Area of research
Surgery · Biomedical Engineering
Research interest
Research focused on Cell biology and Tissue engineering, with related work in Computational biology, Organ-on-a-chip, Angiogenesis. Notable publications include 'A guide to the organ-on-a-chip', 'The role of macrophage phenotype in vascularization of tissue engineering scaffolds', and 'A Platform for Generation of Chamber-Specific Cardiac Tissues and Disease Modeling'.
Cardiac fibroblast BAG3 regulates TGFBR2 signaling and fibrosis in dilated cardiomyopathy
Grand Challenges at the Interface of Engineering and Medicine
An engineered human cardiac tissue model reveals contributions of systemic lupus erythematosus autoantibodies to myocardial injury
Current challenges and future directions for engineering extracellular vesicles for heart, lung, blood and sleep diseases
A guide to the organ-on-a-chip
A multi-organ chip with matured tissue niches linked by vascular flow
Progress in multicellular human cardiac organoids for clinical applications
Engineering complexity in human tissue models of cancer
Bioengineered optogenetic model of human neuromuscular junction
The Cellular and Physiological Basis for Lung Repair and Regeneration: Past, Present, and Future
A Platform for Generation of Chamber-Specific Cardiac Tissues and Disease Modeling
Quantification of human neuromuscular function through optogenetics
Convergences of Life Sciences and Engineering in Understanding and Treating Heart Failure
Can We Engineer a Human Cardiac Patch for Therapy?
Alternative direct stem cell derivatives defined by stem cell location and graded Wnt signalling
Tissue-engineered autologous grafts for facial bone reconstruction
Distilling complexity to advance cardiac tissue engineering
The role of macrophage phenotype in vascularization of tissue engineering scaffolds
HeLiVa platform: integrated heart-liver-vascular systems for drug testing in human health and disease
Engineering bone tissue from human embryonic stem cells