YV
Yogesh Kumar Verma
DRDO Institute of Nuclear Medicine and Allied Sciences, University of Delhi
About
Working as a Scientist in the Government of India. I completed M.Sc. and Ph.D. in Biomedical Science
from Delhi University, India. I also have another M.Sc. degree in Bioinformatics from Punjab Technical
University, India. I am presently working in
the area of stem cell research, hematopoiesis, microencapsulation, radiation biology, regenerative medicine, tissue engineering, computational analysis and data
mining for repairing/ regenerating various types of tissues injuries.
Employment
-
DRDO Institute of Nuclear Medicine and Allied Sciences Scientist2009 - Present
Education
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University of Delhi PhD2000 - 2008
Projects & Funding
Projects & funding information is unavailable.
Publications (39)
- Additive Manufacturing and 3D Printing Revolution for Tissue Engineering and Regenerative Medicine Save
- Raloxifene drug enhances stem cell proliferation by inducing the expression of STAT3 Save
- Exploring the antimicrobial, antioxidant and cytotoxic activities of organyltellurium (IV) complexes incorporating 2‐hydroxy‐1‐naphthaldehyde schiff base ligand: Synthesis, spectroscopic investigations and theoretical studies Save
- Carbon quantum dot-nanocomposite hydrogel as Denovo Nexus in rapid chondrogenesis Save
- Humans and robots: Friends of the future? A bird's eye view of biomanufacturing industry 5.0 Save
- Design, development and characterisation of an optimised scaffold to enhance cell proliferation for tissue repair Save
- Quercetin 3-O-rutinoside prevents radiation induced oxidative damage and inflammation by coordinated regulation of Nrf2/ NF-κB/ NLRP3- inflammasome signaling in gastrointestine Save
- Correction: Injectable organo-hydrogels influenced by click chemistry as a paramount stratagem in the conveyor belt of pharmaceutical revolution Save
- Data mining and structural analysis for multi-tissue regeneration potential of BMP-4 and activator drugs Save
- Exploring STAT3 stimulatory potential of novel wound healing molecules by virtual screening and molecular dynamics simulations Save