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le Green Pill

  • one per day
  • gluten free
  • all natural

100% Natural Camellia Sinensis Sea Spice Pill

100% Natural Camellia Sinensis Sea Spice Pill

Regular price $53.50 CAD
Regular price Sale price $53.50 CAD
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Size

TDMC Le Green Pill™1080 mg 00 pill capsules

TDMC Le Green Pill™

1080 mg 00 pill capsules

Our formula is anchored in the rich phytochemical landscape of Camellia sinensis, renowned for its diverse health-promoting compounds. Enhanced by a proprietary blend, meticulously crafted through advanced machine intelligence, TDMC is engineered to deliver a spectrum of benefits tailored to support and elevate human health.

all natural ingredients

  • Epigallocatechin Gallate (EGCG): 45%
  • EGCG monomers: 30%
  • EGCG derivatives15%; post metabolic transformation: (includes methylated, glucuronidated, and sulfated forms)
  • Caffeine: 5% 
  • L-Theanine: 3% 
  • Other Catechins: 25% 
  • Flavonoids and Flavonols: 4% 
  • Amino Acids (excluding Theanine): 4%
  • Vitamins: 1%
  • Minerals: 6%
  • Trace Phytochemicals and Other Components: 12% of TDMC

This detailed breakdown, provides a comprehensive view of the TDMC's composition, reflecting the complex interplay of bioactive compounds and their potential synergies. It's important to note that the actual percentages could vary based on extraction methods, plant varietals, and growing conditions. The TDMC formula's efficacy and bioavailability, align with a holistic perspective on health and wellness.

Holistic Benefits:

  • Supports antioxidant defenses, helping to mitigate oxidative stress.
  • Promotes cardiovascular health and metabolic wellness.
  • Enhances cognitive function and mental clarity.
  • Bolsters the immune system's natural defenses.
  • Contributes to healthy digestive and gut health.
  • May have beneficial effects on skin health and appearance.

the heart of our formula lies a rich concentration of Camellia sinensis, and data-driven formulation. This traditional cornerstone is revered for its comprehensive health benefits, from antioxidant defense to metabolic support. Leveraging advanced algorithms and data analysis, our formulation process identifies optimal combinations of natural compounds that amplify the health-promoting properties of our base ingredients.

Disclaimer for Le Green Pill

The content provided here about "Le Green Pill" is for educational purposes only and derived from natural products. "Le Green Pill" is not designed to diagnose, treat, cure, or prevent any disease. Its effectiveness has not been confirmed by FDA-approved research. This product should not replace professional medical advice or treatment.

Data included is reproduced under a license from © Her Majesty the Queen in Right of Canada, represented by the Minister of Health, 2018, from "ANF User Guide" and "NHP MAP 2019 Guidance Document."

Consult a healthcare professional before using any natural health products, especially if pregnant, nursing, or dealing with a medical condition. This product is intended to complement a balanced diet and healthy lifestyle. Not intended to diagnose, treat, cure, or prevent any disease. Consult a healthcare professional before beginning any new supplement regimen.

TDMC could offer a novel approach to HIV prevention and therapy.

When considering the interaction of TDMC with HIV, it's essential to acknowledge the crucial step where HIV binds to CD4 molecules on T cells to initiate infection. EGCG, a major component of TDMC, has been shown to block this binding, effectively preventing the virus from infecting cells by demonstrating a strong affinity for CD4 molecules and thus hindering the attachment of HIV envelope glycoproteins to these receptors. Building upon this understanding, TDMC, which is enriched with bioactive compounds including EGCG, to amplify this inhibitory effect through its interactions with specific membrane zones. TDMC modifies the protein-lipid code within the membrane zones where HIV binding and fusion take place. By interacting with the lipids in these zones, TDMC prevents the formation of the necessary functional membrane fusion sites for viral entry. Additionally, TDMC's engagement with membrane proteins and lipids influence the clustering and distribution of CD4 receptors and other co-receptors crucial for HIV infection. This involves altering the membrane's zoning and the localization of these receptors, which should diminish the efficiency of viral binding and entry. These changes may include the stabilization of certain lipid-protein interactions or inducing alterations in the membrane's physical properties, such as curvature or stiffness, which are known to affect the processes of viral fusion and budding. This hypothesis aligns with the concept of zoning and the role of bioactive compounds in modulating membrane dynamics. By affecting the organization and functionality of specific membrane zones, TDMC could offer a novel approach to HIV prevention and therapy. This approach leverages the natural compounds ability to disrupt virus's lifecycle at a fundamental biophysical level.

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