Area of research
Molecular Biology · Surgery
Research interest
Research focused on Induced pluripotent stem cell and Bioreactor, with related work in Wnt signaling pathway, Cell biology, Bioprocess. Notable publications include 'Impact of Feeding Strategies on the Scalable Expansion of Human Pluripotent Stem Cells in Single-Use Stirred Tank Bioreactors', 'High Density Bioprocessing of Human Pluripotent Stem Cells by Metabolic Control and in Silico Modeling', and 'Continuous WNT Control Enables Advanced hPSC Cardiac Processing and Prognostic Surface Marker Identification in Chemically Defined Suspension Culture'.
Standardized production of hPSC-derived cardiomyocyte aggregates in stirred spinner flasks
Hydrogel microsphere stem cell encapsulation enhances cardiomyocyte differentiation and functionality in scalable suspension system
Chemically defined production of engineered cardiac tissue microspheres from hydrogel‐encapsulated pluripotent stem cells
High Density Bioprocessing of Human Pluripotent Stem Cells by Metabolic Control and in Silico Modeling
Data-Driven Model Development for Cardiomyocyte Production Experimental Failure Prediction
Prediction of Human Induced Pluripotent Stem Cell Cardiac Differentiation Outcome by Multifactorial Process Modeling
Continuous WNT Control Enables Advanced hPSC Cardiac Processing and Prognostic Surface Marker Identification in Chemically Defined Suspension Culture
Large-scale production of megakaryocytes in microcarrier-supported stirred suspension bioreactors
Impact of Feeding Strategies on the Scalable Expansion of Human Pluripotent Stem Cells in Single-Use Stirred Tank Bioreactors