The IPSTiC technology bases its action on a multimodal approach due to the synergistic effect of the polymer matrices that make up the blend and the active ingredients present. The synergistic effect of hydration and adhesion resulting from the union of the three polymer matrices is combined, therefore, with the specific properties of the active ingredients conveyed. Actions: Increased stability of the final product by preserving the active ingredients of plant origin from degradation Long-lasting effect
In vitro efficacy assessmen*
Anti-inflammatory
Exfoliating
Hydrating
Acne treatment
Acne Treatment
Exfoliant
Moisturizer
Acne treatments
Pore-cleansing skincare
Unclogs pores and prevents breakouts
Reduces acne scars
Hydrates and soothes skin
The IPSTiC technology bases its action on a multimodal approach due to the synergistic effect of the polymer matrices that make up the blend and the active ingredients present. The synergistic effect of hydration and adhesion resulting from the union of the three polymer matrices is combined, therefore, with the specific properties of the active ingredients conveyed.
Actions: Increased stability of the final product by preserving the active ingredients of plant origin from degradation
Long-lasting effect
IPSTiC (Interconnected Polymers Technology) technology represents an innovative and effective strategy for the conveying of active ingredients.
This technology is based on the creation of a polymer blend, composed of high molecular weight Hyaluronic Acid, Rice Proteins and Hydroxyethylcellulose, characterized by interconnection on a molecular scale of the macromolecules that constitute it.
The IPSTiC technology bases its action on a multimodal approach due to the synergistic effect of the polymer matrices that make up the blend and the active ingredients present. The synergistic effect of hydration and adhesion resulting from the union of the three polymer matrices is combined, therefore, with the specific properties of the active ingredients conveyed. Actions: Increased stability of the final product by preserving the active ingredients of plant origin from degradation Long-lasting effect
The IPSTiC technology bases its action on a multimodal approach due to the synergistic effect of the polymer matrices that make up the blend and the active ingredients present.
The synergistic effect of hydration and adhesion resulting from the union of the three polymer matrices is combined, therefore, with the specific properties of the active ingredients conveyed.
Actions: Increased stability of the final product by preserving the active ingredients of plant origin from degradation
Long-lasting effect
The IPSTiC technology bases its action on a multimodal approach due to the synergistic effect of the polymer matrices that make up the blend and the active ingredients present. The synergistic effect of hydration and adhesion resulting from the union of the three polymer matrices is combined, therefore, with the specific properties of the active ingredients conveyed. Actions: Increased stability of the final product by preserving the active ingredients of plant origin from degradation Long-lasting effect
The IPSTiC technology bases its action on a multimodal approach due to the synergistic effect of the polymer matrices that make up the blend and the active ingredients present. The synergistic effect of hydration and adhesion resulting from the union of the three polymer matrices is combined, therefore, with the specific properties of the active ingredients conveyed.
Actions:
IPSTiC (Interconnected Polymers Technology) technology represents an innovative and effective strategy for the conveying of active ingredients.
This technology is based on the creation of a polymer blend composed of high molecular weight Hyaluronic Acid, Rice Proteins and Hydroxyethylcellulose, characterized by interconnection on a molecular scale of the macromolecules that constitute it.
The IPSTiC technology bases its action on a multimodal approach due to the synergistic effect of the polymer matrices that make up the blend and the active ingredients present. The synergistic effect of hydration and adhesion resulting from the union of the three polymer matrices is combined, therefore, with the specific properties of the active ingredients conveyed. Actions: Increased stability of the final product by preserving the active ingredients of plant origin from degradation Long-lasting effect
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