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Anti-Microbial Implant NanoSurface

Brown University engineers have shown that both zinc and titanium oxide nanosurfaces can reduce the presence of bacteria. Discs with nanostructured surfaces had bumps that measured only .023 microns in diameter. Discs with microstructured surfaces had bumps that measured about 5 microns in diameter. Microstructured zinc oxide discs were host to 1,000 times more bacteria than the nanostructured zinc oxide discs. Similar, but less striking, results were duplicated on titanium oxide discs. The engineer`s hypothesis is that: `with the nanostructured

Zirconium One Stage Implants

Ceraroot have designed five ziconium-based one-stage implants for use in different areas of the mouth. The anatomically designed implants incorporate the abutment into the implant for a very esthetic result. An interesting video is posted on Google Video showing the use of a Ceraroot implant in an immmediate placement procedure.

NobelDirect – Analysts` Report on Bone Loss Controversy

Merrill Lynch and UBS have released stock research reports regarding Nobel Biocare`s NobelDirect implant design. Several recent studies suggest more than 3mm of bone loss in 14-55% of patients. An expert panel advising the Swedish Medical Products Agency on the safety of the NobelDirect implant has responded to a recent Nobel Biocare rebuttal letter in a critical manner. The Merrill Lynch analyst suggests a NobelDirect withdrawal may be ahead.

Ceramic VectoDrill Set

Thommen Medical has redesigned their VECTOdrill™ twist drills in a high-strength, alumina-toughened zirconia (ATZ). The drills` ATZ ceramic ensures efficient and consistent cutting performance throughout the life of the twist drill. The pilot drill design features a high efficiency cutting tip which initiates the pilot hole without the need for a round bur and has the ability to cut laterally to correct osteotomy location. These are similar in design to the MIS ceramic drills reported on previously.

BioFunctional Implant Coating – US Patent Issued

Straumann has received a US patent for a bioactive coating for their implants. Their modified sandblasted and acid-etched (SLA) surface is coated with an Arg–Gly–Asp (RGD)-peptide-modified polymer (PLL-g-PEG/PEG–RGD). According to a study by Danny Buser, RGD-coated implants demonstrated significantly higher percentages of bone-to-implant contact as compared with controls at 2 weeks. The hypothesized mechanism is that the attachment of RGD peptides directed towards integrin receptors on the PEGylated surface promotes adhesion of cells of mesenchymal origin e.g. osteoblasts to the