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Fabrication of a Bioactive, PCL-based "Self-fitting" Shape Memory Polymer Scaffold
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Socket grafting with calcium phosphosilicate alloplast putty: a histomorphometric evaluation.

Lanka Mahesh, Maurice A Salama, Gregori M Kurtzman

    Compendium of Continuing Education in Dentistry (Jamesburg, N.J. : 1995)
    |October 10, 2012
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    Calcium phosphosilicate (CPS) putty effectively regenerated vital bone in tooth extraction sockets, showing 49.5% vital bone content. This synthetic graft substitute is a promising option for socket preservation in implant dentistry.

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    Area of Science:

    • Dental implantology
    • Biomaterials science
    • Regenerative medicine

    Background:

    • Socket preservation is crucial for dental implant success, requiring effective bone graft substitutes.
    • Various materials are used to regenerate osseous tissue in extraction sockets.
    • Healing times for socket bone regeneration typically range from 6 to 8 months.

    Observation:

    • A novel synthetic calcium phosphosilicate (CPS) putty was evaluated for bone regeneration potential.
    • CPS putty was placed in extraction sockets of 20 patients, covered with a collagen plug.
    • Histological and histomorphometric analyses were performed on bone cores.

    Findings:

    • Histomorphometric analysis showed an average vital bone content of 49.5% (± 20.7).
    • Residual graft material was minimal, averaging 4.3% (± 7.8).
    • The average healing period before core retrieval was 4.9 months.

    Implications:

    • CPS putty demonstrates significant potential for promoting vital bone formation in extraction sockets.
    • The material appears to be a viable option for socket grafting procedures in implant dentistry.
    • Further research may explore long-term outcomes and comparisons with other graft materials.