Ramesh Subbiah
Also known as: Ramy
Oregon Health and Science University, Georgia Institute of Technology, Korea Institute of Science and Technology, Gachon University, Chung-Ang University, Tamil Nadu Dr MGR Medical University
About
Ramesh Subbiah has obtained a Bachelor in Pharmacy from KMCH College of pharmacy, affiliated with Dr. MGR Medical University in Tamil Nadu, India. Dr. Subbiah was awarded full-scholarship throughout MS and Ph.D. programs in Biomedical Engineering respectively from Gachon University and Korea Institute of Science and Technology (KIST) South Korea. His research program is focused on Growth factors delivery using nano/microparticles, and tunable cell-derived extracellular matrices for the regeneration of vascularized bone tissue. His collective Ph.D. research has implications across a variety of tissue engineering and regenerative medicine field such as nanoparticles-in-microcapsules for dual growth factors delivery, investigation of cellular mechanics, fabrication of scaffold based on biopolymers, tough hydrogel for Intervertebral disc replacement, fractal cut based 3D geometric scaffold for investigating the mechanism of wound healing. He is currently a Post-Doctorate Fellow with Dr. Luiz Bertassoni at OHSU prior to this he was at Georgia Institute of Technology working with Prof. Robert E. Guldberg. His passion is to make valuable contributions to the regeneration of severely injured body extremities and circulatory system.
Employment
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Oregon Health and Science University Postdoctoral Fellow2019 - Present
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Georgia Institute of Technology Postdoctoral researcher2017 - 2019
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Chung-Ang University Post doctoral researcher2016 - 2017
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Korea Institute of Science and Technology Visiting scientist2011 - 2011
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GlaxoSmithKline Pharmaceuticals Ltd Medical representative2005 - 2008
Education
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Korea Institute of Science and Technology PhD2011 - Present
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Gachon University MS in Biomedical science2009 - 2012
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Tamil Nadu Dr MGR Medical University Bachelor in Pharamcy2001 - 2005
Projects & Funding
Projects & funding information is unavailable.
Publications (53)
- Perivascular cells function as key mediators of mechanical and structural changes in vascular capillaries Save
- Intercellular junction-driven stromal cell stacking in a confined 3D microcavity Save
- Perivascular cells function as mechano-structural sensors of vascular capillaries Save
- High‐Throughput Bioprinting of Geometrically‐Controlled Pre‐Vascularized Injectable Microgels for Accelerated Tissue Regeneration Save
- Effect of Target Power on Microstructure, Tribological Performance and Biocompatibility of Magnetron Sputtered Amorphous Carbon Coatings Save
- Engineering of an Osteoinductive and Growth Factor‐Free Injectable Bone‐Like Microgel for Bone Regeneration Save
- Vascular inflammation exposes perivascular cells to SARS-CoV-2 infection Save
- Triple growth factor delivery promotes functional bone regeneration following composite musculoskeletal trauma Save
- Prevascularized hydrogels with mature vascular networks promote the regeneration of critical‐size calvarial bone defects in vivo Save
- Nanoscale mineralization of cell-laden methacrylated gelatin hydrogels using calcium carbonate–calcium citrate core–shell microparticles Save