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ROSA CHINENSIS CALLUS LYSATE.

Insufficient Data / SKIN CONDITIONING, SKIN CONDITIONING - EMOLLIENT

Derived from the callus culture of the Rosa Chinensis plant, Rosa Chinensis Callus Lysate is a botanical extract rich in growth factors, flavonoids, phenolic compounds, and polysaccharides. This multifaceted ingredient is designed to support cellular regeneration, deliver antioxidant protection, and enhance the skin's natural barrier function, leading to improved hydration and overall skin conditioning.

Skin Conditioning Emollient Antioxidant Anti-inflammatory Astringent Moisture Retention Cell Regenerative

Science

Rosa Chinensis Callus Lysate exerts its beneficial effects through a synergy of bioactive compounds. Growth factors facilitate cell regeneration, promoting skin renewal. Flavonoids, such as quercetin and kaempferol, along with other phenolic compounds, provide robust antioxidant protection against environmental stressors. Polysaccharides contribute to significant moisture retention, while the combined profile supports anti-inflammatory and astringent actions, simultaneously conditioning the skin and functioning as an emollient to reinforce the skin barrier.


Research

Insufficient-data confidence
Effective range N/A
Optimal

N/A


Transparency

Not commonly dusted

Specific data regarding effective concentrations for visible results or potential for 'dusting' (inclusion at sub-effective levels) is not available from current research.


The Formula

Solubility
Water
Optimal pH N/A
0 7 14

Stability

Optimal pH range and specific stability considerations were not detailed in the provided research data.


Safety

CIR Status
Not reviewed
Sensitization risk Unknown

This ingredient is generally considered safe for cosmetic application when used as directed. However, individuals with known allergies to plants within the Rosaceae family are advised to exercise caution.


Your Skin

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

Our Assessment

Insufficient Data

While offering promising bioactivity for skin conditioning and protection, more robust clinical efficacy and safety data are required for a definitive assessment.


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