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Bone augmentation material
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NanoBone®
A highly stable, temporary osteogenetic material
NanoBone® is the latest generation of fully synthetic, unsintered, biodegradable bone augmentation materials. It comprises the components nanocrystalline, unsintered hydroxylapatite and a nanoporous silica gel. A special macro/micro/nanostructure (interconnecting nanopores) has been created by a newly developed production process, which produces a very large surface area of this bone augmentation material.
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SiO2 -optimized nanostructure
Rapid collagen formation and osteogenesis
NanoBone® has a very large surface area and excellent interconnecting nanopores due to the deposit of unsintered hydroxylapatite in a silica gel structure. The special nano/microstructure has particularly high porosity. Proteins also adhere rapidly to the surface of the SiO2 molecules (osteoconduction). This stimulates the formation of collagen and bone.
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Bioanalogous degradation
Rapid maximum strength of the new bone
NanoBone® unsintered hydroxylapatite is not recognized as a foreign body because it is highly porous, has loosely packed granulates and is mixed with the patient's blood. This prevents inflammatory macrophagocytosis. NanoBone® is also fully integrated into physiological bone remodelling and is rapidly fully resorbed. Over 80% of the defect is infiltrated with new trabecular bone after only 5 weeks and NanoBone® is virtually completely biodegraded after 8 months.
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Fir-cone structure of the granulate
Highly stable material with optimal modelling properties
The slightly conical, multi-edged, fir-cone structure of NanoBone® granulate produces an ideal combination of stability, firmness and optimal modelling properties when mixed with the patient's blood. This makes it easier to use, particularly in areas difficult to access. This structure also facilitates loose packing of the NanoBone® so that 80% of the volume is absorbed by bodily materials.
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Wide range of applications
Broad spectrum of treatment options
The special properties of NanoBone®, a fully biodegradable, osteological matrix material, provide many application options for filling and reconstructing multi-walled bone defects in oral and maxillofacial surgery and dentistry. Examples of its application are: filling two-walled or multi-walled bone pockets in periodontology, sinus floor lift or elevation in implantology or filling defects after tooth extraction to prevent atrophy of the alveolar ridge.
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