Ming‐Hsi Huang
Papers
3
Total Citations
252
H-Index
2
About
Ming-Hsi Huang is a biomaterials and tissue engineering researcher whose work has made meaningful contributions to the design and fabrication of biodegradable polymer scaffolds for regenerative medicine. Specializing in the development and processing of synthetic polymers such as polycaprolactone (PCL), polyethylene glycol (PEG), and polylactic acid (PLA), Huang has focused on engineering three-dimensional scaffolds with precisely tunable mechanical, structural, and biological properties to meet the demands of diverse target tissues. Among Huang's most recognized contributions is pioneering work utilizing rapid prototyping systems to fabricate PEG-PCL-PLA scaffolds featuring fully interconnected porous networks and controllable hydrophilicity — a landmark 2005 study that has garnered 128 citations. A subsequent 2009 investigation into the processing of PCL homopolymers and PCL-PEG copolymers into 3D scaffolds, examining cellular responses, further cemented Huang's reputation in the field, accumulating 122 citations. These studies collectively highlight Huang's commitment to bridging advanced manufacturing techniques with biomaterial science. Through rigorous in vitro characterization of scaffold physico-chemical and mechanical properties, Huang's research has provided foundational insights that continue to guide the development of next-generation tissue engineering constructs.
Research Focus
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Top Papers
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