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65894-19-1

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65894-19-1 Usage

Chemical structure

Pyrimidinone derivative
The compound is based on a pyrimidinone ring, which is a six-membered ring with a ketone group (C=O) at the 4-position.

Presence of hydrazine group

(2E)-2-(4-chlorobenzylidene)hydrazinyl
The compound contains a hydrazine group (NH-NH2) attached to a 2-position of the pyrimidinone ring, with a 4-chlorobenzylidene moiety (a benzyl group with a chlorine atom at the 4-position) connected to the 2-position of the hydrazine group.

Chlorine atom

4-chlorobenzylidene moiety
A chlorine atom is present in the compound, attached to the 4-position of the benzyl group that is connected to the hydrazine group.

Methyl group

6-methyl
A methyl group (CH3) is attached to the 6-position of the pyrimidinone ring, contributing to the compound's structure.

Potential applications

Medicinal chemistry
The compound has potential applications in the development of drugs and pharmaceuticals, particularly in the field of medicinal chemistry.

Safety precautions

Strict laboratory conditions and compliance with safety guidelines and regulations
When handling and using 2-[(2E)-2-(4-chlorobenzylidene)hydrazinyl]-6-methylpyrimidin-4(1H)-one, it is crucial to follow all relevant safety guidelines and regulations to ensure proper laboratory practices and minimize risks.

Check Digit Verification of cas no

The CAS Registry Mumber 65894-19-1 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 6,5,8,9 and 4 respectively; the second part has 2 digits, 1 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 65894-19:
(7*6)+(6*5)+(5*8)+(4*9)+(3*4)+(2*1)+(1*9)=171
171 % 10 = 1
So 65894-19-1 is a valid CAS Registry Number.

65894-19-1SDS

SAFETY DATA SHEETS

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

Version: 1.0

Creation Date: Aug 14, 2017

Revision Date: Aug 14, 2017

1.Identification

1.1 GHS Product identifier

Product name 2-[(2E)-2-[(4-chlorophenyl)methylidene]hydrazinyl]-6-methyl-1H-pyrimidin-4-one

1.2 Other means of identification

Product number -
Other names 6-hydroxy-4-methoxymethylpyrimidine

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:65894-19-1 SDS

65894-19-1Downstream Products

65894-19-1Relevant articles and documents

Structure-based design and optimization of pyrimidine- and 1,2,4-triazolo[4,3-a]pyrimidine-based matrix metalloproteinase-10/13 inhibitors via Dimroth rearrangement towards targeted polypharmacology

Abd Al Moaty, Mohamed Nabil,Abu-Serie, Marwa M.,Awad, Laila Fathy,El Ashry, El Sayed Helmy,Ibrahim, Nihal Ahmed,Teleb, Mohamed

, (2020/02/11)

Recently, interest in matrix metalloproteinases (MMPs) -10 and -13 has been revitalized with the growing knowledge on their relevance within the MMPs network and significance of their inhibition for treatment of various diseases like arthritis, cancer, atherosclerosis and Alzheimer. Within this approach, dual MMP-10/13 inhibition was disclosed as new approach for targeted polypharmacology. While several efficient MMP-13 inhibitors are known, very few potent and selective MMP-10 inhibitors were reported. This study describes the design, synthesis and optimization of novel MMP-10/13 inhibitors with enhanced MMP-10 potency and selectivity towards polypharmacology. Starting with a lead fused pyrimidine-based MMP-13 inhibitor with weak MMP-10 inhibition, a structure-based design of pyrimidine and fused pyrimidine scaffolds was rationalized to enhance activity against MMP-10 in parallel with MMP-13. Firstly, a series of 6-methyl pyrimidin-4-one hydrazones 6–10 was synthesized via conventional and ultrasonic-assisted methods, then evaluated for MMP-10/13 inhibition. The most active derivative 9 exhibited acceptable dual potency with 7-fold selectivity for MMP-10 (IC50 = 53 nM) over MMP-13. Such hydrazones were then cyclized to the corresponding isomeric 1,2,4-triazolo[4,3-a]pyrimidines 12–19. Their MMP-10/13 inhibition assay revealed, in most cases, superior dual activities with general MMP-10 selectivity compared to the corresponding precursors 6–10. In addition, a clear structure activity relationship trend was deduced within the identified regioisomers, where the 5-oxo-1,2,4-triazolo[4,3-a]pyrimidine derivatives 15 and 16 were far more active against MMP-10/13 than their regioisomers 12 and 13. Remarkably, the p-bromophenyl derivative 16 exhibited the highest MMP-10 inhibition (IC50 = 24 nM), whereas the p-methoxy derivative 18 was the most potent MMP-13 inhibitor (IC50 = 294 nM). Moreover, 16 exhibited 19-fold selectivity for MMP-10 over MMP-13, 10-fold over MMP-9, and 29-fold over MMP-7. Docking studies were performed to provide reasonable explanation for structure-activity relationships and isoform selectivity. 16 and 18 were then evaluated for their anticancer activities against three human cancers to assess their therapeutic potential at cellular level via MTT assay. Both compounds exhibited superior anticancer activities compared to quercetin. Their in silico ligand efficiency metrics, physicochemical properties and ADME parameters were drug-like. Guided by such findings that point to 16 as the most promising compound in this study, further structure optimization was carried out via photoirradiation-mediated Dimroth rearrangement of the inactive triazolopyrimidine 13 to its potent regioisomer 16.

The preparation of 2-hydrazino-3-arylquinzolones-(4)--synthesis of compounds with an aminoguanidine structure

Kottke,Kuehmstedt

, p. 19 - 23,20,22,23 (2007/10/05)

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