Dental Implant Failed Clinical Trial
Official title:
Peri-implant Soft and Hard Tissue Changes Around Maxillary Anterior Immediate Implants Using Socket Shield Technique Versus a Combination of Socket Shield Technique and Autogenous Demineralized Dentin Graft: Randomized Clinical Trial
The current trial aim was to evaluate clinically and radiographically the changes around dental implants inserted immediately in maxillary anterior esthetic zone using a novel combination of autogenous demineralized dentin graft (ADDG) with socket shield technique (SST) and compared this approach to socket shield technique (SST) alone. The present study included 50 participants, aged 20 to 45, with teeth that needed to be extracted. After Kafrelsheikh University research ethics committee approval, participants were randomized into 2 groups: the control group patients underwent immediate implantation using SS protocol, while the study group patients underwent the same procedure, but ADDG was created using the extracted palatal portion of the tooth; and then placed in the peri-implant gap defect.
However, Immediate placement protocol of dental implants reported favorable improvement of esthetic indices such as the Pink Esthetic Score (PES), mid-facial mucosal recession (MFMR) was the most common esthetic drawback. MFMR occurrences increase in case of thin gingival biotype, facial implant malposition, and thin or destroyed facial bone plate after tooth removal. To avoid MFMR, dental implants should be placed immediately only when the clinical conditions are ideal including completely intact facial plate of bone, more than 1mm thick facial plate of bone, absence of periapical pathosis or infection at the extracted socket, thick gingival biotype, presence of sufficient bone palatal and apical to the extraction socket for proper positioning of the implant fixture and obtaining acceptable primary stability. These ideal conditions are rarely observed in the maxillary anterior region. Although proper patients' selection and treatment by specialists with high experience and skills, the esthetic outcomes of immediately placed dental implant showed unsatisfactory deteriorated facial tissues on the mid- to long-term. Following root extraction, the thin delicate avascular cortical bone plate showed massive loss and deterioration due to loss of its vascular blood supply obtained from the root periodontal ligament. To overcome this negative esthetic outcome during immediate placement of dental implants, different materials and techniques were used around implants such as bone graft substitutes, growth factors and barrier membranes. In 2010, Hurzeler and colleagues introduced a novel approach for immediate implantation called Socket Shield Technique (SST). This minimal invasive technique resulted in preservation of facial bone plate which in turn improved the esthetic outcomes. Partial extraction therapy, the root membrane technique and the modified SST are different terminologies and modifications of the original approch. In SST protocol, tooth decoronation followed by root splitting mesio-distally. The palatally splitted portion of the root is atraumatically extracted while the intact buccal root portion is kept in place with thickness of 1.5mm. The implant fixture is then placed palatally with 2mm gap distance in between. finally, that gap might be grafted or left without grafts. SST showed enhancement of hard and soft tissue conditions around implants, implant stability and esthetic results compared with traditional immediate placement protocol of dental implants. Till now, few studies evaluated the effect of grafting the gap between the buccal tooth shield and the implant fixture. Globally, extracted teeth are regarded as infectious waste. Teeth are made up of organic matrix and inorganic hydroxyapatite reinforcing phase, that's why teeth are gaining popularity as a potential resource for alveolar bone repair. Non-demineralized tooth grafts produced positive outcomes, but bone and tooth demineralization enhances the bioavailability of non-collagenous proteins associated with the matrix, such as osteocalcin, osteonectin, bone sialoprotein, phosphophoryn, and bone morphogenetic protein, which could promote the creation of new bone. A valuable three-dimensional biological scaffold with osteopromotive and osteoconductive properties is provided by ADDG. Additionally, it saves the patient money on the cost of other graft materials and lowers the worldwide amount of infectious dental waste. The specific question of the current research was: Does using ADDG for grafting the gap between the tooth shield and the implant fixture in immediate dental implantation with SST improve the clinical and radiographic outcomes in comparison to immediate implant placement with SST alone without using bone graft? ;
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