Reprint

Bone Regeneration and Repair Materials

Edited by
June 2024
282 pages
  • ISBN978-3-7258-1189-2 (Hardback)
  • ISBN978-3-7258-1190-8 (PDF)

This book is a reprint of the Special Issue Bone Regeneration and Repair Materials that was published in

Biology & Life Sciences
Chemistry & Materials Science
Engineering
Summary

Bone is a specialized connective tissue with the ability to regenerate following injury and trauma. However, when the extension of bone loss exceeds the regenerative capacity of tissue, additional treatments are required; these have been investigated by scientists and clinicians, and include biological and material approaches and their combination. This Special Issue, entitled “Bone Regeneration and Repair Materials”, is composed of 14 original and 2 review articles that can be grouped into the following three categories: (1) physicochemical and mechanical characterizations of biomaterials for bone regeneration and implants; (2) strategies to induce bone repair using biomaterials and/or cells; and (3) titanium implants. This collection of information covers the diverse range of materials and approaches that have emerged as promising and powerful tools in regenerative medicine in order to promote bone repair, regeneration, and implant osseointegration. Additionally, this Special Issue elucidates the need to understand the cellular mechanisms involved in the interactions between bones and materials in the search for optimized and smart therapies, with patient well-being always being the primary focus.

Format
  • Hardback
License and Copyright
© 2024 by the authors; CC BY-NC-ND license
Keywords
fluorapatite; hydrothermal synthesis; surface functionalization; titanium; osseointegration; microtomography; biomaterials; dental hypersensivity; dentin; mineralization; strontium-containing nanoparticles; animal study; sinus floor elevation; bone healing; Schneiderian membrane; histology; sinus mucosa perforation; bone substitutes; sinus floor augmentation; bone formation; bone regeneration; bone resorption; animal model; hedgehog; nanotopography; notch; osteoblast; titanium; biocompatible materials; bone regeneration; cell differentiation; osteoporosis; teriparatide; biomaterials; bone regeneration; bone tissue engineering; digital light processing; temporomandibular joint; temporomandibular disorders; stem cells; tissue engineering; bone tissue engineering; demospongiae; natural biomaterial; marine sponges; scaffolds; bone; wound healing; adipogenesis; obese; dental implants; titanium; failure; angiogenesis; laser ablation; Ti; nanotopography; osteoblast; osseointegration; wood implants; bone repair; biocomposites; osteosynthesis; bone repair; electrospinning; laser therapy; mesenchymal stem cell; PVDF scaffold; goose bone; bioceramic; calcium phosphate; bone regeneration; physicochemical property; hydroxyapatite; biomimetic; bioactive; hydroxyapatite; nacre; bi-directional freeze-casting; nacre-like composite; bone implants; mechanical properties; fracture toughness; bone; losartan; osseointegration; alendronate; spontaneously hypertensive rats; n/a; n/a

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