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Open AccessJournal ArticleDOI

Bone regenerative medicine: classic options, novel strategies, and future directions

TLDR
Tissue engineering is a new and developing option that had been introduced to reduce limitations of bone grafts and improve the healing processes of the bone fractures and defects and may open new insights in the near future.
Abstract
This review analyzes the literature of bone grafts and introduces tissue engineering as a strategy in this field of orthopedic surgery. We evaluated articles concerning bone grafts; analyzed characteristics, advantages, and limitations of the grafts; and provided explanations about bone-tissue engineering technologies. Many bone grafting materials are available to enhance bone healing and regeneration, from bone autografts to graft substitutes; they can be used alone or in combination. Autografts are the gold standard for this purpose, since they provide osteogenic cells, osteoinductive growth factors, and an osteoconductive scaffold, all essential for new bone growth. Autografts carry the limitations of morbidity at the harvesting site and limited availability. Allografts and xenografts carry the risk of disease transmission and rejection. Tissue engineering is a new and developing option that had been introduced to reduce limitations of bone grafts and improve the healing processes of the bone fractures and defects. The combined use of scaffolds, healing promoting factors, together with gene therapy, and, more recently, three-dimensional printing of tissue-engineered constructs may open new insights in the near future.

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Electrospun Biomimetic Nanofibrous Scaffolds: A Promising Prospect for Bone Tissue Engineering and Regenerative Medicine

TL;DR: This analysis provides an overview of nanofibrous scaffold-based bone regeneration strategies; however, the same concepts can be applied to other organ and tissue regeneration tactics.
Journal ArticleDOI

Research hotspots and trends of bone defects based on Web of Science: a bibliometric analysis.

TL;DR: The application of CiteSpace can reveal the leaders, cooperating institutions and research hotspots of bone defects and provide references for new technologies and further research directions.
Journal ArticleDOI

Antimicrobial Properties of Extracellular Matrix Scaffolds for Tissue Engineering.

TL;DR: The purpose of this review is to collect the existing information about antimicrobial activity of the ECM and their components to reduce the use of antimicrobial agents.
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An in situ gelling system for bone regeneration of osteochondral defects

TL;DR: In this article, a three-component in situ gelling hydrogel, composed of hyaluronic acid, gellan gum and calcium chloride, was used in a smart combination for bone defects filling and capping.
Journal ArticleDOI

Complications with allogeneic, cancellous bone blocks in vertical alveolar ridge augmentation: prospective clinical case study and review of the literature.

TL;DR: Criteria data were found to support the use of ABB in vertical bone augmentation in clinical dental implantology and suggest that tissue level implants may be advantageous in verticalBone augmentation with ABB.
References
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Porous scaffold design for tissue engineering

TL;DR: The integration of CTD with SFF to build designer tissue-engineering scaffolds is reviewed and the mechanical properties and tissue regeneration achieved using designer scaffolds are details.
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Crystal Structure and Hydrogen-Bonding System in Cellulose Iβ from Synchrotron X-ray and Neutron Fiber Diffraction

TL;DR: In this article, the crystal and molecular structure of cellulose Iβ were determined using synchrotron and neutron diffraction data recorded from oriented fibrous samples prepared by aligning cellulose microcrystals from tunicin.
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Recent advances on chitosan-based micro- and nanoparticles in drug delivery.

TL;DR: The present review outlines the major new findings on the pharmaceutical applications of chitosan-based micro/nanoparticulate drug delivery systems published over the past decade and discusses critically the usefulness of these systems in delivering the bioactive molecules.
Journal ArticleDOI

Biomedical applications of collagen

TL;DR: In this paper, the authors reviewed biomedical applications of collagen including the collagen film, which was developed as a matrix system for evaluation of tissue calcification and for the embedding of a single cell suspension for tumorigenic study.
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