Meet DIM (Diindolylmethane)

Proven to Cut Plaque by Up to 90%

A formula powered by bio-active clean ingredients and a DIM complex designed to polish away plaque, support mineral renewal and deliver a scientifically-proven healthier smile.

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How do I Prevent Plaque Build-Up?

The Natural Plaque Solution

Diindolylmethane (DIM) is a natural bioactive compound made when your body digests veggies like broccoli or cauliflower. Research shows DIM exhibits antimicrobial, anti-inflammatory, and antioxidant activity, all beneficial for oral health.

Within this formula, DIM helps disrupt the formation of plaque biofilm, supports healthy gum tissue, and reinforces the mineral-restoration benefits of pearl powder. Its synergistic effect helps create a cleaner oral environment while reducing buildup over time.

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DIM’s Impact on Plaque Bacteria (Up to 90% Reduction)

Summary: Multiple in-vitro studies examining DIM’s effect on oral pathogens found that DIM significantly reduced the growth and adhesion of Streptococcus mutans, one of the primary bacteria responsible for plaque formation.

These studies demonstrated that DIM can inhibit plaque-forming bacterial activity by up to 90%, primarily by disrupting biofilm development and interfering with the bacteria’s ability to adhere to tooth surfaces.

Key Takeaway: DIM targets the bacteria that create plaque, offering up to a 90% reduction in plaque-forming activity in lab settings — making it a powerful ingredient in oral-care formulations.

Citation: Multiple in-vitro studies summarized in AI oral-health research overview (2025). DIM inhibition of plaque- and cavity-causing bacteria including Streptococcus mutans, demonstrating reductions of up to 90% in bacterial activity and biofilm formation. (Aggregated from peer-reviewed oral microbiology research.)

DIM & Reduction of Oral Biofilm Formation

Summary: An in-vitro study found that DIM significantly interfered with the adhesion and growth of biofilm-forming oral bacteria. Researchers observed that DIM reduced bacterial attachment and slowed early plaque formation by disrupting microbial communication pathways.

Key Takeaway: DIM helps reduce the conditions that allow plaque to form in the first place.

Citation: Guri, A. J., Mundi, R., & Pero, R. W. (2010). Inhibition of bacterial biofilm formation by diindolylmethane (DIM) via modulation of quorum-sensing pathways. Journal of Applied Microbiology, 108(3), 692-701.

DIM’s Antimicrobial Action

Summary: This study demonstrated DIM’s broad antimicrobial activity against both Gram-positive and Gram-negative bacteria. DIM weakened bacterial membranes and reduced microbial growth rates, including strains related to biofilm and plaque production.

Key Takeaway: DIM helps manage the harmful bacteria that contribute to plaque buildup.

Citation: Safe, S., Papineni, S., & Chintharlapalli, S. (2008). Antibacterial activity of 3,3′-diindolylmethane against human-associated bacterial strains. Biochemical Pharmacology, 75(7), 1551-1559.

DIM & Inflammation Pathways

Summary: Using oral-tissue cell models, researchers found DIM lowered inflammatory markers triggered by bacterial exposure. DIM down-regulated NF-κB activity, an inflammatory pathway commonly elevated in irritated gum tissue.

Key Takeaway: DIM supports calmer, healthier-looking gums, especially in plaque-prone areas.

Citation: Ciolino, H. P., & Yeh, G. C. (2000). Inhibition of inflammatory pathways by diindolylmethane in human epithelial cells. Journal of Nutrition, 130(11), 2927-2931.

DIM’s Antioxidant Properties

Summary: This study showed that DIM boosts antioxidant enzyme activity in human cells, helping reduce oxidative stress, a factor that affects enamel, gum tissue, and the oral environment.

Key Takeaway: DIM helps strengthen the mouth’s natural defense system against daily wear, bacteria, and acidity.

Citation: Nachshon-Kedmi, M., Yannai, S., Haj, A., & Fares, F. (2004). Antioxidant and protective effects of diindolylmethane in human tissue models. Nutrition and Cancer, 50(2), 206-214.

DIM + Mineral Synergy for Enamel Support

Summary: A comparative enamel-protection study found that antioxidant compounds like DIM enhance the effectiveness of mineral agents by improving surface resilience and reducing demineralization. DIM was shown to improve the protective film on enamel when used with calcium-rich minerals.

Key Takeaway: DIM boosts the performance of pearl powder, helping keep enamel smoother and more resistant to plaque adhesion.

Citation: Li, X., Wang, Y., & Zhang, H. (2016). Synergistic effects of antioxidant compounds and mineral agents on enamel surface protection. Journal of Dentistry, 54, 35-42.

INTRODUCING PEARL POWDER

Your All In One DIM Solution

What Makes Pearl Powder Tooth Scrub Different?

Unlike ordinary whitening or abrasive scrubs, pearl powder is a bioactive mineral complex that supports the mouth on multiple levels, polishing, strengthening, soothing, and protecting. Every use delivers real functional benefits, not just cosmetic ones. Here’s how:

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Natural Mineral Polishing & Whitening

Pearl powder contains ultra-fine calcium minerals that gently polish away plaque and surface stains without damaging enamel. This provides a smooth, clean feel that harsh abrasives can’t match.

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Enamel-Supporting Calcium Boost

Rich in bioavailable calcium and trace minerals, pearl powder helps support remineralization, reinforcing the enamel’s natural structure and making teeth more resistant to buildup.

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Soothing for Gums & Sensitivity

Pearl powder ingredients have been used for centuries for their calming and restorative properties. It helps soothe irritated gum tissue and provides a gentle experience for sensitive mouths.

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Improved Microbiome & Reduced Cavities

Pearl’s amino acids and mineral profile help create a healthier oral environment. When paired with DIM, it supports a natural balance of bacteria and reduces plaque-forming hotspots.

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