Dr. Nandana Bhardwaj
National Institute of Pharmaceutical Education and Research Guwahati, Indian Institute of Technology Kharagpur
About
My research interest lies in investigating the potential of natural polymeric biomaterials for tissue engineering, drug delivery and regenerative medicine inspired by the interfacial science of biomaterials, material engineering, cell biology and nanotechnology. Currently, I am actively pursuing research on cell fate by functionalizing and controlling biomaterial design to engineer in vitro tissues mimicking architecture to attain native functions for implantation. In addition, 3D bioprinting and in vitro disease models are being explored for biomedical applications.
Employment
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National Institute of Pharmaceutical Education and Research Guwahati Research Scientist2018 - Present
Education
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Indian Institute of Technology Kharagpur Ph. D2007 - 2012
Projects & Funding
Projects & funding information is unavailable.
Publications (37)
- Bioprinted in vitro tissue models: an emerging platform for developing therapeutic interventions and disease modelling Save
- Trends and advances in silk based 3D printing/bioprinting towards cartilage tissue engineering and regeneration Save
- 3D bioprinting of photo‐crosslinkable silk methacrylate (SilMA)‐polyethylene glycol diacrylate (PEGDA) bioink for cartilage tissue engineering Save
- Overcoming the Dependence on Animal Models for Osteoarthritis Therapeutics – The Promises and Prospects of In Vitro Models Save
- State-of-the-art strategies and future interventions in bone and cartilage repair for personalized regenerative therapy Save
- Silk Fibroin Scaffold-Based 3D Co-Culture Model for Modulation of Chondrogenesis without Hypertrophy via Reciprocal Cross-talk and Paracrine Signaling Save
- Emerging and innovative approaches for wound healing and skin regeneration: Current status and advances Save
- Potential of silk sericin based nanofibrous mats for wound dressing applications Save
- Injectable hydrogels: a new paradigm for osteochondral tissue engineering Save
- 3D functional scaffolds for skin tissue engineering Save