PRODUCT REVIEW
Abib Sedum Hyaluron Pad Hydrating Touch
Can it cause trouble?
Cheaper alternatives
Product summary
What can the product work for?
Moisturizing
What does the product description say?
Exfoliation
What does the product description say?
Honesty check
How honest is this product?
Promise | Can it deliver? |
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Moisturizing | |
Exfoliation |
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Can it cause trouble?
- Overall product irritation risk
- Acne & comedogenic risk ingredients: 0
Potential irritants
Comodogenic ingredients
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WIMJ similarity score |
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Irritancy | IRRITANCY
MEDIUM
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LOW
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LOW
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LOW
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HIGH
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LOW
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LOW
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MEDIUM
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All ingredients |
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Ingredients & concentrations
All ingredients
Key Actives
Potential irritants
Comodogenic ingredients
All ingredients
Ingredient list view
Water, Methylpropanediol, Sedum sarmentosum extract, Glycerin, 1,2-hexanediol, Propanediol, Sodium hyaluronate, Cynanchum atratum extract, Althaea rosea flower extract, Hydrolyzed hyaluronic acid, Hyaluronic acid, Dipropylene glycol, Betaine, Trehalose, Sodium citrate, Allantoin, Succinic acid, Glyceryl glucoside, Caprylyl glycol, Polyglyceryl-10 laurate, Ethylhexylglycerin, Gluconolactone, Butylene glycol, Hydroxyethylcellulose, Pentylene glycol, Acetyl glucosamine, Glucose, Hydroxyacetophenone, Panthenol, Sorbitol, Benzyl glycol, Hydrolyzed glycosaminoglycans, Sodium hyaluronate crosspolymer, Hydroxypropyltrimonium hyaluronate, Dipotassium phosphate, Acetyl glutamine, Sodium acetylated hyaluronate, Cellulose gum, Caffeine, Disodium edta, Xanthan gum
Sources
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- Profile of wound healing process induced by allantoin
- Effects of glyceryl glucoside on AQP3 expression, barrier function and hydration of human skin
- Treatment of Xerosis with a Topical Formulation Containing Glyceryl Glucoside, Natural Moisturizing Factors, and Ceramide
- In Vitro Assessment of Skin Irritation Potential of Surfactant-based Formulations by Using a 3-D Skin Reconstructed Tissue Model and Cytokine Response
- 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
- The effect of N-acetyl-glucosamine on stratum corneum desquamation and water content in human skin
- Glucosamine: an ingredient with skin and other benefits
- Genomic expression changes induced by topical N-acetyl glucosamine in skin equivalent cultures in vitro
- Incorporation of D-(^H)glucosamine into normal and psoriatic epidermal glycoconjugates
- Reduction in the appearance of facial hyperpigmentation by topical N-acetyl glucosamine
- Topical Glucose Induces Claudin-1 and Filaggrin Expression in a Mouse Model of Atopic Dermatitis and in Keratinocyte Culture, Exerting Anti-inflammatory Effects by Repairing Skin Barrier Function
- Skin moisturizing effects of panthenol-based formulations
- Safety Assessment of Panthenol, Pantothenic Acid, and Derivatives as Used in Cosmetics