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      Recent Advances in the Development of Pharmacologically Active Compounds that Contain a Benzoxazole Scaffold

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          The global implications of diabetes and cancer.

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            Comprehensive review in current developments of imidazole-based medicinal chemistry.

            Imidazole ring is an important five-membered aromatic heterocycle widely present in natural products and synthetic molecules. The unique structural feature of imidazole ring with desirable electron-rich characteristic is beneficial for imidazole derivatives to readily bind with a variety of enzymes and receptors in biological systems through diverse weak interactions, thereby exhibiting broad bioactivities. The related research and developments of imidazole-based medicinal chemistry have become a rapidly developing and increasingly active topic. Particularly, numerous imidazole-based compounds as clinical drugs have been extensively used in the clinic to treat various types of diseases with high therapeutic potency, which have shown the enormous development value. This work systematically gives a comprehensive review in current developments of imidazole-based compounds in the whole range of medicinal chemistry as anticancer, antifungal, antibacterial, antitubercular, anti-inflammatory, antineuropathic, antihypertensive, antihistaminic, antiparasitic, antiobesity, antiviral, and other medicinal agents, together with their potential applications in diagnostics and pathology. It is hoped that this review will be helpful for new thoughts in the quest for rational designs of more active and less toxic imidazole-based medicinal drugs, as well as more effective diagnostic agents and pathologic probes.
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              Ebselen, a promising antioxidant drug: mechanisms of action and targets of biological pathways.

              Ebselen, an organoselenium compound, mimics glutathione peroxidase activity. It is a multifunctional compound, which catalyzes several essential reactions for the protection of cellular components from oxidative and free radical damage. Based on a number of in vitro and in vivo studies, various mechanisms are proposed to understand the biomedical actions of ebselen in health and diseases. It modulates metallo-proteins, enzymatic cofactors, gene expression, epigenetics, antioxidant defenses and immune systems. Owing to these properties, ebselen is currently under clinical trials for the prevention and treatment of various disorders such as cardiovascular diseases, arthritis, stroke, atherosclerosis, and cancer. A few ebselen-based pharmaceutical agents are under extensive investigation. As ebselen has been shown to have significant cellular toxicity, appropriate studies are needed to redesign the ebselen-based therapy for clinical trials. This review summarizes current understanding of the biochemical and molecular properties, and pharmacological applications of ebselen and future directions in this area of research.
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                Author and article information

                Journal
                Asian Journal of Organic Chemistry
                Asian J. Org. Chem.
                Wiley
                21935807
                December 2015
                December 2015
                September 15 2015
                : 4
                : 12
                : 1338-1361
                Affiliations
                [1 ]College of Pharmacy; Dongguk University-Seoul; Republic of Korea
                [2 ]College of Life Science and Biotechnology; Korea University-Seoul; Republic of Korea
                Article
                10.1002/ajoc.201500235
                35d2d9d5-da85-406d-8c53-5666a66ba297
                © 2015

                http://doi.wiley.com/10.1002/tdm_license_1.1

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