nanoXIM HAp Powders

nanoXIM HAp Powders

Catalog Number:
HN01108454FLU
Mfr. No.:
nanoXIM•HAp202; nanoXIM•HAp203; nanoXIM•HAp602
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      • Overview
        • nanoXIM HAp powders are micrometric aggregates of hydroxyapatite nanoparticles.

          These products are used in the manufacturing of biocompatible bone graft substitutes (e.g. porous granules and scaffolds for bone regeneration) and 3D printed implants.

          Due to the similarity between nano-hydroxyapatite and mineralized bone, nanoXIM HAp powders have a high affinity to hard tissues as they form chemical bonds with the host tissue resulting in an improved biological performance.

          Benefits

          • Promotes bone regeneration and vascularization
          • Osteoconductive and osteostimulative
          • Enhances osteoblast functions
          • Biocompatible material

          Features

          • Pure hydroxyapatite
          • Micron-sized powders
          • Narrow particle size distribution
          • Synthetic material
          • Complies with heavy metals and Ca/P ratio according to ISO 13779


          nanoXIM•HAp200 is a series of nanostructured synthetic hydroxyapatite powders, manufactured and supplied in two different particle sizes, 5 and 10 μm. This feature is achieved in the drying process by spray dryer technique where the nanoparticles in liquid phase are dried as spherical aggregates with a high surface area.

          nanoXIM•HAp600 is a series of synthetic calcined hydroxyapatite powders composed by micron-sized particles. These powders are heat-treated to obtain products with a low surface area and high crystallinity.

          Please contact us at for specific academic pricing.

          More Details

      • Properties
        • Note
          nanoXIM products are supplied in bulk and in non-sterile form.
      • Applications
        • Application
          Medical Use
          Application Description
          These products are used in the manufacturing of biocompatible bone graft substitutes (e.g. porous granules and scaffolds for bone regeneration) and 3D printed implants.

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