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Anja Lode

Anja Lode

D-Index & Metrics

Materials Science

D-Index
51
Citations
6943
World Ranking
10048
National Ranking
561

Overview

Anja Lode is affiliated with TU Dresden in Germany and specializes primarily in engineering with a focus on biomedical engineering. Their research spans a variety of subfields including automotive engineering, surgery, biomaterials, and genetics. The main topics addressed in their work include 3D printing in biomedical research, bone tissue engineering materials, additive manufacturing and 3D printing technologies, innovative microfluidic and catalytic techniques, tissue engineering and regenerative medicine, electrospun nanofibers in biomedical applications, and periodontal regeneration and treatments.

Their publication record includes numerous papers featured in several scientific venues. Frequent publication outlets for their research include Biofabrication, Advanced Healthcare Materials, Scientific Reports, Frontiers in Bioengineering and Biotechnology, and Acta Biomaterialia.

Among recent papers by Anja Lode are:

  • Engineering considerations on extrusion-based bioprinting: interactions of material behavior, mechanical forces and cells in the printing needle, 2020, Biofabrication
  • 3D Bioprinting of osteochondral tissue substitutes - in vitro-chondrogenesis in multi-layered mineralized constructs, 2020, Scientific Reports
  • Methylcellulose - a versatile printing material that enables biofabrication of tissue equivalents with high shape fidelity, 2020, Biomaterials Science
  • Nanoclay-based 3D printed scaffolds promote vascular ingrowth ex vivo and generate bone mineral tissue in vitro and in vivo, 2020, Biofabrication
  • A Novel Plasma-Based Bioink Stimulates Cell Proliferation and Differentiation in Bioprinted, Mineralized Constructs, 2020, ACS Applied Materials & Interfaces

Collaboration is an important aspect of their research work. Frequent coauthors include Michael Gelinsky, Tilman Ahlfeld, David Kilian, Anne Bernhardt, and Corina Vater.

Best Publications

  • Development of a clay based bioink for 3D cell printing for skeletal application.

    T. Ahlfeld;Gianluca Cidonio;D. Kilian;S. Duin

  • Three-dimensional plotting of a cell-laden alginate/methylcellulose blend: towards biofabrication of tissue engineering constructs with clinically relevant dimensions.

    Kathleen Schütz;Anna-Maria Placht;Birgit Paul;Sophie Brüggemeier

  • Jellyfish collagen scaffolds for cartilage tissue engineering.

    Birgit Hoyer;Anne Bernhardt;Anja Lode;Sascha Heinemann

  • Hierarchical mesoporous bioactive glass/alginate composite scaffolds fabricated by three-dimensional plotting for bone tissue engineering

    Yongxiang Luo;Chengtie Wu;Anja Lode;Michael Gelinsky

  • A novel strontium(II)-modified calcium phosphate bone cement stimulates human-bone-marrow-derived mesenchymal stem cell proliferation and osteogenic differentiation in vitro.

    M. Schumacher;A. Lode;A. Helth;M. Gelinsky

  • Alginate/Nanohydroxyapatite Scaffolds with Designed Core/Shell Structures Fabricated by 3D Plotting and in Situ Mineralization for Bone Tissue Engineering

    Yongxiang Luo;Anja Lode;Chengtie Wu;Jiang Chang

  • Direct plotting of three-dimensional hollow fiber scaffolds based on concentrated alginate pastes for tissue engineering.

    Yongxiang Luo;Anja Lode;Michael Gelinsky

  • Green bioprinting: Fabrication of photosynthetic algae‐laden hydrogel scaffolds for biotechnological and medical applications

    Anja Lode;Felix Krujatz;Sophie Brüggemeier;Mandy Quade

  • 3D plotting of growth factor loaded calcium phosphate cement scaffolds

    Ashwini Rahul Akkineni;Yongxiang Luo;Matthias Schumacher;Berthold Nies

  • Engineering considerations on extrusion-based bioprinting: interactions of material behavior, mechanical forces and cells in the printing needle.

    Julia Emmermacher;David Spura;Jasmina Cziommer;David Kilian

  • Mineralised collagen—an artificial, extracellular bone matrix—improves osteogenic differentiation of bone marrow stromal cells

    Anne Bernhardt;Anja Lode;Sabine Boxberger;Wolfgang Pompe

  • Fabrication of porous scaffolds by three-dimensional plotting of a pasty calcium phosphate bone cement under mild conditions

    Anja Lode;Katrin Meissner;Yongxiang Luo;Frank Sonntag

  • Strontium-modified premixed calcium phosphate cements for the therapy of osteoporotic bone defects

    A. Lode;C. Heiss;G. Knapp;J. Thomas

  • 3D Bioprinting of osteochondral tissue substitutes - in vitro-chondrogenesis in multi-layered mineralized constructs

    David Kilian;Tilman Ahlfeld;Ashwini Rahul Akkineni;Anne Bernhardt

  • 3D Bioprinting of Functional Islets of Langerhans in an Alginate/Methylcellulose Hydrogel Blend

    Sarah Duin;Kathleen Schütz;Tilman Ahlfeld;Susann Lehmann

  • Cultivation of human bone marrow stromal cells on three-dimensional scaffolds of mineralized collagen: influence of seeding density on colonization, proliferation and osteogenic differentiation.

    Anja Lode;Anne Bernhardt;Michael Gelinsky

  • Design and Fabrication of Complex Scaffolds for Bone Defect Healing: Combined 3D Plotting of a Calcium Phosphate Cement and a Growth Factor-Loaded Hydrogel

    Tilman Ahlfeld;Ashwini Rahul Akkineni;Yvonne Förster;Tino Köhler

  • Fabrication and characterization of regenerated silk scaffolds reinforced with natural silk fibers for bone tissue engineering.

    Sahba Mobini;Sahba Mobini;Sahba Mobini;Birgit Hoyer;Mehran Solati-Hashjin;Anja Lode

  • A versatile method for combining different biopolymers in a core/shell fashion by 3D plotting to achieve mechanically robust constructs.

    Ashwini Rahul Akkineni;Tilman Ahlfeld;Anja Lode;Michael Gelinsky

  • Proliferation and osteogenic differentiation of human bone marrow stromal cells on alginate–gelatine–hydroxyapatite scaffolds with anisotropic pore structure

    A. Bernhardt;F. Despang;A. Lode;A. Demmler

  • Methylcellulose – a versatile printing material that enables biofabrication of tissue equivalents with high shape fidelity

    T Ahlfeld;V Guduric;S Duin;A R Akkineni

  • Well-ordered biphasic calcium phosphate–alginate scaffolds fabricated by multi-channel 3D plotting under mild conditions

    Yongxiang Luo;Anja Lode;Frank Sonntag;Berthold Nies

  • Concentrated gelatin/alginate composites for fabrication of predesigned scaffolds with a favorable cell response by 3D plotting

    Yongxiang Luo;Yongxiang Luo;Anja Lode;Ashwini Rahul Akkineni;Michael Gelinsky

Frequent Co-Authors

Uwe Gbureck
Uwe Gbureck University of Würzburg
Chengtie Wu
Chengtie Wu Chinese Academy of Sciences
Hartmut Worch
Hartmut Worch TU Dresden
Annett Gebert
Annett Gebert Leibniz-Institut für Festkörper- und Werkstoffforschung Dresden
Hermann Ehrlich
Hermann Ehrlich TU Bergakademie Freiberg
Paul Simon
Paul Simon Max Planck Institute for Chemical Physics of Solids
Wolfgang Pompe
Wolfgang Pompe TU Dresden
Willem F. Wolkers
Willem F. Wolkers University of Hannover
Richard O.C. Oreffo
Richard O.C. Oreffo University of Southampton

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