DualFix™ Bioabsorbable Suture Anchor

DualFix™ Bioabsorbable Suture Anchor

  • Made from BioCore™ Bioabsorbable Composite
  • Dual-threaded design with high and low-density threads precisely matches the mechanical properties of cortical and cancellous bone for optimal fixation.
  • Hollow body structure guides deep blood flow to the tendon-bone healing surface, promoting postoperative healing.
  • Precisely positioned tip ensures consistent implantation direction.
  • Available in a wide range of sizes from 3.4-6.5mm.

 

Item Specification Size (mm)
DualFix Bioabsorbable Suture Anchor, w/1* #2 UHS suture, Black-White 3.4×14
DualFix Bioabsorbable Suture Anchor, w/2* #2 UHS suture, Blue-White&Black-White 4.5×17.5
DualFix Bioabsorbable Suture Anchor, w/3* #2 UHS suture, White&Blue&Black-White 4.5×17.5
DualFix Bioabsorbable Suture Anchor, w/2* #2 UHS suture, Blue-White&Black-White 5.5×17.5
DualFix Bioabsorbable Suture Anchor, w/2* #2 UHS suture, Blue-White&Black-White 6.5×17.5
DualFix™ Bioabsorbable Suture Anchor, w/ 2* #2 UHS suture, Blue-White&Black-White, w/ Needle 5.5×17.5
DualFix™ Bioabsorbable Suture Anchor, w/ 2* #2 UHS suture, Blue-White&Black-White, w/ Needle 6.5×17.5

 

BioCore™ is Delta Medical’s latest-generation biocomposite material platform, encompassing two material families: bioabsorbable-based composites and PEEK-based composites.

BioCore™ Bioabsorbable Composite is a next-generation solution for soft-tissue-to-bone fixation, engineered from a proprietary 70% PLGA / 30% β-TCP biocomposite. Its balanced degradation system helps mitigate local pH fluctuations while maintaining mechanical support throughout bone healing.

A homogeneous composite structure provides enhanced fatigue resistance and progressive strength reduction in line with native bone regeneration—without permanent residues.

The open-anchor architecture promotes cellular and vascular ingrowth, while osteoconductive β-TCP supports new bone formation. Together, they deliver a balanced combination of initial fixation stability, controlled resorption, and long-term bone integration.