VITASOME®

 

A next-generation liposomal delivery system designed to shield vitamins from degradation and enhance their intestinal absorption. VitaSome® increases nutrient bioavailability—ensuring vitamins stay stable, gentle on the stomach, and available longer in the bloodstream for maximum heart health support.

  • Overview
  • Surpassing Challenges
  • Molecular Design Engineer
  • Mechanism Of Action
  • Features & Benefits
  • Pharmacokinetics

Technology Behind

Advanced Liposomal Delivery System for Superior Nutrient Absorption

VitaSome® Technology is an advanced liposomal encapsulation system engineered to significantly enhance the bioavailability and stability of fat-soluble and water-soluble vitamins. Each vitamin is embedded within a microscopic lipid vesicle that protects it from digestive breakdown and ensures optimal absorption through the intestinal lining. This enables nutrients to remain intact, be absorbed efficiently, and circulate longer in the bloodstream for sustained physiological benefits.

VitaSome® represents a major leap in nutrient delivery, offering up to more than 10-times higher absorption compared to traditional multivitamins. The system improves cellular targeting, minimizes gastrointestinal discomfort, and ensures that even sensitive compounds—such as Vitamin D3 and Vitamin K2—retain their full potency.

Cellular stress

Key Challenges

Surpassing Challenges 1

Poor absorption of fat-soluble vitamins (A, D, E, K2) in traditional formulations

Surpassing Challenges 1

Degradation of sensitive nutrients during digestion (heat, acidity, oxidation)

Surpassing Challenges 2

Gastrointestinal discomfort from high-dose conventional supplements

Surpassing Challenges 3

Low bioavailability resulting in insufficient therapeutic levels

1. Smart Payload System

VITASOME® technology is engineered to encapsulate a broad spectrum of vitamins, including both:

  • Water-Soluble Vitamins C & B-Complex (B1-B12) and Fat-Soluble Vitamins (A, E, K2, and D3) – Enhancing stability and controlling their rapid metabolism, very short half-life, low solubility, and low bioavailability.
  • Each vitamin is protected within an advanced liposomal structure with modified polymeric surface, shielding it from degradation while maximizing its functional impact in the body.

Stressed Cell Visualization
Healthy Cell Visualization

2. Advanced Liposomal Carrier

The VITASOME® dual-layer nanocarrier system is designed to:

  • Protect against digestive breakdown – Ensuring stability in the stomach and small intestine.
  • Enhance permeability – Mimicking cell membranes for direct intracellular transport.
  • Prolong circulation time – Preventing rapid elimination and enhancing sustained nutrient release.

How VitaSome® Works?

VITASOME® harnesses next-generation liposomal technology to create an intelligent delivery mechanism that significantly improves nutrient bioavailability:

  • Liposomal Encapsulation: Forms stable lipid bilayers protecting vitamins from heat, acidity, and oxidation.
  • Enhanced Transport: Liposomes fuse with cell membranes, improving intracellular delivery.
  • Improved Stability: Shield sensitive actives from degradation during digestion.
  • Prolonged Circulation: Nutrients remain available longer for sustained biological activity.

Stressed Cell Visualization

Maximized Protection

Better vitamin stability, GI tolerance, fast degradation due to heat, acidity, oxidation

Higher Absorption

Increased absorption of fat-soluble and water-soluble vitamins

Superior Bioavailability

Sustained release for longer physiological support

Pharmacokinetics

VitaSome® Technology significantly modifies the pharmacokinetic profile of vitamins by incorporating them into nanoscale liposomal vesicles, resulting in accelerated absorption, prolonged systemic retention, and enhanced tissue distribution.

Absorption

  • Liposomal vesicles enable rapid transcellular uptake via enterocyte membrane fusion.
  • Fat-soluble vitamins are absorbed primarily through the lymphatic system, bypassing first-pass hepatic metabolism.
  • The technology increases Cmax due to enhanced dissolution and membrane permeability.

Distribution

  • Encapsulated vitamins circulate in a protected lipid phase, reducing plasma protein binding and increasing free active fraction.
  • Liposomes exhibit high affinity for cardiac, hepatic, and endothelial tissues, improving site-specific nutrient delivery.
  • Controlled particle size (typically 80–120 nm) enhances biodistribution and reduces RES (reticuloendothelial system) clearance.

Metabolism

  • Liposomal encapsulation delays enzymatic degradation, stabilizing vitamins prone to oxidation (D3, K2, E, C).
  • Gradual release from liposomes provides a sustained pharmacokinetic curve, maintaining therapeutic plasma levels longer.

Elimination

  • Slower elimination due to prolonged circulation time, reflected in a higher AUC (area under the curve).
  • The rate of renal excretion of water-soluble vitamins is decreased due to controlled release kinetics.

Overall PK Advantage

VitaSome® generates a steeper absorption phase, higher peak plasma concentration, longer half-life, and greater total bioavailability compared to conventional vitamin delivery systems.

No chart data available for this technology.

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