Ajay Vikram Singh
Bundesinstitut für Risikobewertung, Max Planck Institute for Intelligent Systems, European School of Molecular Medicine (SEMM), University of Pune, Rensselaer Polytechnic Institute
About
My PhD thesis work is in the area of Medical Nanotechnology and my specific research topic was synthesis of nanostructured thin films of biocompatible inorganic and carbon materials (TiOx/ZrOx/CNx) and their cell-surface interactions studies (Mammalian and Bacterial cell). My PhD research includes diverse areas at interface of material sciences-biomedicine such as wet colloidal routes to gas phase supersonic cluster beam deposition (SCBD) of nanomaterials and the analysis of their biological performances. My PhD thesis majorly includes designing recipes and protocols for the micro-nanostructuration of biocompatible thin films of solid state materials in nanochip format for biomedicine applications to control complex cell functions (adhesion/differentiation). I developed high throughput protocol in chip format to design gradient of nanoclusters with varying nanoscale roughness and morphology, where surface chemistry with topography can be altered independently. The designed biochip is compatible for high content screening (HCS) of protein-surface and cell-protein-surface interactions for quantitative structure property relationships (QSPRs) to establish optimal biological performance of any inorganic solid state materials.
Employment
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Bundesinstitut für Risikobewertung Scientific Officer2018 - Present
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Max Planck Institute for Intelligent Systems Postodoc2014 - Present
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Rensselaer Polytechnic Institute Postdoctoral Scientist2012 - 2014
Education
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European School of Molecular Medicine (SEMM) Ph.D., Medical Nanotechnology 2008-2011 , Milan , .2008 - 2011
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University of Pune Master of Science (MSc)
Projects & Funding
Projects & funding information is unavailable.
Publications (105)
- Overcoming Challenges and Innovations in Orthopedic Prosthesis Design: An Interdisciplinary Perspective Save
- Digital Transformation in Toxicology: Improving Communication and Efficiency in Risk Assessment Save
- Durability of Slippery Liquid-Infused Surfaces: Challenges and Advances Save
- Polymer Translocation and Nanopore Sequencing: A Review of Advances and Challenges Save
- Micropatterned Neurovascular Interface to Mimic the Blood–Brain Barrier’s Neurophysiology and Micromechanical Function: A BBB-on-CHIP Model Save
- Self-Assembly of DNA-Grafted Colloids: A Review of Challenges Save
- Interfacial Water in the SARS Spike Protein: Investigating the Interaction with Human ACE2 Receptor and In Vitro Uptake in A549 Cells Save
- Perspectives on the Technological Aspects and Biomedical Applications of Virus‐Like Particles/Nanoparticles in Reproductive Biology: Insights on the Medicinal and Toxicological Outlook Save
- Investigation of the Associations between a Nanomaterial’s Microrheology and Toxicology Save
- Biofilm inhibition in Candida albicans with biogenic hierarchical zinc-oxide nanoparticles Save