La formule en un clin d'œil

Chacun de nos ingrédients ont été sélectionnés pour leur efficacité. Retrouvez tous les ingrédients de votre produit regroupés dans des familles en fonction de leur rôle.

Conseil d'application

Les ingrédients à la loupe

Les ingrédients de nos formules ont été sélectionnés selon des critères dermatologiques très stricts et recommandés par des experts toxicologues indépendants. Classés dans trois grandes catégories d’actifs, vous découvrirez la nature, le rôle et l'origine de chacun en cliquant sur leur nom.

Ici sont regroupés les ingrédients qui contribuent à l'efficacité attendue du produit : ceux qui optimisent ou préservent les mécanismes biologiques de la peau (comme l'hydratation, la régénération, l’action relipidante), et ceux qui possèdent une action physico-chimique bien spécifique (exfoliant, matifiant, filtres solaires...).

L’Eau Cellulaire contient / Cellular Water contains: AQUA/WATER/EAU, DISODIUM ADENOSINE TRIPHOSPHATE, CARNOSINE, MINERAL SALTS/SELS MINÉRAUX

Les ingrédients listés ici sont ceux contenus dans la dernière formule de ce produit. Un décalage de temps pouvant exister entre sa production et sa diffusion sur le marché, nous vous invitons à consulter la liste des ingrédients figurant sur l’emballage

Aqua/water/eau

Qu’est-ce que c’est ?

Water contained in Cellular Water.

À quoi ça sert ?

Contributes to the Cellular Water patent.
NAOS has designed a perfectly defined water, meeting the three fundamental criteria for physiological fluids: pH, oxidation resistance, and concentration of mineral salts.
It optimises cellular functioning and preserves the balance of healthy skin.

Components contributing to this patent: aqua/water/eau, disodium adenosine triphosphate, carnosine, laminaria digitata extract, aminoethanesulfinic acid, citric acid, as well as mineral salts.

Comment l’obtient-ton ?

Mineral origin.

Glycerin

Qu’est-ce que c’est ?

Glycerin.

À quoi ça sert ?

Moisturising: increases the water content of the skin’s outermost layers.

Comment l’obtient-ton ?

Component naturally found in the skin, extracted from vegetable oil.

Isononyl isononanoate

Qu’est-ce que c’est ?

Fatty acid derivative.

À quoi ça sert ?

Emollient: soothes and softens the skin.

Comment l’obtient-ton ?

Synthesis

To select an ingredient, NAOS can call on synthesis in order to:
- reconstitute a natural molecule without having to extract it from a plant and thus better respect biodiversity,
- obtain a pure, perfectly defined ingredient.

Butylene glycol

Qu’est-ce que c’est ?

Polyol.

À quoi ça sert ?

Humectant: maintains the skin’s moisture level.

Comment l’obtient-ton ?

Synthesis

To select an ingredient, NAOS can call on synthesis in order to:
- reconstitute a natural molecule without having to extract it from a plant and thus better respect biodiversity,
- obtain a pure, perfectly defined ingredient.

Ethylhexyl palmitate

Qu’est-ce que c’est ?

Fatty acid derivative.

À quoi ça sert ?

Emollient: soothes and softens the skin.

Comment l’obtient-ton ?

Combination of fatty acid extracted from vegetable oil, and synthesised fatty alcohol.

Sodium hyaluronate

Qu’est-ce que c’est ?

Hyaluronic acid.

À quoi ça sert ?

Contributes to the Hyaluronic patent.
This patented complex combines various sizes and forms of hyaluronic acid* that moisturise, smooth the epidermis and reactivate the production of hyaluronic acid by the skin.
* high molecular weight, medium molecular weight and encapsulated form.

Comment l’obtient-ton ?

Component naturally found in the skin, obtained by biotechnology.Biotechnology uses biological processes, including natural fermentation, to obtain ingredients.

Polyacrylate crosspolymer-6

Qu’est-ce que c’est ?

Acrylic polymer.

À quoi ça sert ?

Gelling: provides the texture with consistency.

Comment l’obtient-ton ?

Synthesis

To select an ingredient, NAOS can call on synthesis in order to:
- reconstitute a natural molecule without having to extract it from a plant and thus better respect biodiversity,
- obtain a pure, perfectly defined ingredient.

Pentylene glycol

Qu’est-ce que c’est ?

Polyol.

À quoi ça sert ?

Stabilising: contributes to the product’s homogeneity or stability.

Comment l’obtient-ton ?

Synthesis

To select an ingredient, NAOS can call on synthesis in order to:
- reconstitute a natural molecule without having to extract it from a plant and thus better respect biodiversity,
- obtain a pure, perfectly defined ingredient.

Fragrance (parfum)

Qu’est-ce que c’est ?

Fragrance composition.

À quoi ça sert ?

Scent & Fragrance: provides the product with olfactory sensory appeal.

Comment l’obtient-ton ?

Combination of synthesised and plant-based odour molecules.

Caprylyl glycol

Qu’est-ce que c’est ?

Polyol.

À quoi ça sert ?

Stabilising: contributes to the product’s homogeneity or stability.

Comment l’obtient-ton ?

Synthesis

To select an ingredient, NAOS can call on synthesis in order to:
- reconstitute a natural molecule without having to extract it from a plant and thus better respect biodiversity,
- obtain a pure, perfectly defined ingredient.

1,2-hexanediol1

Qu’est-ce que c’est ?

Polyol.

À quoi ça sert ?

Stabilising: contributes to the product’s homogeneity or stability.

Comment l’obtient-ton ?

Synthesis

To select an ingredient, NAOS can call on synthesis in order to:
- reconstitute a natural molecule without having to extract it from a plant and thus better respect biodiversity,
- obtain a pure, perfectly defined ingredient.

Disodium edta

Qu’est-ce que c’est ?

Edetic acid derivative.

À quoi ça sert ?

Stabilising: contributes to the product’s homogeneity or stability.

Comment l’obtient-ton ?

Synthesis

To select an ingredient, NAOS can call on synthesis in order to:
- reconstitute a natural molecule without having to extract it from a plant and thus better respect biodiversity,
- obtain a pure, perfectly defined ingredient.

Glyceryl acrylate/acrylic acid copolymer

Qu’est-ce que c’est ?

Acrylic polymer.

À quoi ça sert ?

Gelling: provides the texture with consistency.

Comment l’obtient-ton ?

Synthesis

To select an ingredient, NAOS can call on synthesis in order to:
- reconstitute a natural molecule without having to extract it from a plant and thus better respect biodiversity,
- obtain a pure, perfectly defined ingredient.

Propylene glycol

Qu’est-ce que c’est ?

Polyol.

À quoi ça sert ?

Humectant: maintains the skin’s moisture level.

Comment l’obtient-ton ?

Synthesis

To select an ingredient, NAOS can call on synthesis in order to:
- reconstitute a natural molecule without having to extract it from a plant and thus better respect biodiversity,
- obtain a pure, perfectly defined ingredient.

Phenoxyethanol

Qu’est-ce que c’est ?

Phenoxyethanol.

À quoi ça sert ?

Preservative: protects the product from microbial contamination throughout its use.

Comment l’obtient-ton ?

Synthesis

To select an ingredient, NAOS can call on synthesis in order to:
- reconstitute a natural molecule without having to extract it from a plant and thus better respect biodiversity,
- obtain a pure, perfectly defined ingredient.

Silica dimethyl silylate

Qu’est-ce que c’est ?

Silica derivative.

À quoi ça sert ?

Stabilising: contributes to the product’s homogeneity or stability.

Comment l’obtient-ton ?

Synthesis

To select an ingredient, NAOS can call on synthesis in order to:
- reconstitute a natural molecule without having to extract it from a plant and thus better respect biodiversity,
- obtain a pure, perfectly defined ingredient.

Carnosine

Qu’est-ce que c’est ?

Peptide.

À quoi ça sert ?

Contributes to the Cellular Water patent.
NAOS has designed a perfectly defined water, meeting the three fundamental criteria for physiological fluids: pH, oxidation resistance, and concentration of mineral salts.
It optimises cellular functioning and preserves the balance of healthy skin.

Components contributing to this patent: aqua/water/eau, disodium adenosine triphosphate, carnosine, laminaria digitata extract, aminoethanesulfinic acid, citric acid, as well as mineral salts.

Comment l’obtient-ton ?

Component naturally found in the skin, obtained by synthesis.

To select an ingredient, NAOS can call on synthesis in order to:
- reconstitute a natural molecule without having to extract it from a plant and thus better respect biodiversity,
- obtain a pure, perfectly defined ingredient.

Disodium adenosine triphosphate

Qu’est-ce que c’est ?

Nucleotide (ATP).

À quoi ça sert ?

Contributes to the Cellular Water patent.
NAOS has designed a perfectly defined water, meeting the three fundamental criteria for physiological fluids: pH, oxidation resistance, and concentration of mineral salts.
It optimises cellular functioning and preserves the balance of healthy skin.

Components contributing to this patent: aqua/water/eau, disodium adenosine triphosphate, carnosine, laminaria digitata extract, aminoethanesulfinic acid, citric acid, as well as mineral salts.

Comment l’obtient-ton ?

Component naturally found in the skin, obtained by biotechnology.Biotechnology uses biological processes, including natural fermentation, to obtain ingredients.

Laminaria digitata extract

Qu’est-ce que c’est ?

Brown algae extract.

À quoi ça sert ?

Contributes to the Cellular Water patent.
NAOS has designed a perfectly defined water, meeting the three fundamental criteria for physiological fluids: pH, oxidation resistance, and concentration of mineral salts.
It optimises cellular functioning and preserves the balance of healthy skin.

Components contributing to this patent: aqua/water/eau, disodium adenosine triphosphate, carnosine, laminaria digitata extract, aminoethanesulfinic acid, citric acid, as well as mineral salts.

Comment l’obtient-ton ?

Laminaria algae extraction.

Hexylene glycol

Qu’est-ce que c’est ?

Polyol.

À quoi ça sert ?

Stabilising: contributes to the product’s homogeneity or stability.

Comment l’obtient-ton ?

Synthesis

To select an ingredient, NAOS can call on synthesis in order to:
- reconstitute a natural molecule without having to extract it from a plant and thus better respect biodiversity,
- obtain a pure, perfectly defined ingredient.

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