429 results on '"Gawlitta, Debby"'
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2. Beyond resorption: osteoclasts as drivers of bone formation
3. Biofabricating the vascular tree in engineered bone tissue
4. Evaluating material-driven regeneration in a tissue engineered human in vitro bone defect model
5. Unraveling devitalization: its impact on immune response and ectopic bone remodeling from autologous and allogeneic callus mimics.
6. Unraveling devitalization: its impact on immune response and ectopic bone remodeling from autologous and allogeneic callus mimics
7. The first steps toward the creation of a bioink for endochondral bone regeneration
8. Hybrid Co-Spinning and Melt Electrowriting Approach Enables Fabrication of Heterotypic Tubular Scaffolds Resembling the Non-Linear Mechanical Properties of Human Blood Vessels
9. Contrast enhanced computed tomography for real-time quantification of glycosaminoglycans in cartilage tissue engineered constructs
10. Hybrid Co‐Spinning and Melt Electrowriting Approach Enables Fabrication of Heterotypic Tubular Scaffolds Resembling the Non‐Linear Mechanical Properties of Human Blood Vessels.
11. Jaw Bone Invasion of Oral Squamous Cell Carcinoma Is Associated with Osteoclast Count and Expression of Its Regulating Proteins in Patients and Organoids
12. Bone Regeneration in A Large Animal Model Featuring A Modular Off‐The‐Shelf Soft Callus Mimetic
13. Taking the endochondral route to craniomaxillofacial bone regeneration: A logical approach?
14. Up-scaled production and differentiation of chondrogenic aggregates for endochondral bone regeneration
15. Biofabricating the vascular tree in engineered bone tissue
16. Endochondral bone regeneration with iPSCs: state of the art and methods
17. The importance of proteoglycans in articular cartilage
18. Jaw Bone Invasion of Oral Squamous Cell Carcinoma Is Associated with Osteoclast Count and Expression of Its Regulating Proteins in Patients and Organoids
19. Bone Regeneration in A Large Animal Model Featuring A Modular Off-The-Shelf Soft Callus Mimetic
20. Biofabricating the vascular tree in engineered bone tissue
21. Osteoinductive calcium phosphate with submicron topography as bone graft substitute for maxillary sinus floor augmentation: A translational study
22. Special issue: Biofabrication for Orthopedic, Maxillofacial, and Dental Applications
23. Evaluating material-driven regeneration in a tissue engineered human in vitro bone defect model
24. Gelatin-Methacryloyl Hydrogels: Towards Biofabrication-Based Tissue Repair
25. Osteoinductive calcium phosphate with submicron topography as bone graft substitute for maxillary sinus floor augmentation: A translational study
26. Special issue: Biofabrication for Orthopedic, Maxillofacial, and Dental Applications
27. Endochondral bone formation in gelatin methacrylamide hydrogel with embedded cartilage-derived matrix particles
28. Flow-perfusion interferes with chondrogenic and hypertrophic matrix production by mesenchymal stem cells
29. Covalent attachment of a three-dimensionally printed thermoplast to a gelatin hydrogel for mechanically enhanced cartilage constructs
30. In Vitro Muscle Model Studies
31. Evaluating material-driven regeneration in a tissue engineered human in vitro bone defect model
32. An In Vitro Model to Test the Influence of Immune Cell Secretome on Mesenchymal Stromal Cell Osteogenic Differentiation
33. Acceleration of Bone Regeneration Induced by a Soft-Callus Mimetic Material
34. Acceleration of Bone Regeneration Induced by a Soft-Callus Mimetic Material
35. Effect of Bone Morphogenetic Protein 2 (BMP-2) on Mesenchymal Stromal Cell (MSC) chondrogenesis and detection methods for BMP-2 remnants in engineered cartilage tissues
36. Course outline: Regenerative medicine for musculoskeletal tissues
37. Cardiovascular tissue engineering and regeneration: A plead for further knowledge convergence
38. Cardiovascular Tissue Engineering and Regeneration: A Plead for Further Knowledge Convergence
39. An In Vitro Model to Test the Influence of Immune Cell Secretome on Mesenchymal Stromal Cell Osteogenic Differentiation
40. Development and Characterization of Gelatin-Norbornene Bioink to Understand the Interplay between Physical Architecture and Micro-capillary Formation in Biofabricated Vascularized Constructs
41. Three-Dimensional Bioprinting and Its Potential in the Field of Articular Cartilage Regeneration
42. In vivo biocompatibility and biodegradation of 3D-printed porous scaffolds based on a hydroxyl-functionalized poly(ε-caprolactone)
43. Cardiovascular tissue engineering and regeneration: A plead for further knowledge convergence
44. Preparation and characterization of a three-dimensional printed scaffold based on a functionalized polyester for bone tissue engineering applications
45. Development and Characterization of Gelatin‐Norbornene Bioink to Understand the Interplay between Physical Architecture and Micro‐Capillary Formation in Biofabricated Vascularized Constructs (Adv. Healthcare Mater. 2/2022)
46. Biofabricating the Vascular Tree in Engineered Bone Tissue
47. Does Implant Coating With Antibacterial-Loaded Hydrogel Reduce Bacterial Colonization and Biofilm Formation in Vitro?
48. Acceleration of Bone Regeneration Induced by a Soft‐Callus Mimetic Material
49. Development and Characterization of Gelatin‐Norbornene Bioink to Understand the Interplay between Physical Architecture and Micro‐Capillary Formation in Biofabricated Vascularized Constructs
50. High-resolution lithographic biofabrication of hydrogels with complex microchannels from low-temperature-soluble gelatin bioresins
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