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BTCP – Based Apatite – Like Bone Grafting Material / Bone Transplantation Paste

  1. Bio – Mimetic Porous Architecture
    Nano – scale particles (100–300nm) and 60–70% porosity (pore size 100–500μm) replicate natural bone’s structure. This supercharges cell adhesion, vascular penetration, and growth factor uptake by 300%, forming an optimal “scaffold” for new bone formation.
  2. Dual – Phase Bioactive Synergy
    • Osteoconduction: Hydroxyapatite (HA) acts as a guide, directing osteoblasts to grow across defects.
    • Osteoinduction: β – TCP lures bone – forming proteins (e.g., BMP), triggering the body’s innate healing process. Together, they slash healing time by 50% compared to single – phase grafts.
  3. Moldable & Washout – Proof Consistency
    The paste or block form can be easily shaped to fit irregular defects (such as comminuted fractures and dental sockets). It stays in place during surgery, even when irrigated—ideal for minimally invasive procedures.
  4. Controlled Gradual Resorption
    β – TCP degrades in 3–6 months, while HA resorbs over 12–18 months. This phased breakdown continuously releases calcium and phosphate, sustaining long – term bone growth without leaving gaps.
  5. 100% Synthetic Biocompatibility
    Free from animal or human derivatives, it matches the body’s mineral makeup. This minimizes inflammation and rejection risks, even for pediatric or immunocompromised patients.
Coding Product name Specification
9005.0566 BTCP-based apatite-like bone grafting material/Bone transplantation paste 10cm³

BTCP – Based Apatite – Like Bone Grafting Material: What Is It?

It is a cutting – edge synthetic bone graft that combines β – tricalcium phosphate (BTCP) and hydroxyapatite. Mimicking natural bone’s structure and bioactivity, it repairs defects, fills voids, and speeds up healing in orthopedic, dental, and craniofacial surgeries—doing away with the pain and drawbacks of autograft harvesting.

Applications

  1. Dental Implantology
    Fills bone gaps in dental sockets (GBR procedures), rebuilds alveolar ridges, and enhances implant stability.
  2. Orthopedic Trauma Care
    Repairs complex fractures (in limbs and pelvis), non – union cases, and fills defects after tumor or infection resection.
  3. Spinal Fusion Surgery
    Promotes bone growth between vertebrae, improving fusion success and long – term stability.
  4. Craniofacial Reconstruction
    Restores skull and jaw defects with precise shaping and biocompatibility.
  5. Bone Regeneration Therapies
    Supports healing in osteoporotic bones, diabetic ulcers, and post – surgical bone loss situations.

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