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332016-46-3

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332016-46-3 Usage

Appearance

White to light yellow crystalline

Usage

Pharmaceutical development, research and development, building block/intermediate in organic synthesis

Therapeutic potential

Interaction with biological targets, key component in medicinal chemistry and drug discovery

Safety precautions

Handle with caution, follow proper safety protocols due to potential hazards and risks

Check Digit Verification of cas no

The CAS Registry Mumber 332016-46-3 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 3,3,2,0,1 and 6 respectively; the second part has 2 digits, 4 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 332016-46:
(8*3)+(7*3)+(6*2)+(5*0)+(4*1)+(3*6)+(2*4)+(1*6)=93
93 % 10 = 3
So 332016-46-3 is a valid CAS Registry Number.

332016-46-3Relevant academic research and scientific papers

N-transfer reagent and method for preparing the same and its application

-

, (2021/06/25)

Provided are a novel N-transfer reagent and a method for preparing the same and its application. The N-transfer reagent is represented by the following Formula (I): The various novel N-transfer reagents of the present invention can be quickly prepared by employing different nitrobenzene precursors. The N-transfer reagents can directly convert a variety of amino compounds into diazo compounds under mild conditions. Particularly, the N-transfer reagents can facilitate the synthesis of the diazo compounds. The application of synthesizing diazo compounds of the present invention can greatly decrease the difficulty in operation, increase the safety during experiments, reduce the cost of production and the environmental pollution, and enhance the industrial value of diazo compounds.

Design, synthesis and biological evaluation of novel naturally-inspired multifunctional molecules for the management of Alzheimer's disease

Chittiboyina, Amar G.,Doerksen, Robert J.,Modi, Gyan,Nayak, Prasanta Kumar,Pandey, Amruta,Pandey, Pankaj,Priya, Khushbu,Rai, Geeta,Shankar, Gauri,Singh, Yash Pal,Tej, Gullanki Naga Venkata Charan,Vishwakarma, Swati

, (2020/05/05)

In our overall goal to overcome the limitations associated with natural products for the management of Alzheimer's disease and to develop in-vivo active multifunctional cholinergic inhibitors, we embarked on the development of ferulic acid analogs. A systematic SAR study to improve upon the cholinesterase inhibition of ferulic acid with analogs that also had lower logP was carried out. Enzyme inhibition and kinetic studies identified compound 7a as a lead molecule with preferential acetylcholinesterase inhibition (AChE IC50 = 5.74 ± 0.13 μM; BChE IC50 = 14.05 ± 0.10 μM) compared to the parent molecule ferulic acid (% inhibition of AChE and BChE at 20 μM, 15.19 ± 0.59 and 19.73 ± 0.91, respectively). Molecular docking and dynamics studies revealed that 7a fits well into the active sites of AChE and BChE, forming stable and strong interactions with key residues Asp74, Trp286, and Tyr337 in AChE and with Tyr128, Trp231, Leu286, Ala328, Phe329, and Tyr341 in BChE. Compound 7a was found to be an efficacious antioxidant in a DPPH assay (IC50 = 57.35 ± 0.27 μM), and it also was able to chelate iron. Data from atomic force microscopy images demonstrated that 7a was able to modulate aggregation of amyloid β1-42. Upon oral administration, 7a exhibited promising in-vivo activity in the scopolamine-induced AD animal model and was able to improve spatial memory in cognitive deficit mice in the Y-maze model. Analog 7a could effectively reverse the increased levels of AChE and BChE in scopolamine-treated animals and exhibited potent ex-vivo antioxidant properties. These findings suggest that 7a can act as a lead molecule for the development of naturally-inspired multifunctional molecules for the management of Alzheimer's and other neurodegenerative disorders.

Synthesis and anticonvulsant activity of some N-(benzoyl)glycinanilide derivatives

Soyer, Zeynep,Akgul, Ozlem,Tarikogullari, Ayse H.,Calis, Unsal

, p. 4708 - 4714 (2013/09/23)

Glycine is a major inhibitory neurotransmitter and recent studies have shown that certain lipophilic glycine derivatives demonstrate anticonvulsant activity in animal epilepsy models. On the other hand, anilide is another fruitful structure for designing potential anticonvulsant agents. Ameltolide, ralitoline and some phthalimide derivatives are the examples of anilide analogs with potent anticonvulsant activity. In this study, two key structural pharmacophores were combined and a series of N-benzoylglycinanilide derivatives were designed. Their anticonvulsant activities evaluated against maximal electroshock (MES) and subcutaneous metrazole seizure tests, whereas their neurotoxicity was examined by rotarod test. The preliminary screening results indicated that majority of the compounds were effective in the MES test. None of the compounds showed neurotoxicity according to the rotarod test at studied doses. The most active compound in the series is N-(2-((4-methoxyphenyl)amino)- 2-oxoethyl)benzamide (compound 8) which bearing 4-methoxy substituent on the N-phenyl ring.

Design and synthesis of a novel family of semi-rigid ligands: Versatile compounds for the preparation of 99mTc radiopharmaceuticals

Le Gal, Julien,Latapie, Laure,Gressier, Marie,Coulais, Yvon,Dartiguenave, Michele,Benoist, Eric

, p. 876 - 883 (2007/10/03)

Synthetic pathways to a range of novel semi-rigid tetradentate ligands, with sulfur, amido or amino donor groups, designed to coordinate technetium 99m have been developed. The technetium-99m complexes have been prepared and their stabilities in serum and

Convenient synthesis of a new class of N2SO or N2S2 tetradentate ligands suitable for nuclear medicine applications

Fourteau,Benoist,Dartiguenave

, p. 126 - 128 (2007/10/03)

In our search for a 99mTc labelled brain perfusion imaging agent, six new tetradentate acyclic ligands have been synthesised in good yield, through easy and fast syntheses. These compounds possess an aromatic ring bridging a nitrogen and an oxygen or a sulfur and contain two amides (1a, 1b) or an amine and an amide functionalities (2a-2d), which make them good candidates for radiopharmaceuticals.

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