DM
Debasish Mishra
Vellore Institute of Technology University, Vellore Institute of Technology-Vellore, Indian Institute of Technology Kharagpur
About
Interested in applications of bio-inspired designs and biomimetics in biomedical sciences. Recent focus is on finding ways for curving antimicrobial resistance using bio-inspired biomaterials. I am also interested in deciphering a deeper understanding of cell sociology and ecology in multicellular eukaryotes. (For details please visit http://bit.ly/Profile_DrDM) My Web of Science ID is S-9812-2019 and Scopus ID is Scopus Author ID: 55963119800.
Employment
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Vellore Institute of Technology University Professor2014 - Present
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Vellore Institute of Technology-Vellore Assistant Professor (SG)2013 - 2013
Education
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Indian Institute of Technology Kharagpur PhD2007 - 2014
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Indian Institute of Technology Kharagpur Master of Technology (MTech)2004 - 2006
Projects & Funding
Projects & funding information is unavailable.
Publications (30)
- Turning Off the Powerhouse: Mitochondria-Targeted DPPZ-Ru(II)/Ir(III)/Re(I) Complexes Trigger Dual Mitophagy and Apoptosis To Halt Triple-Negative Breast Cancer Save
- Bioselective Materials Save
- Bioselective and Radiopaque Zinc-Biopolymeric Complex-Based Porous Biomaterials Promote Mammalian Tissue Ingrowth In Vivo While Inhibiting Microbial Biofilm Gene Expression and Biofilm Formation Save
- Anionic species from multivalent metal salts are differentially retained during aqueous ionic gelation of sodium alginate and could fine-tune the hydrogel properties Save
- Physical and self–crosslinking mechanism and characterization of chitosan-gelatin-oxidized guar gum hydrogel Save
- Evidences of Biomimetic and Nonantibiotic Characteristics of the Zinc–Carboxymethyl Chitosan–Genipin Organometallic Complex and Its Biocompatibility Aspects Save
- Goat tendon collagen-human fibrin hydrogel for comprehensive parametric evaluation of HUVEC microtissue-based angiogenesis Save
- Ectopic vascularized bone formation by human mesenchymal stem cell microtissues in a biocomposite scaffold Save
- Nano-Bio Engineered Carbon Dot-Peptide Functionalized Water Dispersible Hyperbranched Polyurethane for Bone Tissue Regeneration Save
- Plasmonic-ELISA: Expanding horizons Save