PRODUCT REVIEW
Cheaper alternatives
What can the product work for?
Moisturizing
What does the product description say?
Anti-aging
What does the product description say?
Honesty check
How honest is this product?
Promise | Can it deliver? |
---|---|
Moisturizing | |
Anti-aging |
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Can it cause trouble?
- Overall product irritation risk
- Acne & comedogenic risk ingredients: 3
Potential irritants
Comodogenic ingredients
User reviews (0)
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WIMJ similarity score |
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Irritancy | IRRITANCY
HIGH
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MEDIUM
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MEDIUM
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LOW
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MEDIUM
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MEDIUM
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HIGH
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MEDIUM
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MEDIUM
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MEDIUM
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LOW
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Ingredients & concentrations
All ingredients
Key Actives
Potential irritants
Comodogenic ingredients
All ingredients
Ingredient list view
Water, Glycerin, Cetearyl alcohol, Butyrospermum parkii butter, Helianthus annuus seed oil, Olea europaea fruit oil, Squalane, Cetearyl glucoside, Elaeis guineensis oil, Glyceryl stearate, Simmondsia chinensis seed oil, Caesalpinia spinosa gum, Enteromorpha compressa extract, Aloe barbadensis leaf juice powder, Perilla ocymoides seed oil, Oenothera biennis oil, Persea gratissima oil, Baicalin, Rosa damascena extract, Rosmarinus officinalis leaf extract, Helichrysum stoechas extract, Althaea officinalis root extract, Persea gratissima oil unsaponifiables, Propanediol, Aroma, Pelargonium graveolens oil, Hydrolyzed jojoba esters, Fucus serratus extract, Sodium stearoyl glutamate, Citric acid, Gluconolactone, Calcium gluconate, Sodium benzoate, Potassium sorbate, Geraniol, Citronellol, Linalool, Citral
Sources
- Glycerol and the skin: holistic approach to its origin and functions
- Effect of Olive and Sunflower Seed Oil on the Adult Skin Barrier: Implications for Neonatal Skin Care
- Topically Applied Sunflower Seed Oil Prevents Invasive Bacterial Infections in Preterm Infants in Egypt
- Effect of topically applied lipids on surfactant-irritated skin
- Impact of topical oils on the skin barrier: possible implications for neonatal health in developing countries
- Use of “natural” oils for moisturization: Review of olive, coconut, and sunflower seed oil
- Genetic Architecture of Palm Oil Fatty Acid Composition in Cultivated Oil Palm (Elaeis guineensis Jacq.) Compared to Its Wild Relative E. oleifera (H.B.K) Cortés
- Nutrient composition of Nigerian palm kernel from the dura and tenera varieties of the oil palm (Elaeis guineensis)
- Final Report On the Safety Assessment of Galactomannans As Used in Cosmetics
- Fatty Acid Content and Chemical Composition of Vegetative Parts of Perilla (Perilla frutescens L.) after Different Growth Lengths
- Allergic contact dermatitis induced by rosemary leaf extract in a cleansing gel
- Safety Assessment of Rosmarinus officinalis (Rosemary)-Derived Ingredients as Used in Cosmetics
- Rosmarinus officinalis Extract Suppresses Propionibacterium acnes–Induced Inflammatory Responses
- Helichrysum italicum: from traditional use to scientific data
- A comparative study of gluconolactone versus benzoyl peroxide in the treatment of acne
- The Polyhydroxy Acid Gluconolactone Protects Against Ultraviolet Radiation in an In Vitro Model of Cutaneous Photoaging
- Applications of hydroxy acids: classification, mechanisms, and photoactivity
- The efficacy of glycolic acid, salicylic acid, gluconolactone, and licochalcone A combined with 0.1% adapalene vs adapalene monotherapy in mild-to-moderate acne vulgaris: a double-blinded within-person comparative study
- A polyhydroxy acid skin care regimen provides antiaging effects comparable to an alpha-hydroxyacid regimen
- The use of polyhydroxy acids (PHAs) in photoaged skin
- Blackwell Publishing, Ltd. Alpha-hydroxyacids and carboxylic acids
- An evaluation of a polyhydroxy acid skin care regimen in combination with azelaic acid 15% gel in rosacea patients
- Aging Skin: Causes, Treatments, and Prevention
- Clinical and cosmeceutical uses of hydroxyacids
- Polyhydroxy Acids (PHAs) Provide Conditioning Effects to Skin Without Increasing Sensitivity to UV Light