Javascript must be enabled to continue!
Construction, Molecular Docking, Antimicrobial and Antioxidant Activity of Some Novel 3-Substitued Indole Derivatives Using 3-Acetyl Indole
View through CrossRef
This dissertation presents a method for the synthesis of substituted indoles bearing heterocyclic substituents onto the 3- position. The route for the synthesis of the heterocyclic substituents indoles starts from 3-acetyl indole nucleus depend on two parts. One part: Reaction of 3-acetylindole 1 with hydrazide compounds such as phenyl hydrazine, hydrazine hydrate, and thio-semicarbazide, to yield 3-(1-(2-phenylhydrazono) ethyl)-1H-indole 2, 3-(1-hydrazonoethyl)-1H-indole 6, and thiosemicarbazone 10 respectively. 3-(1-Hydrazonoethyl)-1H-indole 6 reacted with thiophene-2-carboxaldeyde, isatin and 3-acetyl indole. In the same way, 3-(1-(2-phenylhydrazono) ethyl)-1H-indole 2 reacted with thioglycollic acid, glycine and benzaldehyde. 3-Acetylindole 1 thiosemicarbazone reacted with acetic anhydride, piperidine, concentration of hydrochloric acid and thiophene-2-carboxaldeyde. Second part. Reaction of 3-acetyl indole 1 with amines compounds such as p-nitroaniline to formed Schiff base 15 which it reacted with thioglycollic acid to give compound 16. 3-Acetyl indole 1 reacted with ethylene diamine to afford bis imine indole to afford compound 17. The reports of this docking study revealed that the new compounds exhibit good antibacterial activity. The synthesized compounds screened in vitro for their antibacterial activity revealed remarkable inhibitory effects against the selected microorganisms. And also an anti-oxidant activity studying for some synthesized compounds. Structures of the newly synthesized compounds examination by spectral data (IR, 1H- NMR and 13C -NMR).
Title: Construction, Molecular Docking, Antimicrobial and Antioxidant Activity of Some Novel 3-Substitued Indole Derivatives Using 3-Acetyl Indole
Description:
This dissertation presents a method for the synthesis of substituted indoles bearing heterocyclic substituents onto the 3- position.
The route for the synthesis of the heterocyclic substituents indoles starts from 3-acetyl indole nucleus depend on two parts.
One part: Reaction of 3-acetylindole 1 with hydrazide compounds such as phenyl hydrazine, hydrazine hydrate, and thio-semicarbazide, to yield 3-(1-(2-phenylhydrazono) ethyl)-1H-indole 2, 3-(1-hydrazonoethyl)-1H-indole 6, and thiosemicarbazone 10 respectively.
3-(1-Hydrazonoethyl)-1H-indole 6 reacted with thiophene-2-carboxaldeyde, isatin and 3-acetyl indole.
In the same way, 3-(1-(2-phenylhydrazono) ethyl)-1H-indole 2 reacted with thioglycollic acid, glycine and benzaldehyde.
3-Acetylindole 1 thiosemicarbazone reacted with acetic anhydride, piperidine, concentration of hydrochloric acid and thiophene-2-carboxaldeyde.
Second part.
Reaction of 3-acetyl indole 1 with amines compounds such as p-nitroaniline to formed Schiff base 15 which it reacted with thioglycollic acid to give compound 16.
3-Acetyl indole 1 reacted with ethylene diamine to afford bis imine indole to afford compound 17.
The reports of this docking study revealed that the new compounds exhibit good antibacterial activity.
The synthesized compounds screened in vitro for their antibacterial activity revealed remarkable inhibitory effects against the selected microorganisms.
And also an anti-oxidant activity studying for some synthesized compounds.
Structures of the newly synthesized compounds examination by spectral data (IR, 1H- NMR and 13C -NMR).
Related Results
Pharmacological screening of synthetic piperidine derivatives
Pharmacological screening of synthetic piperidine derivatives
Piperidine derivatives are essential heterocyclic compounds that have beneficial roles in the medical and commercial sector. They can be isolated from plant material and can be che...
Characterization of isomeric acetyl amino acids and di‐acetyl amino acids by LC/MS/MS
Characterization of isomeric acetyl amino acids and di‐acetyl amino acids by LC/MS/MS
AbstractAcetylation of amino acids is important in the molecular biology and biochemistry because they are part of several metabolic pathways. N‐acetyl amino acids can form through...
DTMol: Pocket-based Molecular Docking using Diffusion Transformers
DTMol: Pocket-based Molecular Docking using Diffusion Transformers
Abstract
In computational chemistry, molecular docking—predicting the binding structure of a small molecule ligand to a protein—is vital for understanding interacti...
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Abstract
The Physical Activity Guidelines for Americans (Guidelines) advises older adults to be as active as possible. Yet, despite the well documented benefits of physical activi...
Benzothiazole Clubbed Imidazolone Derivatives: Synthesis, Molecular
Docking, DFT Studies, and Antimicrobial Studies
Benzothiazole Clubbed Imidazolone Derivatives: Synthesis, Molecular
Docking, DFT Studies, and Antimicrobial Studies
Aim:
This study aims to synthesize antimicrobial agents and their molecular docking,
and DFT studies of benzothiazole-imidazolone scaffolds.
Background:
Benzothiazole and imidazo...
Antimicrobial, physico-chemical properties of nitrogen-containing preparations of derivates of menthol, quinoline and phenol
Antimicrobial, physico-chemical properties of nitrogen-containing preparations of derivates of menthol, quinoline and phenol
Successful research by scientists of new synthetic substances of various chemical groups contributes to the broadening of the arsenal of antimicrobial drugs for the prevention and ...
Synthesis, Cytotoxicity, Antioxidant and Antimicrobial Activity of Indole Based Novel Small Molecules
Synthesis, Cytotoxicity, Antioxidant and Antimicrobial Activity of Indole Based Novel Small Molecules
Aim:
In this study experiments were carried out to explore antioxidant, antimicrobial,
cytotoxic properties of novel indole derivative 1-ethyl-2-phenyl-3-phenylethyl-3-thiophen-2-y...
Current research trends of 1,2,4-triazole derivatives biological activity (literature review)
Current research trends of 1,2,4-triazole derivatives biological activity (literature review)
The relevance of searching for new active compounds among 1,2,4-triazole derivatives is determined by their potential effectiveness in treating various diseases such as cancer, inf...

