Abstract:Regenerative periodontal therapy aims at reconstitution of the lost periodontal structures such as new formation of root cementum, periodontal ligament and alveolar bone. Findings from basic research indicate that enamel matrix protein derivative (EMD) has a key role in periodontal wound healing. Histological results from animal and human studies have shown that treatment with EMD promotes periodontal regeneration. Moreover, clinical studies have indicated that treatment with EMD positively influences periodon… Show more
“…Attachments are characterized by the presence of new acellular and/or cellular cementum with inserting collagen fibers and new alveolar bone [22]. Although Emdogain Ò has been commercialized for just over a decade, it is widely used in periodontical practice and for replanting teeth [20,21]. Results from basic research have suggested that EMD has an important role in periodontal wound healing.…”
Section: Biological Approaches To Periodontal Regenerationmentioning
“…Attachments are characterized by the presence of new acellular and/or cellular cementum with inserting collagen fibers and new alveolar bone [22]. Although Emdogain Ò has been commercialized for just over a decade, it is widely used in periodontical practice and for replanting teeth [20,21]. Results from basic research have suggested that EMD has an important role in periodontal wound healing.…”
Section: Biological Approaches To Periodontal Regenerationmentioning
“…It is extracted from developing embryonal enamel of porcine origin and contains several matrix proteins from the amelogenin family. Several studies have shown that EMD influences the migration, attachment, proliferative capacity and biosynthetic activity of periodontal ligament cells [59,[67][68][69].…”
Periodontitis is a multifactorial chronic inflammatory disease characterized by destruction of tooth supporting tissues. Repair of the periodontium and the regeneration of periodontal tissues remains a major goal in the treatment of periodontal disease and is an area still in need of major research attention. Periodontal regeneration has come to the forefront of periodontal research and practice. Research regarding periodontal therapy has made it clear that standard treatment techniques do not result in periodontal regeneration. It has become apparent that, if the goal of periodontal regeneration is to be realized, the problem of regeneration needs to be approached from a biological perspective. One important consideration in periodontal regenerative attempts is the root surface which has become exposed to the oral cavity as a result of Periodontitis. In regenerative attempts the root surface functions as one of the wound margins and must provide an appropriate surface for cell attachment and fiber development if regeneration is to occur. Changes in the pathologically exposed root surface are well documented. Varying results from clinical and histological studies have created controversies about the clinical effectiveness of biomodification of root surfaces. This review attempts to provide an insight into the present scenario of root biomodification in clinical conditions along with an overview of related studies.
“…A commercially prepared and purified extract of enamel matrix proteins, EMD is composed primarily of amelogenin and has been shown to promote PDL fibroblast proliferation and growth [10]. The effects of Emdogain are thought to be the induction of proliferation, migration, adhesion, mineralization and differentiation of cells in periodontal tissue.…”
Section: Emdogain or Enamel Matrix Derivative (Emd) Developed Bymentioning
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