Area of research
Biomedical Engineering · Hepatology
Research interest
Research interests include 3D Printing in Biomedical Research, Liver physiology and pathology, Cancer Cells and Metastasis, and Cellular Mechanics and Interactions.
Biology-inspired dynamic microphysiological system approaches to revolutionize basic research, healthcare and animal welfare
System- and sample-agnostic isotropic three-dimensional microscopy by weakly physics-informed, domain-shift-resistant axial deblurring
WERF Endometriosis Phenome and Biobanking Harmonisation Project for Experimental Models in Endometriosis Research (EPHect-EM-Pain): methods to assess pain behaviour in rodent models of endometriosis
Deep and Dynamic Metabolic and Structural Imaging in Living Tissues
Deep and Isotropic Structural and Metabolic Imaging for Nucleolar Dynamics in Living Biosystems
A Call for New Theories on the Pathogenesis and Pathophysiology of Endometriosis
An immune-competent human gut microphysiological system enables inflammation-modulation by Faecalibacterium prausnitzii
Deep and dynamic metabolic and structural imaging in living tissues
Organoid co-culture model of the human endometrium in a fully synthetic extracellular matrix enables the study of epithelial-stromal crosstalk
The dynamic clustering of insulin receptor underlies its signaling and is disrupted in insulin resistance
The nuclear receptor THRB facilitates differentiation of human PSCs into more mature hepatocytes
ENDOCELL-Seud: a Delphi protocol to harmonise methods in endometrial cell culturing
A microenvironment-inspired synthetic three-dimensional model for pancreatic ductal adenocarcinoma organoids
Human physiomimetic model integrating microphysiological systems of the gut, liver, and brain for studies of neurodegenerative diseases
Coculture of primary human colon monolayer with human gut bacteria
Menstruation: science and society
Gut-Liver Physiomimetics Reveal Paradoxical Modulation of IBD-Related Inflammation by Short-Chain Fatty Acids
Fully synthetic matrices for in vitro culture of primary human intestinal enteroids and endometrial organoids
Primary Human Colonic Mucosal Barrier Crosstalk with Super Oxygen-Sensitive Faecalibacterium prausnitzii in Continuous Culture
Genetic circuit design automation for the gut resident species Bacteroides thetaiotaomicron
Engineering PEG-based hydrogels to foster efficient endothelial network formation in free-swelling and confined microenvironments
The Vaginal Microbiome as a Tool to Predict rASRM Stage of Disease in Endometriosis: a Pilot Study
OrgaQuant: Human Intestinal Organoid Localization and Quantification Using Deep Convolutional Neural Networks
Interconnected Microphysiological Systems for Quantitative Biology and Pharmacology Studies
Perspective: The promise of multi-cellular engineered living systems
Folding artificial mucosa with cell-laden hydrogels guided by mechanics models
A Model of Dormant-Emergent Metastatic Breast Cancer Progression Enabling Exploration of Biomarker Signatures
Closed-loop feedback control for microfluidic systems through automated capacitive fluid height sensing
Chemoproteomics of matrix metalloproteases in a model of cartilage degeneration suggests functional biomarkers associated with posttraumatic osteoarthritis
Integrated Gut and Liver Microphysiological Systems for Quantitative In Vitro Pharmacokinetic Studies
REU Site: Biological Engineering Research Experience for Undergraduates - BE REU
REU Site: Biological Engineering Research Experience for Undergraduates - BE REU
Biotechnology Process Engineering Research Center
Rural Middle Grades Mathematics Capacity-Building Standards-Based Curriculum Planning Project for West Central Arkansas Schools
Development of a Minimal Synthetic Extracellular Matrix Which Stimulates Cell Migration (Collaborative Research)
Presidential Young Investigator Award: Cell Interactions with Biomaterials