Fabrication of gelatin methacrylate/nanohydroxyapatite microgel arrays for periodontal tissue regeneration

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Fabrication of gelatin methacrylate/nanohydroxyapatite microgel arrays for periodontal tissue regeneration

INTRODUCTION Periodontitis is a chronic infectious disease and is the major cause of tooth loss and other oral health issues around the world. Periodontal tissue regeneration has therefore always been the ultimate goal of dentists and researchers. Existing fabrication methods mainly focused on a top-down tissue engineering strategy in which several drawbacks remain, including low throughput and...

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Advanced tissue engineering in periodontal Regeneration

The old wishes of people were to regenerate lost tissues of periodontium that this fact is achieved by gen and cell therapy .Periodontal disease is a chronic inflammation around the tooth by microbes that causes destruction of supporting structure of tissue of tooth such as alveolar bone, cementum and periodontal ligament. For treatment of periodontal diseases we can use the biomaterials which ...

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Biomaterials for Periodontal Tissue Regeneration

Periodontal diseases are characterized by alveolar bone absorption and destruction of periodontal ligament and cementum and are the main causes of tooth loss in adults. This series of diseases is harmful to both human oral and body health. Although periodontitis is under control because of the implementation of conventional treatment modalities, regenerating damaged periodontal tissues remains ...

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The usefulness of an autologous blood clot combined with gelatin for regeneration of periodontal tissue.

Several growth factors have been used in tissue regeneration therapy. Here we describe the use of an autologous blood clot combined with gelatin for teeth affected by severe periodontitis and vertical root fracture treated using three oral surgical procedures: periodontal flap surgery, intentional tooth replantation (IR), and tooth autotransplantation. Treatment with a blood clot improved the c...

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Fabrication of Porous Hydroxyapatite-Gelatin Scaffolds Crosslinked by Glutaraldehyde for Bone Tissue Engineering

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ژورنال

عنوان ژورنال: International Journal of Nanomedicine

سال: 2016

ISSN: 1178-2013

DOI: 10.2147/ijn.s111701