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ETHYLHEXYL BIS-ISOPENTYLBENZOXAZOLYLPHENYL MELAMINE.

Insufficient Data CAS 288254-16-0 / UV ABSORBER

ETHYLHEXYL BIS-ISOPENTYLBENZOXAZOLYLPHENYL MELAMINE is a novel compound intended to function as a UV absorber in cosmetic formulations. Its primary role is to mitigate the effects of ultraviolet radiation on the skin, offering a protective barrier.

UV Filter

Science

This ingredient operates by absorbing specific wavelengths of ultraviolet radiation, thereby preventing harmful UV photons from reaching and damaging skin cells. This absorption process helps to safeguard the skin from photo-induced damage.


Research

Low confidence
Effective range N/A
Optimal

N/A


Transparency

Not commonly dusted

The Formula

Solubility
Oil
Optimal pH N/A
0 7 14

Stability

Specific optimal pH ranges for its stability in formulation have not been precisely determined. Due to its status as an unrated ingredient, potential considerations for aesthetic or stability challenges in diverse formulations may exist.


Safety

CIR Status
Not reviewed
Sensitization risk Unknown

ETHYLHEXYL BIS-ISOPENTYLBENZOXAZOLYLPHENYL MELAMINE has not undergone specific review by the Cosmetic Ingredient Review (CIR) or the Scientific Committee on Consumer Safety (SCCS). While it possesses an FDA UNII (BU9H717REF), this designation does not equate to FDA approval as an active sunscreen ingredient. Independent analyses characterize it as a new ingredient with currently no established benefits or safety ratings, noting a general, non-specific cautionary statement regarding potential irritation risk that may increase when combined with other unproven ingredients.


Your Skin

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

Our Assessment

Insufficient Data

As a nascent UV filter, ETHYLHEXYL BIS-ISOPENTYLBENZOXAZOLYLPHENYL MELAMINE lacks comprehensive regulatory review, specific clinical efficacy data, and detailed safety assessments, indicating the need for substantial further research before a conclusive recommendation can be made.


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