Boutique Black Diamond Toothpaste Revolutionary Technology

The patented Black Diamond Toothpaste is a revolutionary concept – formulated with innovative nanosphere technology.

Nanospheres consist of amorphous calcium magnesium phosphate nano particles. The nanospheres in our toothpaste penetrate deep into the dentine and actively release minerals to occlude the tubules. This alleviates discomfort from dentine sensitivity.

Use morning and night for 2 weeks, prior to, and throughout, the teeth whitening process
Boutique Black Diamond can be used in place of your normal toothpaste going forward.

Dentine Tubule Occlusion and Mineralization with Boutique Black Diamond

Why is Boutique Black Diamond better than ALL other toothpastes?

Dentinal tubules are typically 1 to 2 μm in diameter.

Most bioglass products have an average particle size of 5μm, so cannot penetrate into the tubules, and can only mineralise the tooth surface. This layer is highly susceptible to wear and erosion.

Black Diamond nanospheres have an average particle size of 0.3 μm, so can easily penetrate deep into the tubules. Intra-tubular mineralisation is less affected by wear and erosion.

Because of the smaller particle size, Black Diamond is less abrasive than products containing bioglass. Nano particles are more readily soluble, thereby increasing pH, and giving a sustained, but controlled release of minerals to strengthen the enamel layer.

Evidence to show the effects of Boutique Black Diamond Toothpaste

MI Paste Plus® with RECALDENT™ is a registered trademark of GC Corporation. Sensodyne® Repair & Protect toothpaste with
NovaMin® is a registered trademark of GlaxoSmithKline. Colgate® Sensitive PRO-Relief® Pro-Argin™ formula is a registered
trademark of Colgate-Palmolive Company. Oral-B® Pro-Expert toothpaste with Stannous Fluoride Complex is a registered
trademark of Procter & Gamble.

  1. Data on fi le: Psilox report R-1239.
  2. Amorphous Calcium Magnesium Phosphate Particles for Treatment of Dentin Hypersensitivity: A Mode of Action Study, Camilla
    Berg, Erik Unosson, Håkan Engqvist, and Wei Xia, ACS Biomaterials Science & Engineering 2020, 6 (6), 3599-3607. DOI:10.1021/
    acsbiomaterials.0c00262
  3. Electron microscopy evaluation of mineralization on peritubular dentin with amorphous calcium magnesium phosphate
    microspheres, Camilla Berg, Erik Unosson, Lars Riekehr, Wei Xia, and Håkan Engqvist, Ceramics International 2020, 46 (11), 19469-19475. DOI: 10.1016/j.ceramint.2020.04.295

Are your patients ready for a whiter, brighter smile?