3D bioprinting of methacrylated hyaluronic acid (MeHA) hydrogel with intrinsic osteogenicity MT Poldervaart, B Goversen, M De Ruijter, A Abbadessa, FPW Melchels, ... PloS one 12 (6), e0177628, 2017 | 345 | 2017 |
Simultaneous micropatterning of fibrous meshes and bioinks for the fabrication of living tissue constructs M de Ruijter, A Ribeiro, I Dokter, M Castilho, J Malda Advanced healthcare materials 8 (7), 1800418, 2019 | 132 | 2019 |
Combining multi-scale 3D printing technologies to engineer reinforced hydrogel-ceramic interfaces P Diloksumpan, M de Ruijter, M Castilho, U Gbureck, T Vermonden, ... Biofabrication 12 (2), 025014, 2020 | 108 | 2020 |
Hydrogel-based reinforcement of 3D bioprinted constructs FPW Melchels, MM Blokzijl, R Levato, QC Peiffer, M De Ruijter, ... Biofabrication 8 (3), 035004, 2016 | 103 | 2016 |
Out‐of‐plane 3D‐printed microfibers improve the shear properties of hydrogel composites M de Ruijter, A Hrynevich, JN Haigh, G Hochleitner, M Castilho, J Groll, ... Small 14 (8), 1702773, 2018 | 82 | 2018 |
Multitechnology biofabrication: a new approach for the manufacturing of functional tissue structures? M Castilho, M de Ruijter, S Beirne, CC Villette, K Ito, GG Wallace, J Malda Trends in biotechnology 38 (12), 1316-1328, 2020 | 81 | 2020 |
Hydrogel-based bioinks for cell electrowriting of well-organized living structures with micrometer-scale resolution M Castilho, R Levato, PN Bernal, M de Ruijter, CY Sheng, J van Duijn, ... Biomacromolecules 22 (2), 855-866, 2021 | 68 | 2021 |
Melt electrowriting onto anatomically relevant biodegradable substrates: Resurfacing a diarthrodial joint QC Peiffer, M de Ruijter, J van Duijn, D Crottet, E Dominic, J Malda, ... Materials & design 195, 109025, 2020 | 49 | 2020 |
Volumetric printing across melt electrowritten scaffolds fabricates multi‐material living constructs with tunable architecture and mechanics G Größbacher, M Bartolf‐Kopp, C Gergely, PN Bernal, S Florczak, ... Advanced Materials 35 (32), 2300756, 2023 | 41 | 2023 |
Bioink with cartilage-derived extracellular matrix microfibers enables spatial control of vascular capillary formation in bioprinted constructs ML Terpstra, J Li, A Mensinga, M de Ruijter, MHP van Rijen, ... Biofabrication 14 (3), 034104, 2022 | 33 | 2022 |
Biofabrication of a shape-stable auricular structure for the reconstruction of ear deformities IA Otto, PE Capendale, JP Garcia, M De Ruijter, RFM Van Doremalen, ... Materials Today Bio 9, 100094, 2021 | 25 | 2021 |
Convergence of melt electrowriting and extrusion-based bioprinting for vascular patterning of a myocardial construct MJ Ainsworth, N Chirico, M de Ruijter, A Hrynevich, I Dokter, JPG Sluijter, ... Biofabrication 15 (3), 035025, 2023 | 11 | 2023 |
The complexity of joint regeneration: How an advanced implant could fail by its in vivo proven bone component P Diloksumpan, F Abinzano, M de Ruijter, A Mensinga, S Plomp, I Khan, ... J. Trial Error 10, e3, 2021 | 11 | 2021 |
Composite graded melt electrowritten scaffolds for regeneration of the periodontal ligament-to-bone interface N Golafshan, M Castilho, A Daghrery, M Alehosseini, T van de Kemp, ... ACS applied materials & interfaces 15 (10), 12735-12749, 2023 | 10 | 2023 |
Converged Biofabrication: Simultaneous Micropatterning of Fibrous Meshes and Bioinks for the Fabrication of Living Tissue Constructs (Adv. Healthcare Mater. 7/2019) M de Ruijter, A Ribeiro, I Dokter, M Castilho, J Malda Advanced Healthcare Materials 8 (7), 1970024, 2019 | 7 | 2019 |
Load-induced fluid pressurisation in hydrogel systems before and after reinforcement by melt-electrowritten fibrous meshes EK Moo, M Ebrahimi, A Hrynevich, M de Ruijter, M Castilho, J Malda, ... Journal of the mechanical behavior of biomedical materials 143, 105941, 2023 | 4 | 2023 |
Volumetric Printing Across Melt Electrowritten Scaffolds Fabricates Multi‐Material Living Constructs with Tunable Architecture and Mechanics (Adv. Mater. 32/2023) G Größbacher, M Bartolf‐Kopp, C Gergely, PN Bernal, S Florczak, ... Advanced Materials 35 (32), 2370230, 2023 | 3 | 2023 |
Orthotopic equine study confirms the pivotal importance of structural reinforcement over the pre‐culture of cartilage implants M de Ruijter, P Diloksumpan, I Dokter, H Brommer, IH Smit, R Levato, ... Bioengineering & Translational Medicine 9 (1), e10614, 2024 | 2 | 2024 |
Covalent Grafting of Functionalized MEW Fibers to Silk Fibroin Hydrogels to Obtain Reinforced Tissue Engineered Constructs M Viola, MJ Ainsworth, M Mihajlovic, G Cedillo-Servin, ... Biomacromolecules 25 (3), 1563-1577, 2024 | 1 | 2024 |
A gap-filling, regenerative implant for open-wedge osteotomy M Rikkers, HC Nguyen, N Golafshan, M de Ruijter, R Levato, LA Vonk, ... Journal of Cartilage & Joint Preservation 3 (4), 100117, 2023 | 1 | 2023 |