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Hire Dr. Banesh S.
Sweden
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Computational Drug Design Specialist | Molecular Modeling, Docking & In Silico Analysis Expert
Profile Summary
Subject Matter Expertise
Services
Writing
Technical Writing,
General Proofreading & Editing
Research
Fact Checking,
Scientific and Technical Research
Consulting
Scientific and Technical Consulting
Product Development
Concept Development
Work Experience
PostdoctoralResearcher
Karolinska Institute
May 2024 - Present
Education
Doctor of Philosophy
Indian Institute of Technology, Guwahati-India
July 2015 - July 2021
Certifications
- Certification details not provided.
Publications
JOURNAL ARTICLE
Sooram Banesh, BANESH SOORAM, Sourav Layek, Vishal Trivedi(2022). Hemin acts as CD36 ligand to activate down-stream signalling to disturb immune responses and cytokine secretion from macrophages . Immunology Letters. 243. p. 1--18. Elsevier {BV}
Sooram Banesh, BANESH SOORAM, Vishal Trivedi(2021). CD36 Ectodomain Detects Apoptosis in Mammalian Cells . Molecular Biotechnology. 63. (11). p. 992--1003. Springer Science and Business Media {LLC}
(2020). Therapeutic Potentials of Scavenger Receptor CD36 Mediated Innate Immune Responses Against Infectious and Non-Infectious Diseases . Current drug discovery technologies.
Banesh, S., Trivedi, V.(2020). Therapeutic potentials of scavenger receptor cd36 mediated innate immune responses against infectious and non-infectious diseases . Current Drug Discovery Technologies. 17. (3). p. 299-317.
(2018). Selective and Sensitive Sensing of Hydrogen Peroxide by a Boronic Acid Functionalized Metal-Organic Framework and Its Application in Live-Cell Imaging . Inorganic chemistry.
(2018). Mapping of phosphatidylserine recognition region on CD36 ectodomain . Archives of biochemistry and biophysics.
(2018). A dinitro-functionalized metal-organic framework featuring visual and fluorogenic sensing of H2S in living cells, human blood plasma and environmental samples . The Analyst.
Nandi, S., Banesh, S., Trivedi, V., Biswas, S.(2018). A dinitro-functionalized metal-organic framework featuring visual and fluorogenic sensing of H<inf>2</inf>S in living cells, human blood plasma and environmental samples . Analyst. 143. (6). p. 1482-1491.
Das, A., Banesh, S., Trivedi, V., Biswas, S.(2018). Extraordinary sensitivity for H<inf>2</inf>S and Fe(III) sensing in aqueous medium by Al-MIL-53-N<inf>3</inf> metal-organic framework: In vitro and in vivo applications of H<inf>2</inf>S sensing . Dalton Transactions. 47. (8). p. 2690-2700.
Banesh, S., Ramakrishnan, V., Trivedi, V.(2018). Mapping of phosphatidylserine recognition region on CD36 ectodomain . Archives of Biochemistry and Biophysics. 660. p. 1-10.
Sk, M., Banesh, S., Trivedi, V., Biswas, S.(2018). Selective and Sensitive Sensing of Hydrogen Peroxide by a Boronic Acid Functionalized Metal-Organic Framework and Its Application in Live-Cell Imaging . Inorganic Chemistry. 57. (23). p. 14574-14581.
(2017). Rapid and highly sensitive detection of extracellular and intracellular H<sub>2</sub>S by an azide-functionalized Al(iii)-based metal-organic framework . Dalton transactions (Cambridge, England : 2003).
Nandi, S., Reinsch, H., Banesh, S., Stock, N., Trivedi, V., Biswas, S.(2017). Rapid and highly sensitive detection of extracellular and intracellular H<inf>2</inf>S by an azide-functionalized Al(III)-based metal-organic framework . Dalton Transactions. 46. (38). p. 12856-12864.
(2016). Chemoenzymatic Route for the Synthesis of (S)-Moprolol, a Potential β-Blocker . Chirality.
Ghosh, S., Bhaumik, J., Banoth, L., Banesh, S., Banerjee, U.C.(2016). Chemoenzymatic Route for the Synthesis of (S)-Moprolol, a Potential β-Blocker . Chirality. 28. (4). p. 313-318.
Sawant, G., Ghosh, S., Banesh, S., Bhaumik, J., Chand Banerjee, U.(2016). In silico approach towards lipase mediated chemoenzymatic synthesis of (S)-ranolazine, as an anti-anginal drug . RSC Advances. 6. (54). p. 49150-49157.
Thakur, N.S., Bhaumik, J., Sooram, B., Banoth, L., Banerjee, U.C.(2016). Synthesis of Enantiopure Drugs and Drug Intermediates Using In Silico Generated Archetype Biocatalyst: A Case Study Using Alprenolol as a Model Drug . ChemistrySelect. 1. (4). p. 871-876.