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HYDROXYETHYL CETEARAMIDOPROPYLDIMONIUM CHLORIDE.

Valuable CAS 243982-96-9 / ANTISTATIC, HAIR CONDITIONING, SKIN CONDITIONING

Hydroxyethyl Cetearamidopropyldimonium Chloride is a sophisticated conditioning agent, ingeniously designed from fatty acids to exhibit both water-attracting (hydrophilic) and oil-attracting (lipophilic) properties. This dual affinity allows it to effectively hydrate and smooth the skin while also providing protective and antistatic benefits for hair.

Antistatic Hair Conditioning Skin Conditioning

Science

This ingredient functions by forming a conditioning film on the skin's surface, which actively contributes to maintaining its moisture balance. This action results in a noticeably smoother and more hydrated skin feel. Its unique molecular structure, derived from modified fatty acids, enables it to interact efficiently with the skin's various components.


Research

Low confidence
Effective range N/A
Optimal

N/A


Transparency

Not commonly dusted

The Formula

Solubility
Both
Optimal pH N/A
0 7 14

Stability

While a specific optimal pH range for stability is not explicitly detailed, this ingredient is recognized for its ability to enhance the overall texture and stability within a broad range of cosmetic formulations.


Safety

CIR Status
Insufficient data
Sensitization risk Low

The Cosmetic Ingredient Review (CIR) Expert Panel has noted insufficient specific data for Hydroxyethyl Cetearamidopropyldimonium Chloride, though it was considered in the context of similar compounds previously deemed safe. The SCCS has not specifically reviewed this ingredient. It is generally considered safe for use in cosmetic products, and under U.S. law, cosmetic ingredients do not require pre-market FDA approval.


Your Skin

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

Our Assessment

Valuable

Hydroxyethyl Cetearamidopropyldimonium Chloride is a valuable conditioning agent that effectively enhances skin hydration and smoothness, demonstrating a low risk for irritation and comedogenicity in formulations.


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