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TRIHYDROXYPALMITAMIDOHYDROXYPROPYL MYRISTYL ETHER.

Valuable / SKIN CONDITIONING

Trihydroxypalmitamidohydroxypropyl Myristyl Ether is a non-ionic surfactant identified as Ceramide HO3, playing a dual role in precision skincare. It functions as a conditioning agent that supports the skin's barrier, while also providing crucial dispersing, emulsifying, and lubricating properties in formulations.

Skin Conditioning Non-ionic Surfactant Dispersing Agent Emulsifying Agent Lubricant Skin Barrier Support

Science

This ingredient operates as a non-ionic surfactant, adeptly facilitating the dispersion and emulsification of immiscible phases within a formulation, alongside offering significant lubricating effects. Crucially, its designation as Ceramide HO3 indicates a direct contribution to reinforcing the skin's intrinsic barrier function, thereby enhancing hydration and overall skin integrity.


Research

Low confidence
Effective range N/A
Optimal

0.02%


Transparency

Not commonly dusted

The Formula

Solubility
Oil
Optimal pH N/A
0 7 14

Stability

The ingredient demonstrates consistent stability under standard formulation conditions.

Conflicts

  • Strong oxidants

Safety

CIR Status
Not reviewed
Max tested
0.02%
Sensitization risk Low

The Australian Industrial Chemicals Introduction Scheme (AICIS) has assessed this chemical for dermal cosmetic product use at concentrations not exceeding 0.02%. It is strictly advised not to be incorporated into topical products designated for the eye area. In its solid, raw form, the material is classified as flammable and has been associated with irritation to the skin, eyes, and respiratory system. Proper handling precautions for the solid form are essential.


Your Skin

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

Our Assessment

Valuable

Trihydroxypalmitamidohydroxypropyl Myristyl Ether is a valuable multifunctional ingredient, offering skin conditioning and barrier support as Ceramide HO3, while also serving as an effective surfactant within its assessed concentration limit of 0.02%.


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