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Anke M de Leeuw
Anke M de Leeuw
Institute for Biomechanics, ETH Zurich
Verified email at hest.ethz.ch - Homepage
Title
Cited by
Cited by
Year
Long-term mechanical loading is required for the formation of 3D bioprinted functional osteocyte bone organoids
J Zhang, J Griesbach, M Ganeyev, AK Zehnder, P Zeng, GN Schädli, ...
Biofabrication 14 (3), 035018, 2022
262022
Time-lapsed imaging of nanocomposite scaffolds reveals increased bone formation in dynamic compression bioreactors
GN Schädli, JR Vetsch, RP Baumann, AM de Leeuw, E Wehrle, M Rubert, ...
Communications biology 4 (1), 110, 2021
202021
Culture of 3D bioprinted bone constructs requires an increased fluid dynamic stimulation
VL Mainardi, M Rubert, C Sabato, A De Leeuw, C Arrigoni, G Dubini, ...
Acta Biomaterialia 153, 374-385, 2022
82022
Optimizing barium titanate nanocomposite bone scaffolds for biomineralization in dynamic compression bioreactors using time-lapsed microstructural imaging and smart thresholding
GN Schädli, H David, AM de Leeuw, F Carlson, L Tenisch, P Muff, ...
Frontiers in Materials 8, 796044, 2022
62022
Physiological cell bioprinting density in human bone-derived cell-laden scaffolds enhances matrix mineralization rate and stiffness under dynamic loading
AM de Leeuw, R Graf, PJ Lim, J Zhang, GN Schädli, S Peterhans, ...
Frontiers in Bioengineering and Biotechnology 12, 1310289, 2024
2024
A novel 3D-bioprinted patient-specific biomimetic bone organoid to model osteogenesis imperfecta
A De Leeuw, GN Schadli, C Steffi, J Griesbach, PJ Lim, M Ruger, ...
TISSUE ENGINEERING PART A 29 (13-14), 2023
2023
Patient-specific Osteogenesis Imperfecta Bone Organoids Exhibit Similar Stiffness And Mechanoregulation Despite Higher Mineralization
JK Griesbach, A de Leeuw, FA Schulte, T Minacci, PJ Lim, M Ruger, ...
TISSUE ENGINEERING PART A 29 (9-10), 2023
2023
TIME-LAPSED MICROSTRUCTURAL IMAGING REVEALS INCREASED BONE MINERALIZATION IN POLYMER NANOCOMPOSITE SCAFFOLDS CULTURED UNDER CYCLIC LOADING IN DYNAMIC COMPRESSION BIOREACTORS
GN Schadli, JR Vetsch, RP Baumann, AM de Leeuw, E Wehrle, M Rubert, ...
TISSUE ENGINEERING PART A 28, S251-S251, 2022
2022
TOWARDS THE DEVELOPMENT OF HUMAN-BASED BONE ORGANOIDS FOR PERSONALIZED MEDICINE
A de Leeuw, B Kodiyan, J Zhang, PJ Lim, M Ruger, M Rohrbach, C Giunta, ...
TISSUE ENGINEERING PART A 28, S424-S424, 2022
2022
Development of a 3D bioprinted human-based bone model using patient-derived cells
A de Leeuw, J Zhang, PJ Lim, M Ruger, M Rohrbach, C Giunta, R Mueller, ...
JOURNAL OF BONE AND MINERAL RESEARCH 35, 302-303, 2020
2020
Physiological Cell Bioprinting Density in Personalized 3d Bone Organoids Enhances Matrix Mineralization Rate and Stiffness Under Dynamic Loading Conditions
A de Leeuw, R Graf, PJ Lim, J Zhang, GN Schädli, S Peterhans, ...
Available at SSRN 4561639, 0
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