Raed I. Felimban
Papers
3
Total Citations
58
H-Index
3
About
Raed I. Felimban is a pioneering biomedical researcher whose work sits at the compelling intersection of 3D bioprinting, tissue engineering, and disease modeling. His research focuses on developing sophisticated biomimetic systems that replicate complex human tissue environments, enabling more accurate preclinical investigation of neurological and hematological conditions. Felimban's most celebrated contribution — garnering 39 citations — is his development of a 3D bioprinted Parkinson's disease model using dopaminergic neurons embedded within ultrashort self-assembling peptide scaffolds, offering a groundbreaking platform to study neurodegenerative mechanisms. Extending this expertise to oncology, he engineered a three-dimensional bone marrow niche-like model of acute myeloid leukemia using robotic multicellular bioprinting, providing researchers with a powerful tool to investigate therapy resistance and relapse — work that has already accumulated 15 citations. More recently, his high-throughput robotic bioprinting platform has been applied to probe the effects of pregabalin on embryonic cortical neuron development, addressing critical gaps in drug safety research. Across his portfolio, Felimban demonstrates a consistent commitment to translating advanced materials science and automation into clinically meaningful disease models, positioning him as an innovative force in next-generation biomedical research.
Research Focus
Key Achievements
Top Papers
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