Falguni Pati
Indian Institute of Technology Hyderabad, Indian Institute of Technology Kharagpur, Jadavpur University
About
Dr. Falguni Pati is currently a Professor and the Head of the Department of Biomedical Engineering at IIT Hyderabad. He obtained his Ph.D. from IIT Kharagpur and gained valuable international research experience through postdoctoral appointments at POSTECH, South Korea, and KTH Royal Institute of Technology, Sweden, before joining IIT Hyderabad in 2015. Dr. Pati leads the Biofabrication and Tissue Engineering (BioFabTE) Laboratory at IITH, where his research focuses on advancing tissue engineering through 3D bioprinting technologies. His lab is dedicated to developing innovative tissue-engineered products and physiologically relevant in vitro tissue and organ models, with particular emphasis on bioink development, bioprinting methods, and on-demand fabrication of tissue analogs.
Employment
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Indian Institute of Technology Hyderabad Professor2025 - Present
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Indian Institute of Technology Hyderabad Associate Professor2020 - 2025
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Indian Institute of Technology Hyderabad Assistant Professor2015 - 2020
Education
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Indian Institute of Technology Kharagpur PhD2007 - 2011
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Jadavpur University M.E.2005 - 2007
Projects & Funding
Projects & funding information is unavailable.
Publications (72)
- Bioprinted cell-instructive lung-dECM constructs for reconstructing an immuno-regenerative pulmonary microenvironment Save
- Engineering Multicellular Breast Cancer Spheroids in Decellularized Adipose Tissue Hydrogels Using a Microfluidic Platform to Recapitulate Tumor Microenvironment Complexity Save
- REFRESH—Reversible Embedded Bioprinting for Faster Reinforcement and Structuring of dECM Hydrogels Save
- 4D Bioprinting of Self‐Morphed Corneal Equivalents Using Smart Hybrid Hydrogels Save
- Chipless Millifluidics Device for Rapid Fabrication of Hepatic Spheroids with Decellularized Liver Matrix Save
- Hybrid Biofabrication of Multilayered, Self-Supporting Tracheal Constructs Using Functionalized dECM Hydrogels Save
- Visible Light Cross-Linked Methacrylated Silk Fibroin Enables Enhanced Osteogenic Response in Bioprinted Dual-Layer Guided Bone Regeneration Membrane Save
- Recent trends in the development of in vitro 3D kidney models Save
- Bioprinting a resilient and transparent cornea stroma equivalent: harnessing dual crosslinking strategy with decellularized cornea matrix and silk fibroin hybrid Save
- Engineering anisotropic tissue analogues: harnessing synergistic potential of extrusion-based bioprinting and extracellular matrix-based bioink Save