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Communications Biology|July 22, 2022
Recent trends in bioartificial muscle engineering and their applications in cultured meat, biorobotic systems and biohybrid implantsEva Schätzlein, Andreas BlaeserPolymers|June 24, 2022
3D-Printed PLA-Bioglass Scaffolds with Controllable Calcium Release and MSC Adhesion for Bone Tissue EngineeringEva Schätzlein, Christoph Kicker, Nicolas Söhling, et al.International Journal of Bioprinting|July 17, 2023
A new 3D-printed polylactic acid-bioglass composite for bone tissue engineering induces angiogenesis <i>in vitro</i> and <i>in ovo</i>Simon Cichos, Eva Schätzlein, Nadine Wiesmann-Imilowski, et al.Polymers|May 13, 2026
Manufacturing of Graphene-Nanoplatelet- and Carbon-Nanofiber-Filled PLA Composite Filaments for Tissue EngineeringEva Schätzlein, Phil Joel Groenewold, Salomé Luís, et al.Materials Horizons|October 7, 2021
Freeform direct laser writing of versatile topological 3D scaffolds enabled by intrinsic support hydrogelSebastian Hasselmann, Lukas Hahn, Thomas Lorson, et al.Biomaterials Science|April 28, 2026
Biofabrication of 3D-printed fibrous scaffolds for large muscle tissue engineering: enhancing scalability, myotube formation and surgical handlingEva Schätzlein, Oliver Weeger, Sebastian Scholpp, et al.International Journal of Bioprinting|November 21, 2022
In vitro Evaluation of a 20% Bioglass-Containing 3D printable PLA Composite for Bone Tissue EngineeringNicolas Söhling, Shahed Al Zoghool, Eva Schätzlein, et al.Pageof 1