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10.3389/fmolb.2021.637989

http://scihub22266oqcxt.onion/10.3389/fmolb.2021.637989
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suck abstract from ncbi


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pmid34046428      Front+Mol+Biosci 2021 ; 8 (ä): 637989
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  • Synthesis and Cytotoxic Activity of Novel Indole Derivatives and Their in silico Screening on Spike Glycoprotein of SARS-CoV-2 #MMPMID34046428
  • Gobinath P; Packialakshmi P; Vijayakumar K; Abdellattif MH; Shahbaaz M; Idhayadhulla A; Surendrakumar R
  • Front Mol Biosci 2021[]; 8 (ä): 637989 PMID34046428show ga
  • This work investigated the interaction of indole with SARS-CoV-2. Indole is widely used as a medical material owing to its astounding biological activities. Indole and its derivatives belong to a significant category of heterocyclic compounds that have been used as a crucial component for several syntheses of medicine. A straightforward one-pot three-component synthesis of indole, coupled with Mannich base derivatives 1a-1j, was synthesized without a catalyst. The products were confirmed by IR, (1)H-NMR, (13)C-NMR, mass spectra, and elemental analysis. The indole derivatives were tested for cytotoxic activity, using three cancer cell lines and normal cell lines of Human embryonic kidney cell (HEK293), liver cell (LO2), and lung cell (MRC5) by MTT assay using doxorubicin as the standard drug. The result of cytotoxicity indole compound 1c (HepG2, LC(50)-0.9 mum, MCF-7, LC(50)-0.55 mum, HeLa, LC(50)-0.50 mum) was found to have high activity compared with other compounds used for the same purpose. The synthesized derivatives have revealed their safety by exhibiting significantly less cytotoxicity against the normal cell line (HEK-293), (LO2), and (MRC5) with IC(50) > 100 mug/ml. Besides, we report an in silico study with spike glycoprotein (SARS-CoV-2-S). The selective molecules of compound 1c exhibited the highest docking score -2.808 (kcal/mol) compared to other compounds. This research work was successful in synthesizing a few compounds with potential as anticancer agents. Furthermore, we have tried to emphasize the anticipated role of indole scaffolds in designing and discovering the much-awaited anti-SARS CoV-2 therapy by exploring the research articles depicting indole moieties as targeting SARS CoV-2 coronavirus.
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