Evaluation of Selective Human Mao Inhibitory Activities of Some Novel Pyrazoline Derivatives

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Date

2013

Authors

Salgin-Goksen, Umut
Yabanoglu-Ciftci, Samiye
Ercan, Ayse
Yelekçi, Kemal
Ucar, Gulberk
Gokhan-Kelekçi, Nesrin

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Journal ISSN

Volume Title

Publisher

SPRINGER WIEN

Open Access Color

Green Open Access

Yes

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No
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Top 10%
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Average

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Abstract

A series of 1-[2-((5-methyl/chloro)-2-benzoxazolinone-3-yl)acetyl]-35-diaryl-45-dihydro-1H-pyrazole derivatives were prepared by reacting 2-((5-methyl/chloro)-2-benzoxazolinone-3-yl)acetylhydrazine with appropriate chalcones. The chemical structures of all compounds were confirmed by elemental analyses IR H-1 NMR and ESI-MS. All the compounds were investigated for their ability to selectively inhibit monoamine oxidase (MAO) by in vitro tests. MAO activities of the compounds were compared with moclobemide and selegiline and all the compounds were found to inhibit human MAO-A selectively. The inhibition profile was found to be competitive and reversible for all compounds by in vitro tests. Among the compounds examined compounds 5ae 5af and 5ag were more selective than moclobemide with respect to the K (i) values experimentally found. In addition the compound 5bg showed MAO-A inhibitor activity as well as moclobemide. A series of experimentally tested compounds (5ae-5ch) were docked computationally to the active site of the MAO-A and MAO-B isoenzyme. The AUTODOCK 4.01 program was employed to perform automated molecular docking.

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Keywords

2-Pyrazoline, 2-Benzoxazolinone, Chalcone, Monoamine oxidase inhibitory activity, Molecular docking, Models, Molecular, 2-Pyrazoline, Benzoxazoles, Monoamine Oxidase Inhibitors, Stereoisomerism, Tritium, Substrate Specificity, Structure-Activity Relationship, Chalcone, Molecular docking, Humans, 2-Benzoxazolinone, Monoamine oxidase inhibitory activity, Monoamine Oxidase

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Fields of Science

01 natural sciences, 0104 chemical sciences

Citation

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Q1

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OpenCitations Citation Count
12

Source

Journal of Neural Transmission

Volume

120

Issue

6

Start Page

863

End Page

873
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Citations

CrossRef : 6

Scopus : 20

PubMed : 3

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Mendeley Readers : 25

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20

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Web of Science™ Citations

11

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Page Views

8

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Downloads

198

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