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Govindasamy Mugesh

Researcher at Indian Institute of Science

Publications -  181
Citations -  9826

Govindasamy Mugesh is an academic researcher from Indian Institute of Science. The author has contributed to research in topics: Glutathione peroxidase & Iodothyronine deiodinase. The author has an hindex of 46, co-authored 173 publications receiving 8278 citations. Previous affiliations of Govindasamy Mugesh include Indian Institutes of Technology & University of Washington.

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Synthetic organoselenium compounds as antioxidants:glutathione peroxidase activity

TL;DR: This review deals with the use of various synthetic organoselenium compounds as mimics of glutathione peroxidase (GPx), a selenoenzyme which catalyses the reduction of a variety of hydroperoxides and protects the cell membranes from oxidative damage.
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Functional mimics of glutathione peroxidase: bioinspired synthetic antioxidants.

TL;DR: The effect of amide and amine substituents on the GPx activity of various organoselenium compounds is demonstrated and it is shown that any substituent capable of enhancing the nucleophilic attack of thiol at sulfur in the selenenyl sulfide state would enhance the antioxidant potency of organoseLenium compounds.
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A Redox Modulatory Mn3O4 Nanozyme with Multi-Enzyme Activity Provides Efficient Cytoprotection to Human Cells in a Parkinson's Disease Model

TL;DR: The redox modulatory effect of Mn3 O4 plays a crucial role in protecting the cells from MPP+ induced cytotoxicity in a Parkinson disease (PD)-like cellular model, indicating that manganese-based nanomaterials having multi-enzyme activity can robustly rescue the Cells from oxidative damage and thereby possess therapeutic potential to prevent ROS-mediated neurological disorders.
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Glutathione peroxidase-like antioxidant activity of diaryl diselenides: a mechanistic study.

TL;DR: The synthesis, structure, and thiol peroxidase-like antioxidant activities of several diaryl diselenides having intramolecularly coordinating amino groups are described and the mechanistic role of various organoselenium intermediates is investigated.