Nykaa · 🇮🇳 India

Neutrogena Hydro Boost Water Gel Cleanser

18 ingredients
What's in it

Below is every ingredient in Neutrogena Hydro Boost Water Gel Cleanser explained, its standout actives, and the side effects reported in research for those actives — analysed for Indian skin.

Suitability at a glance — for Indian skin

🍄 May trigger fungal acne
2 ingredient(s) can feed Malassezia — relevant in humid Indian weather
Pore-clogging risk: Low
Highest comedogenic rating 0/5 — matters for oily, acne-prone skin
Contains fragrance / allergens
Fragrance

Flags derived from the ingredient list using dermatology reference data (fungal-acne substrate, comedogenicity, EU allergens). General guidance, not a diagnosis.

Your questions, answered from the ingredient list

Is Neutrogena Hydro Boost Water Gel Cleanser fungal-acne safe?
Based on its listed ingredients, Neutrogena Hydro Boost Water Gel Cleanser contains 2 ingredient(s) reported to feed Malassezia (the yeast behind fungal acne): PEG-120 Methyl Glucose Dioleate, Polysorbate 20. If you are fungal-acne prone, you may want to avoid these.
Does Neutrogena Hydro Boost Water Gel Cleanser contain fragrance?
Yes — Neutrogena Hydro Boost Water Gel Cleanser lists Fragrance, which are fragrance ingredients or EU-declared allergens. Relevant if your skin is sensitive or reactive.
Will Neutrogena Hydro Boost Water Gel Cleanser clog pores?
The highest comedogenic rating among its listed ingredients is 0/5 (low). Comedogenicity matters most for oily, acne-prone skin in humid Indian weather; it is a property of ingredients in lab tests, not a guarantee either way.
Is Neutrogena Hydro Boost Water Gel Cleanser safe to use in pregnancy?
None of its listed ingredients are flagged for pregnancy caution in our reference data — but always confirm your full routine with your own doctor.

Answers are derived from the printed ingredient list and dermatology reference data — general guidance, not a diagnosis or a therapeutic claim.

Key actives

No standout actives — this is a basic/support formula.

Side effects reported in research

Aggregated from the active ingredients in this product.

Reported effectHow oftenNotes
Skin dryness or barrier disruption with excessive contactUncommonFrequent or prolonged exposure to water, especially hot or hard water, can disrupt the skin barrier and contribute to transepidermal water loss.
Irritation from impurities or hard water mineralsRareReactions are attributed to contaminants, chlorine, or mineral content rather than water itself.
Mild transient stinging or irritationUncommonMore likely at high concentrations or on compromised/broken skin.
Tacky or sticky skin feelCommonA cosmetic sensation rather than an adverse reaction, more noticeable at higher concentrations.
Contact dermatitis or allergic reactionRareTrue allergy to glycerin is uncommon; patch-test positivity is infrequent.
Skin dehydration in very low humidityRareIn very dry environments humectants may draw water from deeper skin layers if not paired with an occlusive.
Allergic contact dermatitisUncommonA notable cause of allergic contact dermatitis, often attributed to impurities (amidoamine, 3-dimethylaminopropylamine) rather than the molecule itself; named Allergen of the Year in 2004.
Skin or eye irritationUncommonMild stinging or irritation, more likely in concentrated or rinse-off products and around the eyes.
Cross-reactivity with related surfactantsRarePatch-test reactions may overlap with chemically related amphoteric or amine-containing surfactants.
Mild transient skin dryness or tightnessUncommonMore likely with high concentrations or frequent use in those with already dry or compromised skin.
Skin dryness or tightnessUncommonHigh concentrations may have a mild osmotic drying effect, especially on compromised skin.
Irritation or stinging on broken skinUncommonSalt can sting when applied to abrasions, cuts, or inflamed areas.
Mechanical irritation from scrub formulationsRareCoarse salt particles in exfoliants may cause microabrasions if used aggressively.
Allergic contact reactionVery rareTrue allergy to sodium chloride is exceptionally uncommon.

Frequencies reflect typical cosmetic use reported in the literature, not a guarantee for your skin.

Full ingredient breakdown

IngredientWhat it does
Water
Solvent/vehicle
Water is the most common base ingredient in cosmetic formulations, serving as a solvent that dissolves other ingredients and forms the bulk of emulsions and aqueous solutions. It is generally considered safe and non-irritating.
Glycerin
Humectant
Glycerin is a widely used humectant that attracts and retains water in the skin, helping to hydrate the stratum corneum and support barrier function. It is considered safe and well-tolerated across most skin types and concentrations.
Cocamidopropyl Betaine
Surfactant / foaming cleanser
Cocamidopropyl Betaine is an amphoteric surfactant derived from coconut oil and dimethylaminopropylamine, used in cleansers, shampoos, and body washes to provide gentle foaming, viscosity, and to reduce the harshness of stronger anionic surfactants. It is widely regarded as mild but is a recognized contact allergen.
Sodium Cocoyl Glycinate
Mild surfactant/cleansing agent
Sodium Cocoyl Glycinate is a gentle amino acid-derived (glycine and coconut fatty acid) anionic surfactant used in cleansers and shampoos to produce foam and remove dirt and oil. It is valued for its mildness and skin-friendly, near-neutral pH compared to harsher sulfate surfactants.
Sodium Chloride
Thickener / viscosity adjuster
Sodium chloride (table salt) is commonly used in cosmetics as a thickening and viscosity-control agent, particularly in surfactant-based cleansers, and also acts as a mild abrasive in scrubs. It is generally well tolerated and considered a formulation ingredient rather than a treatment active.
PEG-120 Methyl Glucose Dioleate
Thickener/emulsifier
PEG-120 Methyl Glucose Dioleate is a polyethylene glycol-derived emollient and viscosity-building agent used in cleansers and surfactant systems to thicken formulations and provide a smooth, conditioned skin feel. It functions as a nonionic co-emulsifier and rheology modifier rather than a treatment active.
Sodium Methyl Cocoyl Taurate
Mild surfactant/cleansing agent
Sodium Methyl Cocoyl Taurate is a gentle, taurine-derived anionic surfactant used in cleansers and shampoos to provide foaming and cleansing while being milder than sulfate-based surfactants. It is generally well tolerated and often chosen for sensitive-skin formulations.
Sodium Hydrolyzed Potato Starch Dodecenylsuccinate
Texture enhancer / absorbent
Sodium Hydrolyzed Potato Starch Dodecenylsuccinate is a modified starch derivative used in cosmetics primarily as an absorbent and texture-improving agent, giving formulations a soft, silky, powdery feel and helping reduce greasiness. It functions mainly as a formulation aid rather than a treatment active.
Sodium Lauryl Sulfoacetate
Surfactant/cleansing agent
Sodium Lauryl Sulfoacetate is a mild anionic surfactant derived from coconut and palm oils, commonly used as a foaming and cleansing agent in shampoos, bath products, and bath bombs. It is considered gentler than sodium lauryl sulfate and helps create lather while emulsifying oils and dirt.
Polysorbate 20
Emulsifier / solubilizer
Polysorbate 20 is a nonionic surfactant derived from sorbitol and lauric acid, used in skincare to solubilize fragrances and essential oils and to stabilize oil-in-water emulsions. It functions primarily as a formulation aid rather than a treatment active.
Decyl Glucoside
Surfactant/Cleanser
Decyl Glucoside is a mild, non-ionic surfactant derived from glucose and fatty alcohols, commonly used as a gentle cleansing and foaming agent in shampoos, facial cleansers, and baby care products. It is valued for its biodegradability and low irritation potential compared to harsher surfactants.
Sodium Benzoate
Preservative
Sodium benzoate is a salt of benzoic acid used as a preservative in cosmetic and skincare formulations to inhibit the growth of bacteria, yeast, and fungi, particularly in acidic products. It is most effective at a pH below 5.
Citric Acid
pH adjuster / AHA exfoliant
Citric acid is an alpha-hydroxy acid derived from citrus fruits, used primarily to adjust and buffer formulation pH and as a chelating agent, and at higher concentrations as a mild chemical exfoliant. It can promote surface cell turnover and is sometimes included in antioxidant or brightening products.
Fragrance
Fragrance/masking agent
Fragrance refers to a blend of natural or synthetic aromatic compounds added to skincare products to impart a pleasant scent or mask the odor of other ingredients. It serves a sensory and formulation purpose rather than a therapeutic one.
Sodium Hydroxide
pH adjuster
Sodium hydroxide (lye) is a strong alkaline compound used in small amounts to adjust and stabilize the pH of cosmetic formulations. At regulated low concentrations in finished products it is considered safe, though it is corrosive in concentrated form.
Hydroxyacetophenone
Antioxidant / soothing agent
Hydroxyacetophenone (acetophenone-based compound, often 4'-hydroxyacetophenone) is used in skincare primarily as an antioxidant and skin-conditioning agent that can also enhance the stability and efficacy of preservative systems. It is valued for its soothing properties and helps neutralize free radicals while reducing potential irritation from other formulation components.
Tetrasodium EDTA
Chelating agent
Tetrasodium EDTA is a chelating agent used in skincare formulations to bind metal ions, improving product stability, preserving efficacy, and enhancing the performance of preservatives and surfactants. It is a formulation aid rather than a therapeutic active.
Hydrolyzed Hyaluronic Acid
Humectant / moisturizer
Hydrolyzed hyaluronic acid is a low-molecular-weight form of hyaluronic acid broken into smaller fragments, allowing better penetration into the skin to bind water and improve hydration. It is widely used in moisturizers and serums to enhance skin moisture content and surface smoothness.

Key active = does the main work. Ingredient explanations are drawn from public databases & literature.

From published literature

Peer-reviewed papers on the active ingredients in this product, via PubMed.

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