Implant Brushite Bond Solves Exfoliation Problems
Dr. Nandra investigates how advanced surface treatment can benefit dental implants
An advanced infusion technique, combining specialist RBM surface treatment with a special Brushite bond, has solved the exfoliation problems experienced by other implant manufacturers.
The new Brushite bond by DIO Implant is transformed into a very stable calcium phosphate compound. Significant improvements in stability have been achieved by providing an increased amount of calcium ions (Ca2+ and PO42-) to the implant, accelerating steogenesis and mineralisation.
The advanced Brushite coating increases the blood osteoblast count on the implant surface and accelerates and enhances osseointegration between implant and bone. The coating effectively speeds up osseointegration by dissolution and promotes recovery by encouraging bone formation around the implant.
DIO Implant is so confident about its technological advances that it is offering coated surface options for its most successful dental implant ranges. The hybrid implants (BioTite-H) receive a dual surface treatment consisting of a biocompatible Brushite cap and advanced RBM surface roughness.
BioTite-H is available in implants ranging in size from mini-implants to extra-wide implants, making the benefits of Brushite technology available for all implant cases regardless of bone quality.
The safety of BioTite-H with Brushite bond has been demonstrated by clinical case data verified for validity in partnership with a German company specialising in bio-implant technology..
The price of DIO Implant’s advanced BioTite-H fixtures is just £184.99 plus vat.
Dr. Anoup BDS (U.Birm) MFGDP RCS (UK) MJDF RCS (UK) is an experienced cosmetic dentist, implantologist and vocational trainer. He is a full member of the British Academy of Cosmetic Dentistry, the American Academy of Cosmetic Dentistry, the Association of Dental Implantology, the Society for the Advancement of Anaesthesia in Dentistry and the British Society of Restorative Dentistry.
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“The initial stability on placement rapidly changes into an osseointegrated solid state”