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ETHYLENE DILINOLEAMIDE.

Valuable / VISCOSITY CONTROLLING

Ethylene Dilinoleamide is a fatty acid derivative primarily utilized for its emollient properties to enhance skin hydration and its ability to modulate product viscosity. Its chemical structure suggests a role in supporting skin barrier function and improving overall skin comfort.

Emollient Viscosity controlling Hair-conditioning agent Skin-conditioning agent Surfactant - foam booster

Science

As an ethanolamide derivative, Ethylene Dilinoleamide is hypothesized to function as an emollient by forming a protective film on the skin's surface. This barrier reduces transepidermal water loss (TEWL), thereby moisturizing the skin and potentially alleviating dryness and associated pruritus. It also serves as a viscosity controlling agent, influencing the texture and flow characteristics of cosmetic formulations.


Research

Medium confidence
Effective range 10–20%
Optimal

N/A


Transparency

Not commonly dusted

No data available to suggest this ingredient is commonly associated with 'dusting' concerns, which typically refer to marketing an ingredient at insufficient concentrations for efficacy.


The Formula

Solubility
Oil
Optimal pH N/A
0 7 14

Conflicts

  • Should not be used in cosmetic products where the formation of N-nitroso compounds is possible.

Safety

CIR Status
Safe as used
Sensitization risk Low

The Cosmetic Ingredient Review (CIR) Expert Panel has reviewed 28 ethanolamides, including Ethylene Dilinoleamide, deeming them safe for use in present cosmetic practices and concentrations. This safety assessment is contingent upon formulations being nonirritating and ensuring the ingredient is not utilized in products where N-nitroso compounds may be formed.


Your Skin

No Normal
Yes Dry
No Oily
Yes Sensitive
Irritancy Unknown
Comedogenicity Unknown

Our Assessment

Valuable

Ethylene Dilinoleamide is a valuable multifunctional ingredient, offering beneficial emollient properties for dry and sensitive skin, alongside significant formulation advantages, supported by a favorable safety profile under specific conditions.


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References