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Dental caries. Principal cause of tooth extraction in a sample of US male adults.

Comprehensive oral examinations carried out over a period of about 10 years on participants in the Veterans Administration Dental Longitudinal Study were evaluated to identify teeth extracted during this time and to ascertain the apparent reason for these extractions. The study population included 736 dentulous adult males, 49% of whom experienced 1,142 extractions. Caries was judged to be the primary cause of tooth loss, responsible for 33.3% of the teeth extracted. Extractions in preparation for a prosthesis (31.3%) and periodontal disease (18.7%) were the other major causes of tooth loss. Thus, dental caries was the prime cause of tooth extraction in this sample of US male adults, while a second major cause was preparation for a prosthesis which included the extraction of sound teeth and teeth with carious lesions which could have been restored. Periodontal disease was clearly not the major cause of tooth loss and was responsible for only 18.7% of the extractions in this population. The results of this study demonstrate that dental caries is a major problem in adults, leading to greater tooth loss than periodontal disease. A large percentage of the tooth loss in these individuals was clearly preventable. The same emphasis placed upon caries prevention in children should be applied to the adult population.

Adult↗

Effect of biomaterial properties on bone healing in a rabbit tooth extraction socket model.

In this work we sought to understand the effect of biomaterial properties upon healing bone tissue. We hypothesized that a hydrophilic polymer gel implanted into a bone tissue defect would impede the healing process owing to the biomaterial's prevention of protein adsorption and thus cell adhesion. To test this hypothesis, healing bone was investigated within a rabbit incisor extraction socket, a subcritical size bone defect that resists significant soft tissue invasion by virtue of its conformity. After removal of the incisor teeth, one tooth socket was left as an empty control, one was filled with crosslinked polymer networks formed from the hydrophobic polymer poly(propylene fumarate) (PPF), and one was filled with a hydrogel formed from the hydrophilic oligomer oligo(poly(ethylene glycol) fumarate) (OPF). At five different times (4 days as well as 1, 2, 4, and 8 weeks), jaw bone specimens containing the tooth sockets were removed. We analyzed bone healing by histomorphometrical analysis of hematoxylin and eosin stained sections as well as immunohistochemically stained sections. The proposed hypothesis, that a hydrophilic material would hinder bone healing, was supported by the histomorphometrical results. In addition, the immunohistochemical results reflect molecular signaling indicative of the early invasion of platelets, the vascularization of wound-healing tissue, the differentiation of migrating progenitor cells, and the formation and remodeling of bone tissue. Finally, the results emphasize the need to consider biomaterial properties and their differing effects upon endogenous growth factors, and thus bone healing, during the development of tissue engineering devices.

Animals↗

Osseointegrated fixture placement with simultaneous tooth extraction.

Three cases are presented that illustrate the potential for accelerating the healing phase with fixture-based treatment. Depending on the clinical circumstances, techniques may include radical alveolectomy, the use of fresh extraction sockets, and fixture placement in inter-radicular bone.

Adult↗