PRODUCT REVIEW
Furtuna Skin Visione Di Luce Eye Revitalizing Cream
Can it cause trouble?
Cheaper alternatives
What can the product work for?
Moisturizing
What does the product description say?
Anti-aging
What does the product description say?
Evens skin tone
What does the product description say?
Honesty check
How honest is this product?
Promise | Can it deliver? |
---|---|
Moisturizing | |
Anti-aging | |
Evens skin tone |
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Can it cause trouble?
- Overall product irritation risk
- Acne & comedogenic risk ingredients: 2
Potential irritants
Comodogenic ingredients
User reviews (0)
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Irritancy | IRRITANCY
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LOW
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Ingredients & concentrations
All ingredients
Key Actives
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All ingredients
Ingredient list view
Water, Olea europaea leaf water, Dicaprylyl carbonate, Butyrospermum parkii butter, Undecane, Glycerin, Betaine, Olea europaea fruit oil, Capryloyl glycerin/sebacic acid copolymer, Diheptyl succinate, Glyceryl stearate citrate, Potassium cetyl phosphate, Simmondsia chinensis seed oil, Propanediol, Tridecane, Coco-caprylate/caprate, Glyceryl stearate, Cetearyl alcohol, Cichorium intybus root oligosaccharides, Rosa damascena flower extract, Bellis perennis flower extract, Rosa damascena extract, Silybum marianum extract, Taraxacum officinale extract, Helichrysum italicum flower extract, Jasminum sambac flower extract, Crataegus monogyna flower extract, Caesalpinia spinosa gum, Beta vulgaris root extract, Cichorium intybus root extract, Malva sylvestris flower/leaf extract, Papaver rhoeas flower extract, Portulaca oleracea extract, Lamium album leaf extract, Coffea arabica seed extract, Urtica dioica leaf extract, Syringa vulgaris leaf cell extract, Helianthus annuus seed oil, Sodium hyaluronate, Tocopherol, Triheptanoin, Castor oil/ipdi copolymer, Dilinoleic acid/butanediol copolymer, C9-12 alkane, Cetearyl glucoside, Xanthan gum, Lactobacillus ferment, Silica, Titanium dioxide, Iron oxides, Gluconolactone, Calcium gluconate, Sodium dehydroacetate, P-anisic acid, Sodium benzoate, Potassium sorbate, Citric acid, Sodium hydroxide
Sources
- Glycerol and the skin: holistic approach to its origin and functions
- Use of “natural” oils for moisturization: Review of olive, coconut, and sunflower seed oil
- Safety Assessment of Alkyl Esters as Used in Cosmetics
- Evidence-Based Systematic Review of Dandelion (Taraxacum officinale)
- Dandelion Extracts Protect Human Skin Fibroblasts from UVB Damage and Cellular Senescence
- Allergic contact dermatitis to plants in a Spanish dermatology department: a 7-year review
- Final Report On the Safety Assessment of Galactomannans As Used in Cosmetics
- Portulaca oleracea (purslane)
- Effect of green Coffea arabica L. seed oil on extracellular matrix components and water-channel expression in in vitro and ex vivo human skin models
- 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
- Hyaluronic acid: A key molecule in skin aging
- Hyaluronan (Hyaluronic Acid): a natural moisturizer for skin care
- Vitamin E in dermatology
- Vitamin E and Skin Health
- The effect of probiotics on immune regulation, acne, and photoaging
- Comparison of clinical and histological effects between lactobacillus-fermented Chamaecyparis obtusa and tea tree oil for the treatment of acne: an eight-week double-blind randomized controlled split-face study
- Use of Probiotics for Dermal Applications
- 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
- 4 Final Report on the Safety Assessment of Sodium Dehydroacetate and Dehydroacetic Acid