Suneel Kumar
Rutgers The State University of New Jersey, All India Institute of Medical Sciences
About
Dr. Suneel Kumar is an active scientist in the field of biomedical engineering and neurobiology, specializing in spinal cord injury, chronic wound healing, regenerative medicine, and therapeutic biomaterials. He is an Assistant Research Professor in the Department of Biomedical Engineering at Rutgers University, where he leads research on nanoparticle therapies, stem cell technologies, and advanced wound-healing systems. His work combines neuroscience, bioengineering, and translational medicine to improve recovery outcomes for patients with spinal cord injuries and chronic wounds. Dr. Kumar earned his PhD in neurophysiology and stem cell biology from the All India Institute of Medical Sciences. He has developed innovative therapeutic platforms, including biomaterial dressings, drug-delivery systems, and regenerative anti-inflammatory therapies. He has authored over 60 peer-reviewed publications, edited scientific books, and holds an international patent application related to wound-healing technologies. In addition, he actively mentors students and has received several international awards for his contributions to neuroscience, wound healing, and biomedical engineering.
Employment
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Rutgers The State University of New Jersey Assistant Research Professor2020 - Present
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Rutgers The State University of New Jersey Research Associate2018 - 2020
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Rutgers The State University of New Jersey Postdoctoral Associate2015 - 2018
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Rutgers The State University of New Jersey Postdoctoral Associate2013 - 2015
Education
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All India Institute of Medical Sciences PhD2007 - 2013
Projects & Funding
Projects & funding information is unavailable.
Publications (76)
- Response of Human Umbilical Vein Endothelial Cells to Growth Factor Nanoparticles in Simulated Chronic Wound Environments Save
- Bacterial Inactivation on Food and Complex Tissue Surfaces with Mechanically Flexible Surface Dielectric Barrier Discharge Devices Save
- Coacervates Made of Elastin‐Like Polypeptides Fused with Melanocyte‐Stimulating Hormone and Monocyte Chemoattractant Protein Enhance Skin Wound Healing in Spinal Cord‐Injured Mice Save
- Antioxidant and antibacterial effects of human plasma-based scavenging protein cocktail on burn wound healing in vitro Save
- Electrochemical Detection of NO and Ca2+ during Cold Atmospheric Plasma Treatment of Acute Wounds: Sensor Selectivity and Stability in the Plasma-Bio-System Save
- Novel targets for autism spectrum disorder: Recent developments, challenges, and future perspectives Save
- Rural tourism as a driver of sustainable development: a systematic review and future research agenda Save
- Preface: Nanoparticle-Based Drug Delivery for Tissue Repair Save
- Depletion of Cell Adhesion Molecule L1 from Microglia and Macrophages Reduces Recovery After Spinal Cord Injury Save
- Wireless Power-Up and Readout of Label-Free Nanosensors for In-Vivo Monitoring of Protein Concentrations in Live Animals Save