3D Human Microvessel-on-a-Chip Model for Studying Monocyte-to-Endothelium Adhesion under Flow – Application in Systems Toxicology

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Carine Poussin, Bart Kramer, Henriette L. Lanz, Angelique van den Heuvel, Alexandra Laurent, Thomas Olivier, Marjolein Vermeer, Dariusz Peric, Karine Baumer, Rémi Dulize, Emmanuel Guedj, Nikolai V. Ivanov, Manuel C. Peitsch, Julia Hoeng, Jos Joore

3D Human Microvessel-on-a-Chip Model for Studying Monocyte-to-Endothelium Adhesion under Flow – Application in Systems Toxicology

3D Human Microvessel-on-a-Chip Model for Studying Monocyte-to-Endothelium Adhesion under Flow – Application in Systems Toxicology

3D Human Microvessel-on-a-Chip Model for Studying Monocyte-to-Endothelium Adhesion under Flow – Application in Systems Toxicology

3D Human Microvessel-on-a-Chip Model for Studying Monocyte-to-Endothelium Adhesion under Flow – Application in Systems Toxicology

3D Human Microvessel-on-a-Chip Model for Studying Monocyte-to-Endothelium Adhesion under Flow – Application in Systems Toxicology

3D Human Microvessel-on-a-Chip Model for Studying Monocyte-to-Endothelium Adhesion under Flow – Application in Systems Toxicology

By
Carine Poussin, Bart Kramer, Henriette L. Lanz, Angelique van den Heuvel, Alexandra Laurent, Thomas Olivier, Marjolein Vermeer, Dariusz Peric, Karine Baumer, Rémi Dulize, Emmanuel Guedj, Nikolai V. Ivanov, Manuel C. Peitsch, Julia Hoeng, Jos Joore

3D Human Microvessel-on-a-Chip Model for Studying Monocyte-to-Endothelium Adhesion under Flow – Application in Systems Toxicology

3D Human Microvessel-on-a-Chip Model for Studying Monocyte-to-Endothelium Adhesion under Flow – Application in Systems Toxicology

By
Carine Poussin, Bart Kramer, Henriette L. Lanz, Angelique van den Heuvel, Alexandra Laurent, Thomas Olivier, Marjolein Vermeer, Dariusz Peric, Karine Baumer, Rémi Dulize, Emmanuel Guedj, Nikolai V. Ivanov, Manuel C. Peitsch, Julia Hoeng, Jos Joore