Medical grade polymer filament
CAPROLACTISSE HA [PCL 30% HA]
PCL HA filament is a medical-grade polymer composed of high-quality Polycaprolactone [PCL]. It is loaded with 30% hydroxyapatite* [HA].
This white, rigid filament is implantable and resorbable in over 24 months. Supplied in spools with a diameter of 1.75 mm, weighing 100 or 200g.
Purchase by quote. Credit card only for verified accounts (what is a verified account?)
*If you wish to change the filler content, please contact us for a custom extrusion request.
![CAPROLACTISSE HA [PCL 30% HA] CAPROLACTISSE HA [PCL 30% HA] - Image 2](https://lattice-services.com/wp-content/uploads/2026/01/PACK_P02-Caprolactisse-PCL-HA_SEUL_v3.png)
Price range: 1800,00 € through 3600,00 €
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Description
PCL HA, or polycaprolactone filled with 30% hydroxyapatite, is a white, rigid, semi-crystalline thermoplastic. It degrades slowly once implanted, over a period of more than 24 months. Our filament is composed of 70% polycaprolactone [PCL] and 30% (by mass) hydroxyapatite [HA]. This innovative composition combines the long-term resorption properties of PCL with a natural component of bone, hydroxyapatite, thereby improving osteoconductivity and osseointegration, making it an ideal filament for bone reconstruction applications.
Storage
Store the materials in their original packaging: vacuum-sealed with a desiccant bag. Store them away from light and at a low temperature (between -4°C and -20°C). If not used for a prolonged period (several weeks), repackage the materials according to these criteria to prevent premature degradation. Before opening: Allow the spool to return to room temperature for 4 to 6 hours. This prevents condensation and moisture absorption by the filament. You can also place the spool in a ventilated oven for 4 to 6 hours at a maximum temperature of 40°C.
General information
Type of consumable: Filament
Material: [PCL] Polycaprolactone and [HA] Hydroxyapatite
Color: White
Appearance: Rigid
Diameter: 1.75 mm
Weight: 100g - 200g
Manufacture: France
Benefits
Bioresorbable
Biocompatible
Osteointegration
Implantable
Slow absorption