presence of carboxylate and acetyl functional groups suggests potential reactivity and applications in various fields. The xanthene group indicates that this compound may possess fluorescence properties, adding to its unique and intricate structure.

Uses

Used in Pharmaceutical Industry:
(1S,2S)-((1R,2S,5R)-2-isopropyl-5-methylcyclohexyl) 2-(2-(9H-xanthen-9-yl)acetyl)cyclopropanecarboxylate is used as a pharmaceutical candidate for its potential medicinal properties. (1S,2S)-((1R,2S,5R)-2-isopropyl-5-methylcyclohexyl) 2-(2-(9H-xanthen-9-yl)acetyl)cyclopropanecarboxylate's unique structure and functional groups may offer novel therapeutic applications, such as targeting specific biological pathways or interacting with cellular components.
Used in Chemical Research:
In the field of chemical research, this compound serves as a subject of study for understanding its reactivity, stability, and potential applications in the synthesis of other complex organic molecules. The presence of various functional groups and stereochemistry provides opportunities for exploring new chemical reactions and mechanisms.
Used in Material Science:
(1S,2S)-((1R,2S,5R)-2-isopropyl-5-methylcyclohexyl) 2-(2-(9H-xanthen-9-yl)acetyl)cyclopropanecarboxylate is used in material science for its potential to contribute to the development of new materials with unique properties. (1S,2S)-((1R,2S,5R)-2-isopropyl-5-methylcyclohexyl) 2-(2-(9H-xanthen-9-yl)acetyl)cyclopropanecarboxylate's fluorescence properties, for example, could be harnessed in the creation of advanced optical materials or sensors.
Used in Analytical Chemistry:
In analytical chemistry, this compound can be employed as a reference material or a component in the development of new analytical methods. Its complex structure and potential reactivity make it a valuable tool for testing and refining techniques in chemical analysis and detection.
Overall, (1S,2S)-((1R,2S,5R)-2-isopropyl-5-methylcyclohexyl) 2-(2-(9H-xanthen-9-yl)acetyl)cyclopropanecarboxylate is a versatile and intriguing compound with a wide range of potential applications across various industries, from pharmaceuticals to material science, due to its unique structure and properties.

Check Digit Verification of cas no

The CAS Registry Mumber 201851-10-7 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 2,0,1,8,5 and 1 respectively; the second part has 2 digits, 1 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 201851-10:
(8*2)+(7*0)+(6*1)+(5*8)+(4*5)+(3*1)+(2*1)+(1*0)=87
87 % 10 = 7
So 201851-10-7 is a valid CAS Registry Number.

201851-10-7SDS

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 (1R,2S,5R)-2-Isopropyl-5-methylcyclohexyl (1S,2S)-2-(9H-xanthen-9 -ylacetyl)cyclopropanecarboxylate

1.2 Other means of identification

Product number -
Other names -

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

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More Details:201851-10-7 SDS

201851-10-7Relevant articles and documents

2-substituted (2SR)-2-amino-2-((1SR,2SR)-2-carboxycycloprop-1- yl)glycines as potent and selective antagonists of group II metabotropic glutamate receptors. 2. Effects of aromatic substitution, pharmacological characterization, and bioavailability

Ornstein, Paul L.,Bleisch, Thomas J.,Arnold, M. Brian,Kennedy, Joseph H.,Wright, Rebecca A.,Johnson, Bryan G.,Tizzano, Joseph P.,Helton, David R.,Kallman, Mary Jeanne,Schoepp, Darryle D.,Hérin, Marc

, p. 358 - 378 (2007/10/03)

In this paper we describe the synthesis of a series of α-substituted analogues of the potent and selective group II metabotropic glutamate receptor (mGluR) agonist (1S,1'S,2'S)-carboxycyclopropylglycine (2, L-CCG 1). Incorporation of a substituent on the amino acid carbon converted the agonist 2 into an antagonist. All of the compounds were prepared and tested as a series of four isomers, i.e., two racemic diastereomers. On the basis of the improvement in affinity realized for the α-phenylethyl analogue 3, in this paper we explored the effects of substitution on the aromatic ring as a strategy to increase the affinity of these compounds for group II mGluRs. Affinity for group II mGluRs was measured using [3H]glutamic acid (Glu) binding in rat forebrain membranes. Antagonist activity was confirmed for these compounds by measuring their ability to antagonize (1S,3R)-1- aminocyclopentane-1,3-dicarboxylic acid-induced inhibition of forskolin stimulated cyclic-AMP in RGT cells transfected with human mGluR2 and mGluR3. Meta substitution on the aromatic ring of 3 with a variety of substituents, both electron donating (e.g., methyl, hydroxy, amino, methoxy, phenyl, phenoxy) and electron withdrawing (e.g., fluorine, chlorine, bromine, carboxy, trifluoromethyl) gave from 1.5- to 4.5-fold increases in affinity. Substitution with p-fluorine, as in 97 (IC50 = 0.022 ± 0.002), was the exception. Here, a greater increase in affinity was realized than for either the ortho- or meta-substituted analogues; 97 was the most potent compound resulting from monosubstitution of the aromatic. At best, only modest increases in affinity were realized for certain compounds bearing either two chlorines or two fluorines, and two methoxy groups gave no improvement in affinity (all examined in a variety of substitution patterns). Three amino acids, 4, 5, and 104, were resolved into their four constituent isomers, and affinity and functional activity for group II mGluRs was found to reside solely in the S,S,S-isomers of each, consistent with 1. With an IC50 = 2.9 ± 0.6 nM, the resolved xanthylmethyl compound 168 was the most potent compound from this SAR. Amino acid 168 demonstrated high plasma levels following intraperitoneal (ip) administration and readily penetrated into the brain. This compound, however, had only limited (~5%) oral bioavailability. Systemic administration of 168 protected mice from limbic seizures produced by the mGluR agonist 3,5-dihydroxyphenylglycine, with an ED50 = 31 mg/kg (ip, 60 min preinjection). Thus, 168 represents a valuable tool to study the role of group II mGluRs in disease.

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