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Tundra lists 4 Sinus Floor Augmentation clinical trials. Each listing includes eligibility criteria, study locations, and direct links to research sites in the Tundra directory.
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NCT07677007
Evaluation of Lateral Sinus Floor Elevation Using Xenograft Versus L-PRF Block Combined With Xenograft
Rehabilitation of the posterior maxilla with dental implants is frequently complicated by insufficient residual bone height resulting from alveolar ridge resorption and maxillary sinus pneumatization. Lateral sinus floor elevation has become a predictable and widely accepted procedure for increasing bone volume and enabling implant placement in severely atrophic posterior maxillary sites. The long-term success of this procedure is largely dependent on the grafting material used to maintain space beneath the elevated Schneiderian membrane and promote new bone formation. Deproteinized bovine bone mineral (DBBM), commonly known as xenograft, remains the most extensively documented grafting material for sinus augmentation due to its osteoconductive properties, volumetric stability, and favorable long-term clinical outcomes. However, xenografts are characterized by slow remodeling and prolonged persistence of residual graft particles, which may delay replacement by vital bone. Consequently, strategies to enhance the biological activity of xenografts and accelerate bone regeneration have become an area of considerable research interest. Leukocyte- and platelet-rich fibrin (L-PRF) is a second-generation autologous platelet concentrate containing a fibrin matrix enriched with platelets, leukocytes, cytokines, and growth factors including platelet-derived growth factor (PDGF), vascular endothelial growth factor (VEGF), and transforming growth factor-β (TGF-β). These biological mediators may enhance angiogenesis, accelerate wound healing, stimulate osteoblast proliferation, and improve bone regeneration. Several studies have demonstrated promising outcomes when L-PRF is used in sinus augmentation procedures. Mazor et al. reported successful bone formation and implant placement following sinus augmentation using PRF as the sole grafting material after six months of healing. Histological analysis demonstrated the formation of newly regenerated vital bone within the augmented sinus compartment. More recently, Cortellini et al. conducted a randomized controlled trial comparing L-PRF block and DBBM in lateral sinus floor elevation. Although both techniques allowed successful implant placement after six months, differences in volumetric stability and graft remodeling were observed. The authors suggested that L-PRF-containing grafts may represent a biologically active alternative capable of enhancing healing while maintaining sufficient bone volume for implant placement. Pichotano et al. further demonstrated that combining L-PRF with DBBM accelerated bone maturation and facilitated earlier implant placement when compared with xenograft alone. Histomorphometric findings revealed greater percentages of newly formed bone and reduced healing times in the L-PRF group. Despite these promising findings, the available evidence remains limited, and there is no clear consensus regarding whether the addition of L-PRF to xenografts results in clinically significant improvements in bone regeneration, volumetric maintenance, and implant site development. Therefore, a randomized controlled clinical trial comparing xenograft alone versus L-PRF block combined with xenograft during lateral sinus floor elevation is warranted.
Gender: All
Ages: 21 Years - 70 Years
Updated: 2026-06-30
1 state
NCT06156488
Transcriptome Analysis of Human Bone Regeneration After Using an Anorganic Bovine Bone Graft With or Without a Combination of Polynucleotides and Hyaluronic Acid
The goal of this clinical trial is to compare the expression of multiple genes related to bone regeneration in maxillary bone after being grafted with a commonly used biomaterial supplemented or not with a combination of hyaluronic acid and polynucleotides.
Gender: All
Ages: 18 Years - Any
Updated: 2026-05-12
1 state
NCT07280117
Magnesium-based Bioresorbable Pins for Membrane Fixation
The goal of this research project is to assess the clinical performance and degradation of bioresorbable Mg- based pins for membrane fixation in patients with sinus floor elevation.
Gender: All
Ages: 21 Years - Any
Updated: 2025-12-12
NCT05315791
Clinical Application Strategies of Maxillary Sinus Buccal Bony Window
Through randomized controlled trials, investigators will recruit participants who need maxillary sinus floor elevation with different residual bone height, and utilize the maxillary sinus buccal bony window during the surgery. Then investigators will gather the related information of participants, collect and analyze their CBCT data, in order to help surgeons select the best operating method for different patients.
Gender: All
Ages: 18 Years - 80 Years
Updated: 2022-04-07
1 state