PRODUCT REVIEW
RiRe All Kill Blackhead Deep Cleanser The Red
Can it cause trouble?
Cheaper alternatives
What can the product work for?
Works for
Cleansing
What does the product description say?
Anti-blemish
What does the product description say?
Exfoliation
Honesty check
How honest is this product?
Promise | Can it deliver? |
---|---|
Cleansing | |
Anti-blemish |
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Can it cause trouble?
- Overall product irritation risk
- Acne & comedogenic risk ingredients: 1
Potential irritants
Comodogenic ingredients
User reviews (0)
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WIMJ similarity score |
50%
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Key ingredients |
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Irritancy | IRRITANCY
HIGH
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LOW
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MEDIUM
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MEDIUM
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LOW
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LOW
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LOW
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MEDIUM
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LOW
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MEDIUM
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MEDIUM
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Ingredients & concentrations
All ingredients
Key Actives
Potential irritants
Comodogenic ingredients
All ingredients
Ingredient list view
Water, Sodium stearate, Propylene glycol, Methylpropanediol, Charcoal powder, Bis-peg-18 methyl ether dimethyl silane, Silica, Polysorbate 20, Microcrystalline cellulose, Lactose, Bentonite, Juglans regia shell powder, Cellulose, Vitis vinifera fruit extract, Diospyros kaki leaf extract, Polygonum cuspidatum root extract, Coffea arabica seed extract, Carthamus tinctorius flower extract, Zanthoxylum schinifolium leaf extract, Castanea crenata shell extract, Camellia sinensis leaf extract, Citrus aurantium dulcis fruit extract, Pyrus malus fruit extract, Citrus limon fruit extract, Citrus aurantifolia fruit extract, Oryza sativa extract, Glycine soja seed extract, Sesamum indicum seed extract, Melaleuca alternifolia extract, Aloe ferox leaf extract, Chamomilla recutita extract, Lavandula angustifolia flower extract, Jojoba esters, Butylene glycol, Hydroxypropyl methylcellulose, Ascorbyl palmitate, Sodium hyaluronate, Citric acid, Ascorbic acid, Betaine salicylate, Salicylic acid, Gluconolactone, Ethylhexylglycerin, 1,2-hexanediol, Tocopheryl acetate, Chlorphenesin, Phenoxyethanol, Ci 73360, Parfum
Sources
- Surfactants and experimental irritant contact dermatitis
- Propylene Glycol
- Skin-sensitizing and irritant properties of propylene glycol
- Safety Assessment of Vitis Vinifera (Grape)-Derived Ingredients as Used in Cosmetics
- Nuclear Factor Kappa B Inhibition as a Therapeutic Target of Nutraceuticals in Arthritis, Osteoarthritis, and Related Inflammation
- Resveratrol as an active ingredient for cosmetic and dermatological applications: a review
- 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
- Safety Assessment of Citrus Fruit-Derived Ingredients as Used in Cosmetics
- Photosensitivity in children: An approach to diagnosis and management
- Safety Assessment of Citrus-Derived Peel Oils as Used in Cosmetics
- Antioxidant and Anti-Inflammatory Properties of Anthocyanins Extracted from Oryza sativa L. in Primary Dermal Fibroblasts
- Rice antioxidants: phenolic acids, flavonoids, anthocyanins, proanthocyanidins, tocopherols, tocotrienols, c-oryzanol, and phytic acid
- Seed oil content and fatty acid composition in East African sesame (Sesamum indicum L.) accessions evaluated over 3 years
- Evaluation of Skin Irritation and Acute and Subacute Oral Toxicity of Lavandula angustifolia Essential Oils in Rabbit and Mice
- Assessment report on Lavandula angustifolia Mill., aetheroleum and Lavandula angustifolia Mill., flos
- Hyaluronic acid: A key molecule in skin aging
- Hyaluronan (Hyaluronic Acid): a natural moisturizer for skin care
- Salicylic acid as a peeling agent: a comprehensive review
- Beta Hydroxy Acids
- A review of toxicity from topical salicylic acid preparations
- Glycolic Acid Peels Versus Salicylic–Mandelic Acid Peels in Active Acne Vulgaris and Post‐Acne Scarring and Hyperpigmentation: A Comparative Study
- 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