New medical materials

Driving a Quality Life—Medical New Materials

Dental Implants—A “Remnant” of Structure and Function

We have independently developed a new generation of medical implant materials featuring a "biomimetic" structure that meets the standards of similar international products. These materials exhibit outstanding osseointegration and hydrophilicity, enhancing early implant loading capacity and long-term stability. They can be widely used for surface treatment of implant materials in human bone and joint applications, bone tissue reconstruction, bone screws, dental implants, and other related fields.

 

Next-generation innovative implant technology: It not only represents aesthetics but also embodies an outstanding solution for oral health.

Dentin is the main component of teeth and is primarily composed of hydroxyapatite, Ca10(PO4)6(OH)2. It contains numerous tiny tubular structures known as dentinal tubules, whose pore diameters range from 10 nm to 3 μm. These tubules play a role in sensation, nutrient transport, and participation in metabolic processes.

The TECO (Thermo-Electro-Chemical Oxidation) thermoelectrochemical oxidation technology preserves the structure and function of natural teeth. Its surface exhibits a porous structure (10 nm–5 μm) (b), which induces the formation of hydroxyapatite, while microchannels (d) facilitate the transport of nutrients, thereby enhancing overall osseointegration.

Schematic diagram of dentinal tubules and dentinal tubule openings [1]

Dentin Tubule SEM [2]

SEM of the surface and cross-section of the implant’s residual structural morphology

Orthopedic titanium alloy

Outstanding health solutions

01 Metamaterials

Restore the tissue structure, substances, and nutrient transport mechanisms of natural teeth.

 

02 Environmentally friendly

More environmentally friendly and non-toxic than most products on the market.

 

03 Broadly applicable

Suitable for metal surface treatment in orthodontic anchorage screws, maxillofacial restoration, and various orthopedic restorations.

 

04 Aesthetic Appearance

Rich color classification, user-friendly operation, and the application of new materials help reduce gingival margin aesthetic defects caused by insufficient soft tissue closure on implant surfaces, significantly enhancing the red/white aesthetic index.

 

05 Hydrophilic Performance

Its hydrophilic performance rivals that of international high-end brands, significantly boosting osteocalcin production, increasing local growth factors by a factor of 10, reducing bone-union time by half compared to conventional types, and shortening soft-tissue sealing time by a factor of 2 to 3.

 

[1] L. Huang et al. Nanoscale chemical and mechanical heterogeneity of human dentin characterized by AFM-IR and bimodal AFM. Journal of Advanced Research 22 (2020) 163–171 165
[2] R. Kubinek et al. Examination of dentin surface using AFM and SEM[J]. Published online, 2007

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