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Dr. Sinosh Skariyachan,
St.Pius X College Rajapuram, Kasaragod, Visvesvaraya Technological University
About
Sinosh Skariyachan is working as Assistant Professor in the Department of Microbiology, St. Pius X College Rajapuram (Aided by Govt.of Kerala), Kasaragod, Kerala. He has specialized in Microbiology & Bioinformatics with 20 years of experience in teaching and research. He has 90 International papers, 17 book chapters, 02 books, and 90 conference abstracts in his credit. He received several awards for his research!
Employment
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St.Pius X College Rajapuram, Kasaragod Assistant Professor2019 - Present
Education
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Visvesvaraya Technological University PhD2009 - 2016
Projects & Funding
Projects & funding information is unavailable.
Publications (81)
- The Application of Mushrooms in Agriculture Save
- Integrative computational approaches in the quest for novel Ebolavirus therapeutics Save
- Integrative Investigation of Flavonoids Targeting YBX1 Protein–Protein Interaction Network in Breast Cancer: From Computational Analysis to Experimental Validation Save
- Boeravinone derivatives from Boerhavia diffusa potently target GMP synthase in drug-resistant Acinetobacter baumannii: An AI-guided in silico approach to combat antimicrobial resistance Save
- Structure-based identification of dual targeting lead inhibitor to Marburg virus glycoprotein and Chandipura virus nucleoprotein: Insights from molecular docking, dynamics and binding free energy analyses Save
- In vitro and In silico investigation deciphering novel antifungal activity of endophyte Bacillus velezensis CBMB205 against Fusarium oxysporum. Save
- Unveiling the potential of Hamigeran-B from marine sponges as a probable inhibitor of Nipah virus RDRP through molecular modelling and dynamics simulation studies. Save
- Screening of bioactive compounds from selected mushroom species against putative drug targets in Mycobacterium tuberculosis: a multi-target approach. Save
- Computational screening of potential anti-inflammatory leads from Jeevaneeya Rasayana plants targeting COX-2 and 5- LOX by molecular docking and dynamic simulation approaches. Save
- Deciphering the scope of in silico screening of novel natural lead molecules against putative molecular targets of multidrug-resistant bacterial pathogens Save