LIPORESIST®

LIPORESIST® is an advanced liposomal delivery system designed to protect enzymes—specifically Alpha Amylase—from degradation caused by oxidation, heat, and stomach acidity. It uses nanosizing, phospholipid modifications, and surface enhancements like chitosan and tocopherol (Vitamin E) to improve enzyme stability, bioavailability, and shelf life, ensuring maximum efficacy in diverse formulations.

  • Overview
  • Mechanism Of Action
  • Features & Benefits
  • Pharmacokinetics

Technology Behind

LIPORESIST® is an advanced liposomal delivery system designed to protect enzymes—specifically Alpha Amylase—from degradation caused by oxidation, heat, and stomach acidity. It uses nanosizing, phospholipid modifications, and surface enhancements like chitosan and tocopherol (Vitamin E) to improve enzyme stability, bioavailability, and shelf life, ensuring maximum efficacy in diverse formulations.

Cellular stress

Mechanism of Action

Alpha Amylase is encapsulated within liposomal vesicles, which protect it from heat, oxidation, and acidic pH. Phospholipid modifications and surface coatings further stabilize the enzyme, preventing structural degradation and preserving activity. Nanosizing and protective layers enhance bioavailability, allowing the enzyme to survive the gastrointestinal tract and reach target sites efficiently. The liposomal design also enables gradual release, ensuring sustained enzyme activity and maximizing therapeutic or nutritional effectiveness.

Stressed Cell Visualization

Superior Bioavailability

Overcomes poor solubility and absorption issues, ensuring maximum therapeutic effect.

Enhanced Stability & Protection –

Shields sensitive actives from environmental degradation, maintaining potency

Targeted Action & Better Performance

Facilitates deeper penetration into target tissues, increasing localized bioactivity.

Pharmacokinetics

Alpha Amylase is encapsulated within liposomal vesicles, which protect it from heat, oxidation, and acidic pH. Phospholipid modifications and surface coatings further stabilize the enzyme, preventing structural degradation and preserving activity. Nanosizing and protective layers enhance bioavailability, allowing the enzyme to survive the gastrointestinal tract and reach target sites efficiently. The liposomal design also enables gradual release, ensuring sustained enzyme activity and maximizing therapeutic or nutritional effectiveness.

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