Ingredients
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Dimethicone is a silicone-based ingredient that forms a smooth, protective layer on your skin. It helps lock in moisture, creates a soft feel, and is commonly used in moisturizers and primers to improve product texture and skin hydration.
Benefits
- Improves skin hydration by creating a moisture-barrier layer
- Provides a smooth, silky feel to products and on skin
- Well-tolerated by sensitive and atopic (eczema-prone) skin
- Non-greasy alternative to heavier oils
Science: Clinical studies demonstrate dimethicone is safe and well-tolerated in children with atopic dermatitis from 12 months of age. Research shows moisturizers containing dimethicone effectively improve skin hydration in mild-to-moderate atopic dermatitis patients over 14 days.
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Glycerin is a naturally derived humectant—a ingredient that draws moisture from the air into your skin. It's one of the most widely used and well-studied moisturizing agents in skincare, helping skin feel softer and more hydrated.
Benefits
- Attracts and retains moisture in the skin
- Improves skin hydration and softness
- Helps strengthen skin barrier function
- Suitable for most skin types, including sensitive skin
Science: The Cosmetic Ingredient Review Expert Panel concluded glycerin is safe as used in cosmetics across all concentrations. Research shows glycerin effectively improves skin hydration and is well-tolerated with minimal irritation risk. It is also referenced in clinical guidelines for managing inflammatory skin conditions and maintaining skin integrity.
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Sodium hyaluronate is the salt form of hyaluronic acid, a naturally occurring substance found in your skin that acts like a moisture magnet. In skincare products, it absorbs water from the environment and binds it to your skin, helping to hydrate and plump the skin's surface.
Benefits
- Delivers intense hydration to the skin
- Helps reduce the appearance of fine lines by improving skin moisture
- Supports skin barrier function
- Suitable for all skin types, including sensitive and oily skin
Potential concerns
- In very dry climates with low humidity, it may draw moisture from deeper skin layers if not sealed with an occlusive product
- Rare allergic reactions are possible but extremely uncommon
Science: While the provided research focuses on intra-articular injections for joint health (showing good safety and efficacy), hyaluronic acid and its salt form are well-established in dermatology for topical hydration. The molecule's safety profile is well-documented across decades of use in medical and cosmetic applications, with severe adverse reactions being extremely rare.
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Caprylyl glycol is a preservative and skin-conditioning ingredient derived from coconut oil. It helps prevent bacterial and mold growth in skincare products while also providing mild hydrating and humectant benefits to the skin.
Benefits
- Helps preserve product freshness and prevent contamination
- Provides gentle humectant properties to help retain skin moisture
- Often used as a gentler alternative to traditional preservatives
Potential concerns
- Rare cases of allergic contact dermatitis have been reported in sensitive individuals
- May cause irritation in those with known sensitivity to glycols
Science: A 200-subject repeat patch test study found no delayed hypersensitivity reactions to caprylyl glycol at typical use concentrations. However, isolated case reports of allergic contact dermatitis exist, suggesting it can act as an allergen in susceptible individuals. It is widely used in infant and sensitive-skin formulations as a preservative alternative.
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This is a thickening and stabilizing agent that helps give skincare products their texture and consistency. It works by absorbing water and forming a gel-like network, making products feel smooth and creamy on the skin without leaving a greasy residue.
Benefits
- Creates smooth, pleasant product texture
- Helps stabilize emulsions and prevent separation
- Allows for lightweight formulations that don't feel heavy
Science: Limited peer-reviewed data available for this ingredient. It is widely used in cosmetics and generally recognized as safe by regulatory bodies including the CosIng database and is approved for use in the EU and US.
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Phenoxyethanol is a preservative that prevents bacteria, yeast, and mold from growing in skincare products, helping them stay fresh and safe to use. It has been used safely in cosmetics for decades and is effective at very low concentrations.
Benefits
- Prevents microbial contamination and product spoilage
- Broad-spectrum antimicrobial activity against bacteria and yeast
- Minimal impact on beneficial skin bacteria when used at approved levels
Potential concerns
- Rare allergic contact dermatitis in sensitive individuals
- May cause irritation if used in products at concentrations above 1%
Science: The European Scientific Committee on Consumer Safety considers phenoxyethanol safe for all consumers, including children, at concentrations up to 1%. Adverse effects observed in animal studies required exposure levels approximately 200 times higher than those in cosmetic products, and it is classified as one of the most well-tolerated preservatives in cosmetics.
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Polyvinyl alcohol (PVA) is a synthetic polymer derived from polyvinyl acetate. In skincare, it's primarily used as a film-forming agent that creates a thin, breathable layer on the skin to improve product texture, adhesion, and delivery of active ingredients.
Benefits
- Creates a smooth, non-sticky finish on skin
- Improves product adhesion and wear time
- Supports controlled release of active skincare ingredients
- Biodegradable and generally well-tolerated by skin
Science: Research demonstrates PVA's effectiveness as a biocompatible polymer matrix for transdermal delivery systems and wound care applications. Its ability to dissolve rapidly on skin and form stable films makes it suitable for both therapeutic skincare delivery and cosmetic formulations, with no reported safety concerns in topical use.
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Propanediol is a lightweight humectant—a molecule that draws water into the skin to keep it hydrated. It's also used in cosmetic formulations as a solvent and preservative booster, helping products stay stable and feel smooth on the skin.
Benefits
- Hydrates and moisturizes the skin
- Improves product texture and spreadability
- Helps preserve formulations naturally
Science: Propanediol can be produced through bio-based fermentation (from glycerol using microorganisms), making it an environmentally friendly alternative to traditional chemical synthesis. It is widely recognized as safe in cosmetic and food applications, with established use as both a humectant and preservative enhancer.
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Pentylene glycol is a lightweight humectant—a ingredient that draws water into the skin to improve hydration and texture. It's commonly used in serums, sunscreens, and moisturizers as a preservative booster and skin-conditioning agent.
Benefits
- Improves skin hydration by attracting moisture
- Lightweight feel, absorbs quickly without heaviness
- Helps preserve product stability and extends shelf life
Potential concerns
- Rare contact allergy reported in sensitive individuals
- Emerging evidence suggests it may be an uncommon cosmetic allergen—if you have sensitive or reactive skin, patch test first
Science: Safety studies show a high margin of safety at standard use levels (87–671 in adults), with minimal skin penetration due to the ingredient's volatility. However, recent dermatological reports flag pentylene glycol as an emerging contact allergen in some individuals, warranting attention for those with sensitive skin.
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2-Hexanediol is a humectant and preservative booster commonly used in skincare products to help retain moisture and extend shelf life. It works by drawing water into the skin while also enhancing the effectiveness of other preservatives, allowing brands to use lower amounts of traditional preservatives.
Benefits
- Hydrates and moisturizes skin by drawing in water
- Helps preserve products with lower preservative levels
- Works synergistically with other skincare ingredients like niacinamide
Potential concerns
- May cause cell viability concerns at concentrations above 1.0% in laboratory studies
- Limited real-world safety data in humans at typical skincare concentrations (usually 2-5%)
- Potential environmental concern if released into water systems
Science: While 2-hexanediol is widely used as a preservative substitute for parabens, recent cytotoxicity studies raise questions about safety at concentrations commonly found in skincare products (>2%). However, these findings are from laboratory cell studies and may not directly translate to human skin application. Further human safety studies are needed to confirm real-world risk.
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Sodium Hydroxide is a strong alkaline chemical used in skincare products primarily as a pH buffer to neutralize acids and adjust the product's pH to safe levels for skin. It is not an active skincare ingredient and appears only in trace amounts in finished products.
Potential concerns
- In concentrated form, sodium hydroxide is caustic and can cause severe chemical burns; however, in cosmetic products it is diluted and pH-buffered to safe levels
- Undiluted or highly concentrated sodium hydroxide should never contact skin directly
Science: The provided research discusses sodium hydroxide only in a specialized medical context (10% solution for surgical cauterization of ingrown toenails), which is not relevant to cosmetic skincare use. In properly formulated skincare products, sodium hydroxide is used in minimal concentrations solely for pH adjustment and is considered safe by regulatory bodies including the FDA and EU.
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Maltodextrin is a carbohydrate derived from starches like corn or potato. In skincare, it's used as a filler, thickener, and texture agent — it has no direct active benefit for skin itself.
Science: Maltodextrin is an inert, non-toxic carbohydrate commonly used as a placebo control in clinical nutrition studies, indicating excellent safety and tolerability. No adverse effects on skin health or systemic absorption concerns have been documented.
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Analysis not yet available for this ingredient.
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Sodium phosphate is a salt derived from phosphoric acid that acts as a pH buffer and emulsifier in skincare formulations. It helps stabilize products and maintain the right acidity level for skin compatibility.
Benefits
- Helps maintain optimal pH balance in formulations
- Acts as an emulsifier to keep oil and water-based ingredients mixed
- Supports formula stability over time
Science: Limited peer-reviewed data available specifically for sodium phosphate in topical skincare. The ingredient has a long history of safe use in cosmetics and pharmaceutical formulations as a buffer and stabilizer, with regulatory approval from major authorities including the FDA and EU.
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Disodium phosphate is a salt derived from phosphoric acid that functions as a pH buffer and preservative booster in skincare formulations. It helps maintain product stability and can support the preservation system in creams, lotions, and serums.
Benefits
- Stabilizes product pH to prevent degradation
- Enhances preservation effectiveness
- Helps maintain consistent product performance over time
Science: The provided studies focus on disodium phosphate primarily as a pharmaceutical salt for drug delivery (dexamethasone and combretastatin formulations) rather than cosmetic skincare applications. No safety concerns were identified in the available literature for topical use in cosmetic products.
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Zinc gluconate is a form of zinc, an essential mineral, used in skincare products to support skin health and barrier function. It's a chelated form of zinc that allows for better absorption and is gentler on skin than some other zinc compounds.
Benefits
- Supports skin barrier function and integrity
- May help regulate sebum production in oily or acne-prone skin
- Provides antioxidant and anti-inflammatory properties
- Aids in skin healing and wound repair processes
Potential concerns
- May cause mild irritation or dryness in sensitive individuals at high concentrations
- Excessive zinc intake (from supplements, not topical use) can interfere with copper absorption
- Rare allergic contact dermatitis in sensitized individuals
Science: Zinc gluconate is well-established for its role in skin health and wound healing. A 2025 study in Nature Materials examined zinc gluconate's behavior in oral supplements, demonstrating how it assembles into nanoparticles in the body—this research is primarily relevant to internal supplementation rather than topical skincare applications, but supports zinc's bioavailability and cellular interaction mechanisms.
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Copper gluconate is a copper salt that combines the mineral copper with glucose. In skincare, it's primarily used for its antimicrobial properties to help protect against bacteria and potentially support skin health.
Benefits
- Antimicrobial activity against certain bacteria
- May help reduce microbial biofilm formation
- Potential antiviral properties in oral care applications
Potential concerns
- Copper can cause irritation or sensitization in sensitive skin at high concentrations
- Limited safety data specifically for topical skincare use
- May interact with other active ingredients
Science: Research shows copper gluconate has antimicrobial effects, particularly when combined with other agents like chlorhexidine and xylitol in oral care settings. In vitro studies suggest it may inhibit viral spike protein interactions, though human skincare safety and efficacy data remain limited.
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Nonapeptide-1 is a synthetic peptide (short chain of amino acids) designed to help regulate melanin production and transfer in the skin. It's primarily used in skincare products targeting dark spots, uneven skin tone, and conditions like melasma.
Benefits
- May help reduce the appearance of dark spots and hyperpigmentation
- Interferes with melanin transfer to skin cells, potentially evening out skin tone
- Often combined with other brightening ingredients for enhanced efficacy
- Suitable for use in maintenance treatments after professional melasma therapies
Science: Recent research shows nonapeptide-1 can reduce melanin content and inhibit tyrosinase (an enzyme involved in pigment production). Clinical studies indicate it performs well in combination formulas for melasma maintenance and preventing hyperpigmentation recurrence, with evidence supporting its safety in topical skincare applications.
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Aloe Barbadensis Leaf Juice is the clear gel extracted from the inner part of the aloe vera leaf. In skincare, it functions as a skin-conditioning agent known for its soothing and hydrating properties, and is typically used at low concentrations (usually under 1%).
Benefits
- Soothing and anti-inflammatory properties
- Hydrating and skin-conditioning
- Antimicrobial and wound-healing support
Potential concerns
- Whole leaf aloe (including latex) contains anthraquinones that can cause photosensitivity and irritation; reputable products use only the inner gel
- High oral doses in animal studies showed reproductive toxicity and developmental effects; topical use in cosmetics at low concentrations is considered safe
- Potential for allergic contact dermatitis in sensitive individuals
Science: A 2007 safety review by the Cosmetic Ingredient Review panel concluded aloe-derived ingredients are safe for cosmetic use when the phototoxic anthraquinone content is limited to 50 ppm or lower and concentrations remain at 1% or less. The inner gel (polysaccharides) is well-tolerated topically, though oral studies at high doses showed concerns unrelated to typical skincare application.
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Lactic Acid/Glycolic Acid Copolymer (PLGA) is a biodegradable synthetic polymer made from two common chemical building blocks. In skincare, it's primarily used as a delivery system to help active ingredients penetrate the skin more effectively, rather than as an active ingredient itself.
Benefits
- Improves skin penetration of active ingredients
- Biodegradable and breaks down naturally in the body
- Enables more effective delivery of peptides and other actives to skin cells
Potential concerns
- Limited safety data specific to topical skincare use
- May cause irritation in sensitive individuals depending on formulation and concentration
- Research on this ingredient in cosmetics is minimal; most data comes from pharmaceutical and cancer research contexts
Science: Published research on this ingredient focuses on its use as a drug delivery system in cancer therapeutics rather than cosmetic skincare. No peer-reviewed studies specifically evaluate its safety or efficacy in topical skincare products for everyday consumers.
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Ubiquinone, also known as CoQ10, is a naturally occurring compound found in your body's cells that helps produce energy and protect against oxidative damage. In skincare, it's used as an antioxidant to help defend skin from environmental stress and may support skin's natural renewal processes.
Benefits
- Antioxidant protection against free radicals and environmental damage
- May help reduce the appearance of fine lines and support skin firmness
- Supports skin's natural energy production and cellular health
Science: Research shows ubiquinone (in its reduced form, ubiquinol) effectively traps harmful lipid peroxyl radicals that damage cells, suggesting strong protective potential for skin. The compound is naturally present in human cells and is well-tolerated in topical applications, making it a safe ingredient for regular skincare use.
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Polyacrylate Crosspolymer-6 is a synthetic polymer used as a thickener and stabilizer in skincare formulas. It helps create a smooth, gel-like texture and keeps product ingredients evenly distributed without separating.
Benefits
- Creates smooth, spreadable texture
- Stabilizes formulas and prevents separation
- Helps products feel lightweight on skin
Science: Limited peer-reviewed data available for this ingredient. As a synthetic polymer, it is generally recognized as safe for topical use and is not absorbed through the skin due to its large molecular size. It is approved for cosmetic use in major regulatory regions.
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Sodium carbonate is an alkaline salt commonly used in skincare products as a pH buffer and exfoliating agent. It helps balance acidity in formulations and can gently remove dead skin cells from the surface of the skin.
Benefits
- Gentle chemical exfoliation to remove dead skin cells
- pH balancing in skincare formulations
- May help soften and condition the skin
Potential concerns
- Can cause irritation, dryness, or redness if used at high concentrations or on sensitive skin
- May disrupt the skin's natural pH barrier if overused
- Strong alkalinity could cause burning or stinging sensations
Science: Research shows sodium carbonate effectively degrades pectin structures and alters skin composition in food applications, suggesting similar exfoliating effects on human skin. However, limited peer-reviewed safety data exists specifically for cosmetic use on facial or body skin at typical product concentrations.
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Magnesium Aspartate is a mineral compound that combines magnesium with aspartic acid. In skincare, it is primarily used as a skin-conditioning agent and may support overall skin health, though its topical benefits are modest compared to its documented internal use.
Benefits
- May help maintain skin hydration and barrier function
- Provides magnesium, a mineral involved in skin cell health
- Generally well-tolerated with minimal irritation potential
Science: The available scientific literature focuses on magnesium aspartate's internal use for liver and cholestatic conditions rather than topical skincare applications. No peer-reviewed studies were identified examining this ingredient's direct effects on skin health or cosmetic efficacy when applied topically.
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