Area of research
Biomedical Engineering · Surgery
Research interest
Research interests include 3D Printing in Biomedical Research, Tissue Engineering and Regenerative Medicine, Electrospun Nanofibers in Biomedical Applications, and Cancer Cells and Metastasis.
Recapitulating patient-to-patient colorectal cancer tumor heterogeneity using patient-derived xenograft cells in an engineered tissue model
An improved <i>in vitro</i> 3T3-L1 adipocyte model of inflammation and insulin resistance
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
Abstract 6967: Role of CXCL7 in colon cancer cell proliferation
Abstract 6773: Tissue engineered colorectal cancer microspheres for drug screening
Modeling hiPSC-to-Early Cardiomyocyte Differentiation Process using Microsimulation and Markov Chain Models
Establishment of a tissue‐engineered colon cancer model for comparative analysis of cancer cell lines
Ratiometric Inclusion of Fibroblasts Promotes Both Castration‐Resistant and Androgen‐Dependent Tumorigenic Progression in Engineered Prostate Cancer Tissues
Investigating tunable experiment variable effects on hiPSC-CMs maturation via unsupervised learning
Abstract 4567: Transcriptomic analysis of a 3D engineered cancer model recapitulating stage-dependent heterogeneity in colorectal PDX tumors
Abstract 4560: Assay-ready tissue-engineered cancer microspheres for high-throughput screening
Diet as a Risk Factor for Early-Onset Colorectal Adenoma and Carcinoma: A Systematic Review
Droplet Microfluidics-Based Fabrication of Monodisperse Poly(ethylene glycol)-Fibrinogen Breast Cancer Microspheres for Automated Drug Screening Applications
Tunable three-dimensional engineered prostate cancer tissues for in vitro recapitulation of heterogeneous in vivo prostate tumor stiffness
Engineered colorectal cancer tissue recapitulates key attributes of a patient-derived xenograft tumor line
Endothelial colony forming cell rolling and adhesion supported by peptide-grafted hydrogels
Consensus molecular subtype differences linking colon adenocarcinoma and obesity revealed by a cohort transcriptomic analysis
Differentiating Engineered Tissue Images and Experimental Factors to Classify Cardiomyocyte Content
Human Induced Pluripotent Stem Cell Encapsulation Geometry Impacts Three-Dimensional Developing Human Engineered Cardiac Tissue Functionality
Classification of cardiac differentiation outcome, percentage of cardiomyocytes on day 10 of differentiation, for hydrogel‐encapsulated <scp>hiPSCs</scp>
Abstract 175: Production of cancer tissue-engineered microspheres for high-throughput screening
Abstract 3856: Elucidating the role of fibroblasts in CRPC and ADPC progression using 3D engineered prostate cancer tissues
Image classification of experimental yields for cardiomyocyte cells differentiated from human induced pluripotent stem cells
Abstract P1145: Hydrogel Matrix Support Of Suspension-differentiated Hipscs Impacts Resulting <i>In Vitro</i> Cardiac Tissue Functionality
Engineered cardiac tissue microsphere production through direct differentiation of hydrogel-encapsulated human pluripotent stem cells
Consensus molecular subtype differences linking colon adenocarcinoma and obesity revealed by a cohort transcriptomic analysis
Abstract 2181: Obesity and the consensus molecular subtypes of colorectal cancer
Data-Driven Model Development for Cardiomyocyte Production Experimental Failure Prediction
Emulsion‐based encapsulation of pluripotent stem cells in hydrogel microspheres for cardiac differentiation
PFI-TT: An Automated Platform for Production and Distribution of Engineered Tissue Microspheres
Collaborative Research: RECODE: Directing and Controlling Cardiac Differentiation Through Cellular and Microenvironmental Manipulation and Application of Machine-Learning
I-Corps: Spheroidal engineered tissues for more efficient drug discovery
IRES Track I: Process Development for Cell and Tissue Biomanufacturing
Data-Driven Model Development for Cost-Effective, Reliable Cardiac Tissue Manufacturing
CAREER:Injectable Biomimetic Scaffolds to Direct Stem Cell-Derived Cardiomyocyte Differentiation