All Stories

  1. Zn-Loaded and Calcium Phosphate-Coated Degradable Silica Nanoparticles Can Effectively Promote Osteogenesis in Human Mesenchymal Stem Cells
  2. Peptide-Modified Nano-Bioactive Glass for Targeted Immobilization of Native VEGF
  3. Mesoporous bioactive glass composition effects on degradation and bioactivity
  4. Cobalt-containing calcium phosphate induces resorption of biomineralized collagen by human osteoclasts
  5. Measurement of Biomimetic Deposition of Calcium Phosphate in Real Time Using Complex Capacitance
  6. Catechol Containing Polyelectrolyte Complex Nanoparticles as Local Drug Delivery System for Bortezomib at Bone Substitute Materials
  7. Electrodeposition of Sr-substituted hydroxyapatite on low modulus beta-type Ti-45Nb and effect on in vitro Sr release and cell response
  8. Investigation of strontium transport and strontium quantification in cortical rat bone by time-of-flight secondary ion mass spectrometry
  9. Incorporation of silicon into strontium modified calcium phosphate bone cements promotes osteoclastogenesis of human peripheral mononuclear blood cells
  10. Effects of a Pasty Bone Cement Containing Brain-Derived Neurotrophic Factor-Functionalized Mesoporous Bioactive Glass Particles on Metaphyseal Healing in a New Murine Osteoporotic Fracture Model
  11. Influence of cobalt chromium alloy surface modification on the roughness and wettability behavior of pine oil/hydroxyapatite as coating
  12. Strontium-modification of porous scaffolds from mineralized collagen for potential use in bone defect therapy
  13. Strontium-modified premixed calcium phosphate cements for the therapy of osteoporotic bone defects
  14. Functionalization of Ti-40Nb implant material with strontium by reactive sputtering
  15. Strontium release from Sr 2+ -loaded bone cements and dispersion in healthy and osteoporotic rat bone
  16. Relevance of osteoclast-specific enzyme activities in cell-based in vitro resorption assays
  17. Calcium phosphate bone cement/mesoporous bioactive glass composites for controlled growth factor delivery
  18. Postembedding Decalcification of Mineralized Tissue Sections Preserves the Integrity of Implanted Biomaterials and Minimizes Number of Experimental Animals
  19. Strontium substitution in apatitic CaP cements effectively attenuates osteoclastic resorption but does not inhibit osteoclastogenesis
  20. 3D plotting of growth factor loaded calcium phosphate cement scaffolds
  21. Improved Sterilization of Sensitive Biomaterials with Supercritical Carbon Dioxide at Low Temperature
  22. Dendritic Glycopolymer as Drug Delivery System for Proteasome Inhibitor Bortezomib in a Calcium Phosphate Bone Cement: First Steps Toward a Local Therapy of Osteolytic Bone Lesions
  23. Formation of Osteoclasts on Calcium Phosphate Bone Cements and Polystyrene Depends on Monocyte Isolation Conditions
  24. Strontium modified calcium phosphate cements – approaches towards targeted stimulation of bone turnover
  25. Preliminary evaluation of different biomaterials for defect healing in an experimental osteoporotic rat model with dynamic PET-CT (dPET-CT) using F-18-Sodium Fluoride (NaF)
  26. Application of F-18-Sodium Fluoride (NaF) Dynamic PET-CT (dPET-CT) for Defect Healing: A Comparison of Biomaterials in an Experimental Osteoporotic Rat Model
  27. A novel strontium(II)-modified calcium phosphate bone cement stimulates human-bone-marrow-derived mesenchymal stem cell proliferation and osteogenic differentiation in vitro
  28. Bone formation induced by strontium modified calcium phosphate cement in critical-size metaphyseal fracture defects in ovariectomized rats
  29. Podoplanin Immunopositive Lymphatic Vessels at the Implant Interface in a Rat Model of Osteoporotic Fractures
  30. Mass spectrometric monitoring of Sr-enriched bone cements—from in vitro to in vivo
  31. A novel and easy-to-prepare strontium(II) modified calcium phosphate bone cement with enhanced mechanical properties
  32. ToF-SIMS analysis of osteoblast-like cells and their mineralized extracellular matrix on strontium enriched bone cements
  33. Indirect rapid prototyping of biphasic calcium phosphate scaffolds as bone substitutes: influence of phase composition, macroporosity and pore geometry on mechanical properties
  34. Static and dynamic cultivation of bone marrow stromal cells on biphasic calcium phosphate scaffolds derived from an indirect rapid prototyping technique
  35. Fabrication of Tailored Hydroxyapatite Scaffolds: Comparison between a Direct and an Indirect Rapid Prototyping Technique