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      Drug Design, Development and Therapy (submit here)

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      Development of highly potent melanogenesis inhibitor by in vitro, in vivo and computational studies

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          Abstract

          The present work describes the synthesis of few hydroxylated amide derivatives as melanogenesis inhibitors. In vitro, in vivo and computational studies proved that compound 6d is a highly potent melanogenesis inhibitor compared to standard kojic acid. The title amides 4ae and 6ae were synthesized following simple reaction routes with excellent yields. Most of the synthesized compounds exhibited good mushroom tyrosinase inhibitory activity, but compound 6d showed excellent activity (IC 50 0.15 µM) compared to standard kojic acid (IC 50 16.69 µM). Lineweaver–Burk plots were used for the determination of kinetic mechanism, and it was found that compounds 4c and 6d showed non-competitive inhibition while 6a and 6b showed mixed-type inhibition. The kinetic mechanism further revealed that compound 6d formed irreversible complex with the target enzyme tyrosinase. The Ki values determined for compounds 4c, 6a, 6b and 6d are 0.188, 0.84, 2.20 and 0.217 µM respectively. Results of human tyrosinase inhibitory activity in A375 human melanoma cells showed that compound 6d exhibited 91.9% inhibi-tory activity at a concentration of 50 µg/mL. In vivo cytotoxicity evaluation of compound 6d in zebrafish embryos showed that it is non-toxic to zebrafish. Melanin depigmentation assay performed in zebrafish indicated that compound 6d possessed greater potential in decreasing melanin contents compared to kojic acid at the same concentration. Computational studies also supported the wet lab findings as compound 6d showed a highest binding affinity with the target protein (PDBID: 2Y9X) with a binding energy value of −7.90 kcal/mol. Molecular dynamic simulation studies also proved that amide 6d formed the most stable complex with tyrosinase. Based upon our in vitro, in vivo and computational studies, we propose that compound 6d is a promising candidate for the development of safe cosmetic agent.

          Most cited references47

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          Small-molecule library screening by docking with PyRx.

          Virtual molecular screening is used to dock small-molecule libraries to a macromolecule in order to find lead compounds with desired biological function. This in silico method is well known for its application in computer-aided drug design. This chapter describes how to perform small-molecule virtual screening by docking with PyRx, which is open-source software with an intuitive user interface that runs on all major operating systems (Linux, Windows, and Mac OS). Specific steps for using PyRx, as well as considerations for data preparation, docking, and data analysis, are also described.
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            VADAR: a web server for quantitative evaluation of protein structure quality.

            VADAR (Volume Area Dihedral Angle Reporter) is a comprehensive web server for quantitative protein structure evaluation. It accepts Protein Data Bank (PDB) formatted files or PDB accession numbers as input and calculates, identifies, graphs, reports and/or evaluates a large number (>30) of key structural parameters both for individual residues and for the entire protein. These include excluded volume, accessible surface area, backbone and side chain dihedral angles, secondary structure, hydrogen bonding partners, hydrogen bond energies, steric quality, solvation free energy as well as local and overall fold quality. These derived parameters can be used to rapidly identify both general and residue-specific problems within newly determined protein structures. The VADAR web server is freely accessible at http://redpoll.pharmacy.ualberta.ca/vadar.
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              Tyrosinase: a comprehensive review of its mechanism.

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                Author and article information

                Journal
                Drug Des Devel Ther
                Drug Des Devel Ther
                Drug Design, Development and Therapy
                Drug Design, Development and Therapy
                Dove Medical Press
                1177-8881
                2017
                05 July 2017
                : 11
                : 2029-2046
                Affiliations
                [1 ]Department of Biology, College of Natural Sciences, Kongju National University, Gongju, Republic of Korea
                [2 ]Department of Chemistry, Allama Iqbal Open University, Islamabad
                [3 ]Riphah Institute of Pharmaceutical Sciences, Riphah International University, Islamabad, Pakistan
                [4 ]Center for Genetics and Inherited Diseases, Taibah University, Almadinah Almunawwarah, Kingdom of Saudi Arabia
                [5 ]Faculty of Pharmacy, Bahauddin Zakria University, Multan, Pakistan
                Author notes
                Correspondence: Sung-Yum Seo, Department of Biology, College of Natural Sciences, Kongju National University, 56 Gongjudehak-Ro 56, Gongju, Chungnam 32588, Republic of Korea, Tel +82 41 850 8503, Fax +82 41 850 8503, Email dnalove@ 123456kongju.ac.kr
                Zaman Ashraf, Department of Chemistry, Allama Iqbal Open University, Islamabad 44000, Pakistan, Tel +92 32 1519 4461, Fax +92 51 2891471, Email mzchem@ 123456yahoo.com
                Article
                dddt-11-2029
                10.2147/DDDT.S137550
                5503496
                78920289-2dca-42fa-ac26-906cfc4745dc
                © 2017 Abbas et al. This work is published and licensed by Dove Medical Press Limited

                The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution – Non Commercial (unported, v3.0) License ( http://creativecommons.org/licenses/by-nc/3.0/). By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.

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                Categories
                Original Research

                Pharmacology & Pharmaceutical medicine
                melanogenesis,computational studies,tyrosinase inhibition,zebrafish,melanin quantification

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